Literature DB >> 15242332

Vectorial proteomics reveal targeting, phosphorylation and specific fragmentation of polymerase I and transcript release factor (PTRF) at the surface of caveolae in human adipocytes.

Nabila Aboulaich1, Julia P Vainonen, Peter Strålfors, Alexander V Vener.   

Abstract

Caveolae, the specialized invaginations of plasma membranes, formed sealed vesicles with outwards-orientated cytosolic surface after isolation from primary human adipocytes. This morphology allowed differential, vectorial identification of proteins at the opposite membrane surfaces by proteolysis and MS. Extracellular-exposed caveolae-specific proteins CD36 and copper-containing amine oxidase were concealed inside the vesicles and resisted trypsin treatment. The cytosol-orientated caveolins were efficiently digested by trypsin, producing peptides amenable to direct MS sequencing. Isolation of peripheral proteins associated with the cytosolic surface of caveolae revealed a set of proteins that contained nuclear localization signals, leucine-zipper domains and PEST (amino acid sequence enriched in proline, glutamic acid, serine and threonine) domains implicated in regulation by proteolysis. In particular, PTRF (polymerase I and transcript release factor) was found as a major caveolae-associated protein and its co-localization with caveolin was confirmed by immunofluorescence confocal microscopy. PTRF was present at the surface of caveolae in the intact form and in five different truncated forms. Peptides (44 and 45 amino acids long) comprising both the PEST domains were sequenced by nanospray-quadrupole-time-of-flight MS from the full-length PTRF, but were not found in the truncated forms of the protein. Two endogenous cleavage sites corresponding to calpain specificity were identified in PTRF; one of them was in a PEST domain. Both cleavage sites were flanked by mono- or diphosphorylated sequences. The phosphorylation sites were localized to Ser-36, Ser-40, Ser-365 and Ser-366 in PTRF. Caveolae of human adipocytes are proposed to function in targeting, relocation and proteolytic control of PTRF and other PEST-domain-containing signalling proteins.

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Year:  2004        PMID: 15242332      PMCID: PMC1134064          DOI: 10.1042/BJ20040647

Source DB:  PubMed          Journal:  Biochem J        ISSN: 0264-6021            Impact factor:   3.857


  51 in total

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3.  N-terminal processing and modifications of caveolin-1 in caveolae from human adipocytes.

Authors:  Julia P Vainonen; Nabila Aboulaich; Maria V Turkina; Peter Strålfors; Alexander V Vener
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Authors:  J Gustavsson; S Parpal; M Karlsson; C Ramsing; H Thorn; M Borg; M Lindroth; K H Peterson; K E Magnusson; P Strâlfors
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Authors:  Sanford R Sampson; Denise R Cooper
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2.  PTRF-Cavin, a conserved cytoplasmic protein required for caveola formation and function.

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Review 3.  Molecular mechanisms of clathrin-independent endocytosis.

Authors:  Carsten G Hansen; Benjamin J Nichols
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6.  Polymerase I and transcript release factor (PTRF) regulates adipocyte differentiation and determines adipose tissue expandability.

Authors:  Sergio Perez-Diaz; Lance A Johnson; Robert M DeKroon; Jose M Moreno-Navarrete; Oscar Alzate; Jose M Fernandez-Real; Nobuyo Maeda; Jose M Arbones-Mainar
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7.  Fatal cardiac arrhythmia and long-QT syndrome in a new form of congenital generalized lipodystrophy with muscle rippling (CGL4) due to PTRF-CAVIN mutations.

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Journal:  PLoS Genet       Date:  2010-03-12       Impact factor: 5.917

8.  MURC/Cavin-4 and cavin family members form tissue-specific caveolar complexes.

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9.  SDPR induces membrane curvature and functions in the formation of caveolae.

Authors:  Carsten G Hansen; Nicholas A Bright; Gillian Howard; Benjamin J Nichols
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10.  Lipid droplet analysis in caveolin-deficient adipocytes: alterations in surface phospholipid composition and maturation defects.

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Journal:  J Lipid Res       Date:  2009-11-10       Impact factor: 5.922

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