| Literature DB >> 24714733 |
Li-Chuan Tseng1, Chengjin Zhang2, Chun-Mei Cheng1, Haoying Xu2, Chia-Hao Hsu3, Yun-Jin Jiang4.
Abstract
Notch signaling pathway defines an evolutionarily conserved mechanism in cell-fate determination in a broad spectrum of developmental processes through local cell interactions. mind bomb (mib) encodes an E3 ubiquitin ligase that is involved in Notch activation through Delta ubiquitylation and internalization. To further dissect the function of Mib, two yeast two-hybrid screens for zebrafish Mib/Mib2-binding proteins with different strategies have been performed. 81 putative interesting proteins were discovered and classified into six groups: ubiquitin proteasome pathway, cytoskeleton, trafficking, replication/transcription/translation factors, cell signaling and others. Confirmed by coimmunoprecipitation (Co-IP), Mib interacted with four tested proteins: ubiquitin specific protease 1 (Usp1), ubiquitin specific protease 9 (Usp9), tumor-necrosis-factor-receptor-associated factor (TRAF)-binding domain (Trabid)/zinc finger, RAN-binding domain containing 1 (Zranb1) and hypoxia-inducible factor 1, alpha subunit inhibitor (Hif1an)/factor inhibiting HIF 1 (Fih-1). Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions. Both Mib and Mib2 can ubiquitylate Trabid and Fih-1, indicating a potential regulating role of Mib and Mib2 on Trabid and Fih-1 and, furthermore, the possible involvement of Notch signaling in hypoxia-regulated differentiation, tumorigenesis and NF-κB pathway. Finally, functions of confirmed Mib/Mib2-interacting proteins are collated, summarized and hypothesized, which depicts a regulating network beyond Notch signaling.Entities:
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Year: 2014 PMID: 24714733 PMCID: PMC3979679 DOI: 10.1371/journal.pone.0093394
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Figure 1Structures of the bait proteins.
Domain structures of Mib and Mib2 baits. (A) Schematic structures of Mib and Mib2 proteins. (B) Domain drawings of used baits. Autoactivated baits are in gray.
Zebrafish Mib/Mib2-binding proteins isolated in the first yeast two-hybrid screen.
| Prey Groups | Zebrafish Prey genes (GenBank accession number) | Human Homolog | Baits | PBS | Preys Binding region (frequency) |
| Ubiquitin-Proteasome System | proteasome 26S subunit, non-ATPase, 1, (psmd1) (NM_201184) | PSMD1 | I | D | 114 - 320aa (2) |
| ubiquitin specific peptidase 13 (isopeptidase T-3) (usp13) (NM_001098386) | USP13 | II | C | 438 - 889aa (3) | |
| ubiquitin B (ubb) (NM_001013272) | UBB | II | A | full length (31) | |
| mind bomb (mib) (NM_173286) | MIB1 | II | D | 507 - 876aa (1) | |
| ubiquitin A-52 residue ribosomal protein fusion product 1(uba52) (NM_001037113) | UBA52 | II | A | full length (30) | |
|
|
|
|
| 489 - stop codon (31) | |
|
|
|
|
| 1980 - 2363aa (3) | |
| ubiquitin C (ubc) (NM_001077804) | UBC | II | A | full length (45) | |
| ribosomal protein S27a (rps27a)/UBIQUITIN A-80-RESIDUE RIBOSOMAL PROTEIN FUSION PRODUCT (UBA80) (NM_200502) | RSP27A (UBA80) | II | A | full length (46) | |
| Cytoskeleton | actinin alpha 2 (actn2) (NM_001037573) | ACTN2 | I | D | 528 - stop codon (1) |
| actinin alpha 4 (actn4) (NM_199586) | ACTN4 | I | A | 660 - stop codon (7) | |
| septin 7a (sept7a) (NM_201161) | SEPT7 | II | C | 14 - 198aa (4) | |
| Trafficking | SEC6-like 1; exocyst complex component 3 (exoc3) (NM_212715) | EXOC3 (SEC6) | I | B | full length (4) |
| PREDICTED: Danio rerio similar to EPS15 protein (eps15) (XM_002663099) | EPS15 | II | D | 971 - stop codon (1) | |
| PREDICTED: Danio rerio epsin-2-like, transcript variant 1(epn2) (XM_681373) | EPN2 | II | D | 84 - 265aa (1) | |
| Replication/Transcription/Translation | paired box gene 3 (pax3) (NM_131277) | PAX3 (HUP2) | I | D | 192 - stop codon (2) |
| paired box gene 7 (pax7a) (NM_131332) | PAX7 (HUP1) | I | D | 112 - 397aa (1) | |
| paired box gene 7 (pax7c) (XM_689806) | PAX7 (HUP1) | I, II | D, D | 141- stop codon (3) | |
| orthodenticle homolog 2 (otx2) (NM_131251) | OTX2 | II | D | 19 - 233aa (1) | |
| DEAD (Asp-Glu-Ala-Asp) box polypeptide 5 (ddx5) (NM_212612) | DDX5 | I | A | 47 - 273aa (6) | |
| PREDICTED: Danio rerio helicase-like transcription factor-like (hltf) (XM_687979) | HLTF (HIP116) | II | D | 363 - 562aa (1) | |
| Cell Signaling | TGF-beta activated kinase 1/MAP3K7 binding protein 3 (TAK1-binding protein 3) (tab3) (NM_001045105) | TAB3 | II | 338 - 611aa (1) | |
| polo-like kinase 4 (plk4) (NM_001118892) | PLK4 | I | D | 591 - 828aa (1) | |
| tyrosine 3-monooxygenase/tryptophan 5-monooxygenase activation protein, zeta polypeptide (ywhaz) (NM_212757)(14-3-3 zeta) | YWHAZ (14-3-3 zeta) | II | A | 63 - 299aa (15) | |
| tyrosine 3-monooxygenase/tryptophan 5-monooxygenase activation protein, beta polypeptide b (ywhabb), mRNA (14-3-3 beta) (NM_213145) | YWHAB (14-3-3 beta) | II | D | 76 - 263aa (1) | |
| GTP binding protein 4 (gtpbp4) (NM_199851) | GTPBP4 (CRFG) | II | D | 43 - 502aa (1) | |
| Others | 4-aminobutyrate aminotransferase, gamma-aminobutyrate transaminase (abat) (NM_201498) | ABAT (GABAT) | I | D | 156 - stop codon (1) |
| plasma membrane calcium ATPase 4 (atp2b4) (EU559285) | ATP2B4 (PMCA4) | I | B | 626 - 816aa (3) | |
| ankyrin repeat domain 52a (ankrd52a) (NM_001018154) | ANKRD52 | II | D | 230 - 510aa (1) | |
| insulin-degrading enzyme (ide) (NM_001089525) | IDE | II | B | 252 - 813aa (7) | |
| family with sequence similarity 76, member B (fam76b) (NM_199932) | FAM76B | I | B | 1 - 118aa (3) | |
| calcium binding protein 39-like (cab39l) (NM_001007327) | CAB39L | II | D | 11 - 347aa (1) | |
| rapunzel (rpz) (NM_001145238) | unknown | II | D | 47 - unknown (1) | |
| PREDICTED: ankyrin repeat domain-containing protein 13A-like (ankrd13a) (NM_001126387) | ANKRD13A | II | D | 273 - stop codon (1) | |
| PREDICTED: Danio rerio similar to limb expression 1(lix1) (XM_681174) | LIX1 | II | D | 1 - 267aa (1) | |
| PREDICTED: Danio rerio zinc finger protein 569-like (LOC567317) (XM_690612) | unknown | II | D | 11 - 235aa (1) | |
| PREDICTED: Danio rerio similar to Zinc finger protein 521 (LOC571623) (XM_695227) | unknown | II | D | 96 - 221aa (1) | |
| similar to zinc finger like protein (LOC100330312) (XR_117615) | unknown | I | D | unknown (1) |
Notes. Baits I: Mib-C-RF123a (783–1029 amino acid); II: Mib2-C-RF12 (781–999 amino acid).
*PBS (Predicted Biological Score): A = very high confidence in the interaction, B = high confidence in the interaction, C = good confidence in the interaction, D = moderate confidence in the interaction. The association of Mib/Mib2 and two of the preys (Usp5 and Usp9) were chosen for further investigation by co-immunoprecipitation (Co-IP). Preys that have or do not have physical interaction with Mib/Mib2 in Co-IP assay are in bold and italic fonts, respectively.
Zebrafish Mib-binding proteins isolated in the second yeast two-hybrid screen.
| Prey Groups | Zebrafish Prey genes (GenBank accession number) | Human Homolog | Baits | Preys Binding region (frequency) |
| Ubiquitin Proteasome System |
|
|
| 349 - stop codon (1) |
| proteasome subunit, alpha type, 5 (psma5) (NM_205708) | PSMA5 | V | from start codon (1) | |
| proteasome 26s subunit, non-ATPase, 4 (psmd4) (NM_001002112) | PSMD4 (Rpn10) | III, V | from 80aa (3) | |
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| from 295 - stop codon (1) | |
| Cytoskeleton | myosin light chain, phosphorylatable, fast skeletal muscle a (mylpfa) (NM_131188) | MYLPF | III, V | full length (21) |
| atrial myosin light chain (AF434191) | unknown | III | full length (1) | |
| actinin alpha 3 (actn3) (NM_131522) | ACTN3 | V | 680- stop codon (1) | |
| cofilin 1 (non-muscle) (cfl1) (NM_213639) | CFL1 | V | 9 - stop codon (3) | |
| type I cytokeratin, enveloping layer, like (cyt1l) (NM_001082882) | unknown | III, V | from 157aa (3) | |
| Trafficking | exocyst complex component 1 (exoc1) (NM_199597) | EXOC1 (SEC3) | III | from 305aa (1) |
| vesicle docking protein p115 (vdp) (NM_200155) | USO1 (VDP) | III | from 600aa (1) | |
| translocase of outer mitochondrial membrane 20 homolog b (yeast) (tomm20b) (NM_001002698) | TOMM20 (MOM19) | III, V | from15aa (2) | |
| Replication/Transcription/Translation | Danio rerio c20orf14 homolog (H. sapiens), mRNA (c20orf14) (BC066556) | PRPF6 | V | from 430aa (2) |
| cleavage and polyadenylation specific factor 3 (cpsf3) (BC085402) | CPSF3 | III | from start codon (2) | |
| replication protein A (rpa) (NM_131711) | RPA2 (HSSB) | V | from start codon (3) | |
| splicing factor 3a, subunit 3 (sf3a3) (BC096781) | SF3A3 (PRP9) | V | from 302aa (2) | |
| poly A binding protein, cytoplasmic 1 a (pabpc1a) (NM_001031676) | PABPC1 (PABP) | V | from 449aa (1) | |
| v-maf musculoaponeurotic fibrosarcoma (avian) oncogene homolog (maf) (BC065941) | MAF | III, V | from 136aa (3) | |
|
|
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| from 38aa (1) | |
| ribosomal protein L27 (rpl27) (NM_199724) | RPL27 | III | from start codon (1) | |
| ribosomal protein, large, P0 (rplp0) (NM_131580) | RPLP0 | III | from 157aa (2) | |
| ribosomal protein L17 homolog (rpl17) (NM_212760) | RPL17 | IV | full length (1) | |
| Cell Signaling |
|
|
| full length (1) |
| tyrosine 3-monooxygenase/tryptophan 5-monooxygenase activation protein, theta polypeptide a (ywhaqa) (14-3-3 theta) (BC066409) | YWHAQ (14-3-3 theta) | III | 57 - stop codon (1) | |
| low density lipoprotein receptor-related protein associated protein 1 (lrpap1) (NM_201306) | LRPAP1 | V | from 43aa (1) | |
| B-cell receptor-associated protein 31 (bcap31) (NM_200092) | BCAP31 (BAP31) | III | from start codon (1) | |
| poly ADP-ribose polymerase 12-like, (LOC564886) (XM_688209) | unknown | IV | 938 - stop codon (3) | |
| progesterone receptor membrane component 1 (pgrmc1) (NM_001007392) | PGRMC1 (MPR) | III | full length (1) | |
| creatine kinase, muscle (ckm) (NM_130932) | CKM (CKMM) | III | from 55aa (1) | |
| brain-subtype creatine kinase (ckbb)(AY055849) | CKB (BCK) | III | from 169aa (1) | |
| casein kinase 2 beta (ck2b) (NM_131187) | CSNK2B | V | full length (1) | |
| Others | YY1 associated factor 2 (yaf2) (NM_001045268) | YAF2 | III | 116 - stop codon (1) |
| apolipoprotein A-I (apoa) (NM_131128) | APOA1 | IV | from start codon (1) | |
| apolipoprotein Eb (apoeb) (BC065592) | APOE | III | from start codon (1) | |
| nascent polypeptide-associated complex alpha polypeptide (naca) (BC122432) | NACA | III, V | from 101aa (7) | |
| immunoglobulin binding protein (AY648749) | HSPA5 | III, V | 483 - stop codon (4) | |
| glyceraldehyde-3-phosphate dehydrogenase, transcript variant 1 (gapdh) (XM_679205) | GAPDH | III | from 59aa (1) | |
| GDP dissociation inhibitor 2 (gdi2) (AY391428) | GDI2 | III, V | from 279aa (3) | |
|
|
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| 420 - stop codon (2) | |
| heat shock 70 kDa protein 5 (glucose-regulated protein) (hspa5) (BC063946) | HSPA5 (GRP78) | III, V | from 478aa (4) | |
| heat shock protein 90 kDa alpha (cytosolic), class B member 1 (hsp90ab1) (NM_131310) | HSP90AB1 (HSP84) | III | from start codon (1) | |
| heat shock protein 9 (hspa9) (NM_201326) | HSPA9 | III | from 513aa (1) | |
| PREDICTED: Danio rerio wu:fc5af04, transcript variant 1(wu:fc51f04) (XM_680524) | unknown | IV | 431 - stop codon (1) |
Notes. Baits III: Mib-M-Ank (454–785 amino acid); IV: Mib-C-RF123b (789–1030 amino acid); V: Mib-ZnF+Ank (74–785 amino acid). The association of Mib and five of the preys (Usp1, Trabid, Zath-1, Fih-1 and Hsc70) were chosen for further investigation by co-immunoprecipitation (Co-IP). Preys that have and do not have physical interaction with Mib in Co-IP assay are in bold and italic fonts, respectively.
Figure 2Interaction of Mib and Mib2 with Usp1, Usp9 and Trabid.
Immunoprecipitation of (A) Usp1 C (349–772 aa), (B) Usp9 (full length) and (C) Trabid C (295–716 aa) by Mib and Mib2. COS7 cells were co-transfected with the expressing plasmids for HA- or Myc-tagged DUBs and FLAG-tagged Mib/Mib2. Immunoprecipitation (IP) were performed with anti-FLAG M2-Agarose and detected by Western blotting (IB) with anti-FLAG, anti-Myc or anti-HA antibody. Star indicates non-specific signals.
Figure 3Interaction of Mib and Mib2 with Fih-1.
IP of Fih-1 by various Mibs and Mib2s. COS7 cells were co-transfected with pCS2-FLAG tag and pCS2-MT tag constructs. The cell lysate was incubated with anti-FLAG M2-Agarose and then subjected to IB with anti-Myc (top panel) or anti-FLAG antibody (bottom panel).
Figure 4Both Mib and Mib2 promote Fih-1and Trabid ubiquitylation.
(A) Ubiquitylation of Fih-1, (B) Trabid C (295–716 aa) and (C) Trabid FL (full-length) by Mib or Mib2. COS7 cells were co-transfected with pcDNA3.1-HA-ubiquitin, pCS2-FLAG tag and pCS2-MT tag constructs. The cell lysate was incubated with anti-Myc antibody and then subjected to IB with anti-HA (top panel) or anti-Myc antibody (bottom panel).
The confirmed interacting proteins of Mind bomb and Mind bomb 2.
| Interacting protein | Mib/Mib2 | Method | Effects on interacting proteins | Function | Reference |
| Death associated protein kinase (DAPK) | Mib | Yeast-two-hybrid | Ubiquitylation, Proteasomal degradation | Antagonize the anti-apoptotic function of DAPK |
|
| Cellular Fas-associated death domain -like IL-1b converting enzyme-like inhibitory protein (cFLIP) | Mib | IP | Caspase-dependent degradation | Decrease the association of caspase-8 and cFLIP, leading to cell apoptosis |
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| Jagged 1a and 1b (Jag1a and 1b) | Mib | Yeast-two-hybrid | Ubiquitylation | Activate the Notch signaling pathway |
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| Jagged 2 (Jag2) | Mib, Mib2 | IP, GST pulldown | Internalization, Ubiquitylation | Activate the Notch signaling pathway |
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| xDelta 1 | Mib | IP | Ubiquitylation, Internalization | Activate the Notch signaling pathway |
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| DeltaA | Mib | IP | Predicted: Ubiquitylation, Internalization | Activate the Notch signaling pathway |
|
| DeltaC | Mib, Mib2 | IP | Ubiquitylation, Internalization | Activate the Notch signaling pathway |
|
| DeltaD | Mib | IP | Ubiquitylation, Internalization | Activate the Notch signaling pathway |
|
| Mind bomb 2 (Mib2) | Mib | IP | Ubiquitylation | Predicted: Activate the Notch signaling pathway |
|
| Sorting nexin 5 (Snx5) | Mib | Yeast-two-hybrid | unknown | Predicted: Mind bomb-mediated endocytosis of Notch ligand proteins |
|
| TANK-binding kinase 1 (TBK1) | Mib | Mass spectrometry | K63-linked ubiquitylation activation | Regulate innate immune responses to RNA virus infection |
|
| Cyclin-dependent kinase 5 (CDK5) | Mib | Mass spectrometry | Localization | Inhibit neurite outgrowth |
|
| PAR-1 | Mib | Mass spectrometry | Phosphorylation of Mib, leading to the proteasomal degradation of Mib | Repress the Notch signaling pathway and stimulate neuronal differentiation |
|
| Receptor-like tyrosine kinase (RYK) | Mib | Mass spectrometry | Ubiquitylation, Proteasomal degradation, Internalization | Activate the Wnt signaling pathway |
|
| Survival of motor neuron protein (SMN) | Mib | IP | Ubiquitylation, Proteasomal degradation | A therapeutic candidate for the spinal muscular atrophy |
|
| B-cell CLL/lymphoma 10 (BCL10) | Mib2 | Mass spectrometry | unknown | Activate the NF-κB signaling pathway |
|
| Inhibitor of nuclear factor kappa-B kinase subunit gamma (IKKγ) | Mib2 | IP | Ubiquitylation | Activate the NF-κB signaling pathway |
|
| Transforming growth factor-β-activated kinase 1 (TAK1) | Mib2 | IP | Activation | Activate the NF-κB signaling pathway |
|
|
| Mib2 | Yeast-two-hybrid | Ubiquitylation | Reduce the NMDAR activity |
|
| Ubiquitin specific protease 1 (Usp1) | Mib, Mib2 | Yeast-two-hybrid, IP | unknown | unknown | this study |
| Ubiquitin specific protease 9 (Usp9) | Mib, Mib2 | Yeast-two-hybrid, IP | unknown | unknown | this study |
| Tumor-necrosis-factor-receptor-associated factor-binding domain (Trabid) | Mib, Mib2 | Yeast-two-hybrid, IP | Ubiquitylation | unknown | this study |
| Factor inhibiting HIF 1 (Fih-1) | Mib, Mib2 | Yeast-two-hybrid, IP | Ubiquitylation | unknown | this study |