| Literature DB >> 26700316 |
Danièle Stalder1, Peter J Novick2.
Abstract
Sec2p is a guanine nucleotide exchange factor that activates Sec4p, the final Rab GTPase of the yeast secretory pathway. Sec2p is recruited to secretory vesicles by the upstream Rab Ypt32p acting in concert with phosphatidylinositol-4-phosphate (PI(4)P). Sec2p also binds to the Sec4p effector Sec15p, yet Ypt32p and Sec15p compete against each other for binding to Sec2p. We report here that the redundant casein kinases Yck1p and Yck2p phosphorylate sites within the Ypt32p/Sec15p binding region and in doing so promote binding to Sec15p and inhibit binding to Ypt32p. We show that Yck2p binds to the autoinhibitory domain of Sec2p, adjacent to the PI(4)P binding site, and that addition of PI(4)P inhibits Sec2p phosphorylation by Yck2p. Loss of Yck1p and Yck2p function leads to accumulation of an intracellular pool of the secreted glucanase Bgl2p, as well as to accumulation of Golgi-related structures in the cytoplasm. We propose that Sec2p is phosphorylated after it has been recruited to secretory vesicles and the level of PI(4)P has been reduced. This promotes Sec2p function by stimulating its interaction with Sec15p. Finally, Sec2p is dephosphorylated very late in the exocytic reaction to facilitate recycling.Entities:
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Year: 2015 PMID: 26700316 PMCID: PMC4750927 DOI: 10.1091/mbc.E15-09-0651
Source DB: PubMed Journal: Mol Biol Cell ISSN: 1059-1524 Impact factor: 4.138
FIGURE 1:The casein kinases Yck1p and Yck2p phosphorylate Sec2p in vivo and target phosphosites within the Sec15p/Ypt32p binding region. (A) Control yeast cells or cells deleted for YCK3, YCK1, or YCK2 genes and overexpressing Sec2p 1-508 on a CEN vector (NY3099, NY3100, NY3101, and NY3102, respectively) were grown overnight at 25°C and quickly lysed by NaOH treatment. The mobility of Sec2p 1-508 protein was visualized after SDS–PAGE gel with anti-Sec2p antibody. (B) GST–Sec2p 1-508 protein, overexpressed on a CEN vector in control yeast cells or cells deleted for YCK3, YCK1, or YCK2 genes (NY3103, NY3104, NY3105, and NY3106, respectively), was purified, treated or not with the phosphatase CIP, and visualized after SDS–PAGE with anti-Sec2p antibody. (C) Control yeast cells, deleted for YCK1, expressing yck2-1 or the yck-ts mutant, all overexpressing GST–Sec2p 1-508 on a CEN vector (NY3111, NY3112, NY3113, and NY3114, respectively), were grown overnight at 25°C and then shifted to 37°C for 2 h. The mobility of GST–Sec2p 1-508 protein was analyzed as in A. (D) Control yeast strain or the yck-ts mutant, overexpressing GST–Sec2p full length (FL) on a CEN vector (NY3115 and NY3118, respectively), were grown overnight at 25°C and then shifted to 37°C for 1 h. GST–Sec2p FL protein was purified, treated or not with the phosphatase CIP ± EDTA and visualized after SDS–PAGE by Coomassie brilliant blue staining. (E) Top, control yeast strain or the yck-ts mutant, overexpressing GST–Sec2p FL WT, S181-8A, or S181-8D/E on a CEN vector (NY3115, NY3118, NY3116, NY3119, NY3117, and NY3120), were grown overnight at 25°C and then shifted to 37°C for 1 h. GST Sec2p FL protein was purified and visualized after SDS–PAGE by Coomassie brilliant blue staining. Bottom, control yeast strain or the yck-ts mutant, overexpressing GST–Sec2p 1-508 WT, S181-8A, or S181-8D/E on a CEN vector (NY3111, NY3114, NY3121, NY3123, NY3122, and NY3124), were grown overnight at 25°C and quickly lysed by NaOH treatment. The mobility of Sec2p 1-508 protein was visualized after SDS–PAGE with anti-Sec2p antibody. (F) The Sec2p–Sec15p interaction is impaired in the yck-ts mutant. Sec2p-3xGFP was immunoprecipitated with GFP antibody in the control yeast strain or in the yck-ts mutant coexpressing Sec15p-13xmyc (NY3136 and NY3137, respectively). Yeast strains expressing untagged Sec2p (NY3134 and NY3135) were used as negative control. Coprecipitated Sec15p-13xmyc and the amount of Sec15p-13xmyc in 0.05% of lysates were detected with anti-myc antibody. The intensity of the bands was quantified using ImageJ (National Institutes of Health, Bethesda, MD). The percentage of Sec15p bound to Sec2p was calculated and indicated. Mean and SD of three different experiments. *p < 0.03; Student’s t test.
FIGURE 2:The casein kinase Yck2p binds to the autoinhibitory region of Sec2p and phosphorylates Sec2p in vitro. (A) Top, domain organization of Sec2p. The N-terminal region contains a coiled-coil domain (CC), which catalyzes the exchange of GDP for GTP on Sec4p. Downstream are overlapping binding sites for Sec15p and Ypt32p-GTP, which compete against each other to bind to Sec2p. The choice of Sec2p between these two binding partners is, in part, regulated by phosphorylation of the phosphoregion at aa 181–188. Three positively charged patches allow Sec2p to interact with the phosphoinositide PI(4)P. Finally, the region of aa 450–508, named the autoinhibitory region, negatively regulates Sec15p binding to Sec2p by an autoinhibitory mechanism. Bottom, in vivo phosphorylation results of different Sec2p constructs (Elkind ). (B) Yck2p binds to the autoinhibitory region of Sec2p. Yeast lysate overexpressing GFP-Yck2p (NY3138) was incubated with different GST-Sec2p constructs purified from bacteria and immobilized on glutathione beads. Bound GFP-Yck2p protein was detected with anti-GFP antibody. Because GST–Sec2p 1-508 protein runs at the same molecular weight as GFP-Yck2p (which explains the distortion of the GFP signal), we checked that the GFP signal is specific to GFP-Yck2p and does not cross-react with GST–Sec2p 1-508. GST-Sec2p was detected with anti-GST antibody. The intensity of the bands was quantified using ImageJ. The percentage of Yck2p bound to Sec2p was calculated and is indicated on a logarithmic scale. Mean and SD of at least three different experiments. *p < 0.002; Student’s t test. The increase observed for GST–Sec2p 1-508 is not significantly different from GST–Sec2p wild type. (C) Yck2p phosphorylates Sec2p in vitro. GFP-Yck2p wild type or H187Y was immunoprecipitated from a yeast lysate with protein A/G beads (NY3138 or NY3139, respectively) and incubated with bacterial eluted GST–Sec2p 1-508 wild type or S181-8A protein. GST–Sec2p 1-508 was detected with anti-GST antibody, and the phosphorylated form is characterized by an additional band above the major Sec2p band (indicated with an asterisk). GFP-Yck2p protein was detected with anti-GFP antibody.
FIGURE 3:Modulation of Sec2p phosphorylation. (A) Sec2p in vitro phosphorylation by Yck2p is inhibited by the phosphoinositide PI(4)P. GFP-Yck2p was immunoprecipitated from a yeast lysate with protein A/G beads (NY3138) and incubated with bacterial eluted GST–Sec2p 1-508 and with or without ATP and liposomes containing different amounts of PI(4)P (liposomes 1–4, which contain, respectively, 0, 2, 5, and 10% PI(4)P). GST–Sec2p 1-508 was detected with anti-GST antibody, and the phosphorylated form is indicated with an arrow. GFP-Yck2p protein was detected with anti-GFP antibody. The intensity of the phosphorylated form of GST–Sec2p 1-508 was quantified using ImageJ and normalized and is indicated. Mean and SD of three different experiments. *p < 0.03, **p < 0.004; Student’s t test relative to the condition “+ATP” (lane 2). (B) Sec2p phosphorylation is affected in Pik1p and Sac1p mutants. Control yeast cells (NY3125 and NY3103), deleted for OSH4 (NY3132) or SAC1 (NY3164) genes or the pik1-101 mutant (NY3133), all overexpressing GST–Sec2p 1-508 on a CEN vector (with LEU or HIS selection), were grown overnight at 25°C and quickly lysed by NaOH treatment. The mobility of GST–Sec2p 1-508 protein was visualized after SDS–PAGE with anti-Sec2p antibody. (C) Sec2p phosphorylation may be linked to the vesicle cycle. Control yeast cells (NY3125) or ypt31Δ-ypt32 (NY3126), sec4-8 (NY3127), sec15-1 (NY3128), sec6-4 (NY3129), and sec1-1 (NY3130) mutants, all overexpressing GST–Sec2p 1-508 on a CEN vector, were grown overnight at 25°C and shifted for 1 h at 37°C. Yeast cells were quickly lysed by NaOH treatment, and the mobility of GST–Sec2p 1-508 protein was visualized after SDS–PAGE with anti-Sec2p antibody. (D) Sec2p phosphorylation is stimulated in presence of glucose. Control yeast cells or cells deleted for the YCK2 or YCK1 genes and overexpressing Sec2p 1-508 on a CEN vector (NY3099, NY3102, and NY3101, respectively) were grown overnight at 25°C in a YP medium containing 2% raffinose and shifted for 1 h in 2% glucose. The cells were quickly lysed by NaOH treatment, and the mobility of Sec2p 1-508 protein was visualized after SDS–PAGE with anti-Sec2p antibody.
FIGURE 5:Model for Yck1p/Yck2p’s role in Sec2p phosphoregulation. Nonphosphorylated Sec2p is recruited to the Golgi by the recognition of both the Rab Ypt32p-GTP and the phosphoinositide PI(4)P. Once recruited to membranes, Sec2p phosphorylation by the kinases Yck1p/Yck2p, which uses the secretory pathway to reach the plasma membrane, is inhibited by the high level of PI(4)P. The Golgi-derived secretory vesicle buds off, and Sec2p activates the Rab Sec4p, which recruits its effector, Sec15p. During the transit of the vesicle to the cell surface, the PI(4)P level drops by the action of the lipid transporter Osh4p. This triggers a conformation change in Sec2p, allowing Sec15p to replace Ypt32p-GTP on Sec2p, and allows Sec2p phosphorylation by Yck1p/Yck2p, which further enhances the Sec2p–Sec15p interaction. This process pushes the reaction forward and creates a positive-feedback loop that generates a microdomain of high Sec4p-GTP and Sec15p, facilitating the delivery, tethering, and fusion of the vesicle with the plasma membrane. Before fusion, Sec2p is dephosphorylated by a yet-unknown phosphatase that allows Sec2p to dissociate from Sec15p and thus dissociate from the vesicle. The unphosphorylated Sec2p is then ready to associate with a new round of secretory vesicles and thus ensure the continuity of vesicular transport.
FIGURE 4:The secretory pathway is affected in the yck-ts strain. (A) Control yeast strain or the yck-ts strain (NY3109 and NY3110, respectively) were shifted at early log phase for 2 h to 37°C and processed for thin-section electron microscopy (scale bar, 1 μm). (B) Bgl2p secretion is affected in the yck-ts strain. Control yeast strain, the yck-ts mutant, and sec6-4 strain (NY3109, NY3110, and NY17, respectively) were grown overnight at 25°C to early log phase and shifted for 1½ h to 32°C. Protein lysates from the internal and the external pool were prepared, and Bgl2p protein was detected with anti-Bgl2p antibody. The intensity of the internal Bgl2p was quantified using ImageJ and normalized (the condition WT at 32°C was set at 1) and is indicated. Mean and SD of at least three different experiments. *p < 0.004; Student’s t test.
Genetic interactions between yck2 and different components of the secretory pathway.
aVariability unlinked to yck2.
bWe observed a strong negative genetic interaction between yck2 and pik1-101 on the dissection plate (Supplemental Figure S2A). However, when single mutant (pik1-101) or double mutants (pik1-101+ yck2Δ) were tested for growth, we observed variations between colonies at all indicated temperatures.
Genetic interactions between sec2 S181-8A 3xGFP and different components of the secretory pathway.
aSee Stalder .
bVariability unlinked to sec2 S181-8A 3xGFP.
Yeast strains.
| Yeast name | Alias | Background/parental strain | Genotype | Source |
|---|---|---|---|---|
| NY3099 | DSY157 | BY4741 | MATa, his3Δ1 leu2Δ0 met15Δ0 ura3Δ0 [p413 GPDp Sec2 1-508, CEN HIS] | This study |
| NY3100 | DSY153 | BY4741 | MATa, his3Δ1 leu2Δ0 met15Δ0 ura3Δ0 [Δyck3::KanMX4] [p413 GPDp Sec2 1-508, CEN HIS] | This study |
| NY3101 | DSY154 | BY4741 | MATa, his3Δ1 leu2Δ0 met15Δ0 ura3Δ0 [Δyck1::KanMX4] [p413 GPDp Sec2 1-508, CEN HIS] | This study |
| NY3102 | DSY155 | BY4741 | MATa, his3Δ1 leu2Δ0 met15Δ0 ura3Δ0 [Δyck2::KanMX4] [p413 GPDp Sec2 1-508, CEN HIS] | This study |
| NY3103 | DSY158 | BY4741 | MATa, his3Δ1 leu2Δ0 met15Δ0 ura3Δ0 [p413 GPDp GST Sec2 1-508, CEN HIS] | This study |
| NY3104 | DSY161 | BY4741 | MATa, his3Δ1 leu2Δ0 met15Δ0 ura3Δ0 [Δyck3::KanMX4] [p413 GPDp GST Sec2 1-508, CEN HIS] | This study |
| NY3105 | DSY162 | BY4741 | MATa, his3Δ1 leu2Δ0 met15Δ0 ura3Δ0 [Δyck1::KanMX4] [p413 GPDp GST Sec2 1-508, CEN HIS] | This study |
| NY3106 | DSY163 | BY4741 | MATa, his3Δ1 leu2Δ0 met15Δ0 ura3Δ0 [Δyck2::KanMX4] [p413 GPDp GST Sec2 1-508, CEN HIS] | This study |
| NY3107 | DSY169/LRB264 | LR | MATa, his3 leu2 ura3-52 [Δyck1::URA3] | Lucy Robinson |
| NY3108 | DSY170/LRB265 | LR | MATα, his3 leu2 ura3-52 [yck2-1::HIS3] | Lucy Robinson |
| NY3109 | DSY171/LRB341 | LR | MATa, his3 leu2 ura3-52 | Lucy Robinson |
| NY3110 | DSY172/LRB345 | LR | MATa, his3 leu2 ura3-52 Δyck1 yck2-2ts | Lucy Robinson |
| NY3111 | DSY180 | DSY171 | MATa, his3 leu2 ura3-52 [p415 GPDp GST Sec2 1-508, CEN LEU] | This study |
| NY3112 | DSY176 | DSY169 | MATa, his3 leu2 ura3-52 [Δyck1::URA3] [p415 GPDp GST Sec2 1-508, CEN LEU] | This study |
| NY3113 | DSY178 | DSY170 | MATa, his3 leu2 ura3-52 [yck2-1::URA3] [p415 GPDp GST Sec2 1-508, CEN LEU] | This study |
| NY3114 | DSY182 | DSY172 | MATa, his3 leu2 ura3-52 Δyck1 yck2-2ts [p415 GPDp GST Sec2 1-508, CEN LEU] | This study |
| NY3115 | DSY320 | DSY171 | MATa, his3 leu2 ura3-52 [p415 GPDp GST Sec2 full-length WT, CEN LEU] | This study |
| NY3116 | DSY322 | DSY171 | MATa, his3 leu2 ura3-52 [p415 GPDp GST Sec2 full-length S181A + T183A + S184A + S185A + S186A + T187A + S188A, CEN LEU] | This study |
| NY3117 | DSY324 | DSY171 | MATa, his3 leu2 ura3-52 [p415 GPDp GST Sec2 full-length S181D + T183E + S184D + S185D + S186D + T187E + S188D, CEN LEU] | This study |
| NY3118 | DSY326 DSY327 | DSY172 | MATa, his3 leu2 ura3-52 Δyck1 yck2-2ts [p415 GPDp GST Sec2 full-length WT, CEN LEU] | This study |
| NY3119 | DSY329 | DSY172 | MATa, his3 leu2 ura3-52 Δyck1 yck2-2ts [p415 GPDp GST Sec2 full-length S181A + T183A + S184A + S185A + S186A + T187A + S188A, CEN LEU] | This study |
| NY3120 | DSY331 | DSY172 | MATa, his3 leu2 ura3-52 Δyck1 yck2-2ts [p415 GPDp GST Sec2 full-length S181D + T183E + S184D + S185D + S186D + T187E + S188D, CEN LEU] | This study |
| NY3121 | DSY209 | DSY171 | MATa, his3 leu2 ura3-52 [p415 GPDp GST Sec2 1-508 S181A + T183A + S184A + S185A + S186A + T187A + S188A, CEN LEU] | This study |
| NY3122 | DSY211 | DSY171 | MATa, his3 leu2 ura3-52 [p415 GPDp GST Sec2 1-508 S181D + T183E + S184D + S185D + S186D + T187E + S188D, CEN LEU] | This study |
| NY3123 | DSY213 | DSY172 | MATa, his3 leu2 ura3-52 Δyck1 yck2-2ts [p415 GPDp GST Sec2 1-508 S181A + T183A + S184A + S185A + S186A + T187A + S188A, CEN LEU] | This study |
| NY3124 | DSY215 | DSY172 | MATa, his3 leu2 ura3-52 Δyck1 yck2-2ts [p415 GPDp GST Sec2 1-508 S181D + T183E + S184D + S185D + S186D + T187E + S188D, CEN LEU] | This study |
| NY3125 | DSY130 | NY1210 | MATa, his3-Δ200 leu2-3112 ura3-52 GAL+ [p415 GPDp GST Sec2 1-508, CEN LEU] | This study |
| NY3126 | DSY348 | NY3039 | MATα, his3-Δ200 leu2-3112 ura3-52 ypt31Δ::HIS3 ypt32A141D [p415 GPDp GST Sec2 1-508, CEN LEU] | This study |
| NY775 | MATa, leu2-3112 sec4-8 | Laboratory strain | ||
| NY3127 | DSY240 | NY775 | MATa, leu2-3112 sec4-8 [p415 GPDp GST Sec2 1-508, CEN LEU] | This study |
| NY786 | MATa, leu2-3112 ura3-52 sec15-1 | Laboratory strain | ||
| NY3128 | DSY234 | NY786 | MATa, leu2-3112 ura3-52 sec15-1 [p415 GPDp GST Sec2 1-508, CEN LEU] | This study |
| NY884 | MATa, leu2-3112 ura3-52 sec6-4 | Laboratory strain | ||
| NY3129 | DSY236 | MATa, leu2-3112 ura3-52 sec6-4 [p415 GPDp GST Sec2 1-508, CEN LEU] | This study | |
| NY769 | MATa, leu2-3112 sec1-1 | Laboratory strain | ||
| NY3130 | DSY237 | MATa, leu2-3112 sec1-1 [p415 GPDp GST Sec2 1-508, CEN LEU] | This study | |
| NY3131 | Ling060 | MATα, his3-Δ200 leu2-3112 ura3-52 GAL+ [Δosh4::KanMX4] | Laboratory strain | |
| NY3132 | DSY442 | Ling060 | MATα, his3-Δ200 leu2-3112 ura3-52 GAL+ [Δosh4::KanMX4] [p415 GPDp GST Sec2 1-508, CEN LEU] | This study |
| NY3133 | DSY441 | NY2187 | MATα, leu2-3112 pik1-101 [p415 GPDp GST Sec2 1-508, CEN LEU] | This study |
| NY3134 | DSY196 | DSY171 | MATa, his3 leu2 ura3-52 SEC15::[Sec15-13xmyc URA] | This study |
| NY3135 | DSY198 | DSY172 | MATa, his3 leu2 ura3-52 Δyck1 yck2-2ts SEC15::[Sec15-13xmyc URA] | This study |
| NY3136 | DSY204 | DSY171 | MATa, his3 leu2 ura3-52 SEC2::[Sec2 WT 3xGFP LEU2] SEC15::[Sec15-13xmyc URA] | This study |
| NY3137 | DSY207 | DSY172 | MATa, his3 leu2 ura3-52 Δyck1 yck2-2ts SEC2::[Sec2 WT 3xGFP LEU2] SEC15::[Sec15-13xmyc URA] | This study |
| NY1210 | MATa, his3-Δ200 leu2-3112 ura3-52 GAL+ | Laboratory strain | ||
| NY3138 | DSY267 | NY1210 | MATa, his3-Δ200 leu2-3112 ura3-52 GAL+ [YEp352 GFP Yck2, 2μ URA] | This study |
| NY3139 | DSY337 | NY1210 | MATa, his3-Δ200 leu2-3112 ura3-52 GAL+ [YEp352 GFP Yck2 H187Y, 2μ URA] | This study |
| NY3140 | DSY245 | NY1210 | MATa, his3-Δ200 leu2-3112 ura3-52 GAL+ [Δyck2::kanMX6] | This study |
| NY3039 | MY481 | NY1210 | MATα, his3-Δ200 leu2-3112 ura3-52 [ypt31Δ::HIS3] ypt32A141D | Laboratory strain |
| NY3141 | DSY251 | NY | His3-Δ200 leu2-3112 ura3-52 [ypt31Δ::HIS3] ypt32A141D [Δyck2::kanMX6] | This study |
| NY787 | NY | MATα, leu2-3112 sec15-1 | Laboratory strain | |
| NY3142 | DSY263 | NY | leu2-3112 sec15-1 [Δyck2::kanMX6] | This study |
| NY27 | NY | MATα, ura3-52 sec2-59 | Laboratory strain | |
| NY3143 | DSY255 | NY | ura3-52 sec2-59 [Δyck2::kanMX6] | This study |
| NY774 | NY | MATα, leu2-3112 ura3-52 sec4-8 | Laboratory strain | |
| NY3144 | DSY259 | NY | leu2-3112 ura3-52 sec4-8 [Δyck2::kanMX6] | This study |
| NY427 | RS | MATα, leu2-3112 ura3-52 trp1− his4− sec12-4 | Laboratory strain | |
| NY3145 | DSY278 | NY | leu2-3112 ura3-52 trp1− his4− sec12-4 [Δyck2::kanMX6] | This study |
| NY760 | NY | MATα, ura3-52 sec7-1 | Laboratory strain | |
| NY3146 | DSY281 | NY | ura3-52 sec7-1 [Δyck2::kanMX6] | This study |
| NY778 | NY | MATα, leu2-3112 ura3-52 sec6-4 | Laboratory strain | |
| NY3147 | DSY285 | NY | leu2-3112 ura3-52 sec6-4 [Δyck2::kanMX6] | This study |
| NY831 | NY | MATα, leu2-3112 ura3-52 sec9-4 | Laboratory strain | |
| NY3148 | DSY289 | leu2-3112 ura3-52 sec9-4 [Δyck2::kanMX6] | This study | |
| NY768 | NY | MATα, leu2-3112 ura3-52 sec1-1 | Laboratory strain | |
| NY3149 | DSY293 | leu2-3112 ura3-52 sec1-1 [Δyck2::kanMX6] | This study | |
| NY1224 | NY | MATα, leu2-3112 ura3-52 sec3-2 | Laboratory strain | |
| NY3150 | DSY296 | NY | leu2-3112 ura3-52 sec3-2 [Δyck2::kanMX6] | This study |
| NY780 | NY | MATα, leu2-3112 ura3-52 sec8-9 | Laboratory strain | |
| NY3151 | DSY304 | NY | leu2-3112 ura3-52 sec8-9 [Δyck2::kanMX6] | This study |
| NY776 | NY | MATα, leu2-3112 ura3-52 sec5-24 | Laboratory strain | |
| NY3152 | DSY300 | NY | leu2-3112 ura3-52 sec5-24 [Δyck2::kanMX6] | This study |
| NY63 | NY | MATα, his4-619 sec10-2 | Laboratory strain | |
| NY3153 | DSY308 | NY | his4-619 sec10-2 [Δyck2::kanMX6] | This study |
| NY1420 | MATα, leu2-3112 sec14-3 | Laboratory strain | ||
| NY3154 | DSY367 | leu2-3112 sec14-3 [Δyck2::kanMX6] | This study | |
| NY2331 | NY | MATα, leu2-3112 ura3-52 ade2 ade3 his3 [Δgyp1::LEU2] | Laboratory strain | |
| NY3155 | DSY363 | leu2-3112 ura3-52 ade2 ade3 his3 [Δgyp1::LEU2] [Δyck2::kanMX6] | This study | |
| NY2187 | NY | MATα, leu2-3112 pik1-101 | Laboratory strain | |
| NY17 | NY | MATa, ura3-52 sec6-4 | Laboratory strain | |
| NY3156 | DSY184 | LR | MATa, his3 leu2 ura3-52 SEC2::[Sec2-WT-3xGFP HIS3] | This study |
| NY3157 | DSY186/188 | LR | MATa, his3 leu2 ura3-52 Δyck1 yck2-2ts SEC2::[Sec2-WT-3xGFP HIS3] | This study |
| NY3158 | DSY316 | NY3039 | MATα, his3-Δ200 leu2-3112 ura3-52 [ypt31Δ::HIS3] ypt32A141D SEC2::[Sec2-WT-3xGFP LEU2] | This study |
| NY3159 | DSY319 | DSY251 | His3-Δ200 leu2-3112 ura3-52 [ypt31Δ::HIS3] ypt32A141D [Δyck2::kanMX6] SEC2::[Sec2-WT-3xGFP LEU2] | This study |
| NY3160 | DSY273 | LR | MATa, his3 leu2 ura3-52 SEC15::[Sec15-3xGFP HIS] | This study |
| NY3161 | DSY274 | LR | MATa, his3 leu2 ura3-52 Δyck1 yck2-2ts SEC15::[Sec15-3xGFP HIS] | This study |
| NY3162 | DSY225 | LR | MATa, his3 leu2 ura3-52 URA::[ADHp-GFP-Ypt32] | This study |
| NY3163 | DSY229 | LR | MATa, his3 leu2 ura3-52 Δyck1 yck2-2ts URA::[ADHp-GFP-Ypt32] | This study |
| NY3164 | DSY437 | BY4741 | MATa, his3Δ1 leu2Δ0 met15Δ0 ura3Δ0 [Δsac1::KanMX4] [p413 GPDp Sec2 1-508, CEN HIS] | This study |
| NY2911 | NY | MATa, his3-Δ200 leu2-3112 ura3-52 SEC2::[Sec2-WT-3xGFP LEU2] | Laboratory strain | |
| NY3037 | NY | MATa, his3-Δ200 leu2-3112 ura3-52 SEC2::[Sec2-S181A + T183A + S184A + S185A + S186A + T187A + S188A-3xGFP LEU2] | Laboratory strain | |
| NY3165 | DSY76 | NY | leu2-3112 ura3-52 sec4-8 SEC2::[Sec2-WT-3xGFP LEU2] | This study |
| NY3166 | DSY77 | NY | leu2-3112 ura3-52 sec4-8 SEC2::[Sec2-S181A + T183A + S184A + S185A + S186A + T187A + S188A-3xGFP LEU2] | This study |
| NY3167 | DSY475 | NY | leu2-3112 sec15-1 SEC2::[Sec2-WT-3xGFP LEU2] | This study |
| NY3168 | DSY476 | NY | leu2-3112 sec15-1 SEC2::[Sec2-S181A + T183A + S184A + S185A + S186A + T187A + S188A-3xGFP LEU2] | This study |
| NY3169 | DSY189 | LR | MATa, his3 leu2 ura3-52 SEC2::[Sec2-WT-3xGFP LEU2] | This study |
| NY3170 | DSY471 | LR | MATa, his3 leu2 ura3-52 SEC2::[Sec2-S181A + T183A + S184A + S185A + S186A + T187A + S188A-3xGFP LEU2] | This study |
| NY3171 | DSY465 | LR | MATa, his3 leu2 ura3-52 SEC2::[Sec2-S181D + T183E + S184D + S185D + S186D + T187E + S188D-3xGFP LEU2] | This study |
| NY3172 | DSY483 | NY | leu2-3112 ura3-52 sec1-1 SEC2::[Sec2-WT-3xGFP LEU2] | This study |
| NY3173 | DSY484 | NY | leu2-3112 ura3-52 sec1-1 SEC2::[Sec2-S181A + T183A + S184A + S185A + S186A + T187A + S188A-3xGFP LEU2] | This study |
| NY3174 | DSY494 | NY | leu2-3112 ura3-52 sec3-2 SEC2::[Sec2-WT-3xGFP LEU2] | This study |
| NY3175 | DSY495 | NY | leu2-3112 ura3-52 sec3-2 SEC2::[Sec2-S181A + T183A + S184A + S185A + S186A + T187A + S188A-3xGFP LEU2] | This study |
| NY3176 | DSY504 | NY | leu2-3112 ura3-52 trp1− his4− sec12-4 SEC2::[Sec2-WT-3xGFP LEU2] | This study |
| NY3177 | DSY505 | NY | leu2-3112 ura3-52 trp1− his4− sec12-4 SEC2::[Sec2-S181A + T183A + S184A + S185A + S186A + T187A + S188A-3xGFP LEU2] | This study |
| NY3178 | DSY192 | LR | MATa, his3 leu2 ura3-52 Δyck1 yck2-2ts SEC2::[Sec2-WT-3xGFP LEU2] | This study |
| NY3179 | DSY468 | LR | MATa, his3 leu2 ura3-52 Δyck1 yck2-2ts SEC2::[Sec2-S181D + T183E + S184D + S185D + S186D + T187E + S188D-3xGFP LEU2] | This study |
| NY3180 | DSY507 | NY | leu2-3112 ura3-52 sec8-9 SEC2::[Sec2-WT-3xGFP LEU2] | This study |
| NY3181 | DSY508 | NY | leu2-3112 ura3-52 sec8-9 SEC2::[Sec2-S181A + T183A + S184A + S185A + S186A + T187A + S188A-3xGFP LEU2] | This study |
| NY3182 | DSY515 | NY | leu2-3112 ura3-52 sec6-4 SEC2::[Sec2-WT-3xGFP LEU2] | This study |
| NY3183 | DSY516 | NY | leu2-3112 ura3-52 sec6-4 SEC2::[Sec2-S181A + T183A + S184A + S185A + S186A + T187A + S188A-3xGFP LEU2] | This study |
| NY3184 | DSY523 | NY | leu2-3112 ura3-52 sec5-24 SEC2::[Sec2-WT-3xGFP LEU2] | This study |
| NY3185 | DSY524 | NY | leu2-3112 ura3-52 sec5-24 SEC2::[Sec2-S181A + T183A + S184A + S185A + S186A + T187A + S188A-3xGFP LEU2] | This study |
| NY3186 | DSY531 | NY | leu2-3112 ura3-52 sec9-4 SEC2::[Sec2-WT-3xGFP LEU2] | This study |
| NY3187 | DSY532 | NY | leu2-3112 ura3-52 sec9-4 SEC2::[Sec2-S181A + T183A + S184A + S185A + S186A + T187A + S188A-3xGFP LEU2] | This study |