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The molecular basis for selective assembly of the UBAP1-containing endosome-specific ESCRT-I complex.

Wunderley, Lydia; Brownhill, Kim; Stefani, Flavia; Tabernero, Lydia; Woodman, Philip

Journal of cell science. 2014;127(Pt 3):663-72.

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Abstract

ESCRT-I is essential for the multivesicular body (MVB) sorting of ubiquitylated cargo such as epidermal growth factor receptor, as well as for several cellular functions, such as cell division and retroviral budding. ESCRT-I has four subunits; TSG101, VPS28, VPS37 and MVB12. There are several members of VPS37 and MVB12 families in mammalian cells, and their differential incorporation into ESCRT-I could provide function-specific variants of the complex. However, it remains unclear whether these different forms of VPS37 and MVB12 combine randomly or generate selective pairings within ESCRT-I, and what the mechanistic basis for such pairing would be. Here, we show that the incorporation of two MVB12 members, UBAP1 and MVB12A, into ESCRT-I is highly selective with respect to their VPS37 partners. We map the region mediating selective assembly of UBAP1-VPS37A to the core ESCRT-I-binding domain of VPS37A. In contrast, selective integration of UBAP1 requires both the minimal ESCRT-I-binding region and a neighbouring predicted helix. The biochemical specificity in ESCRT-I assembly is matched by functional specialisation as siRNA-mediated depletion of UBAP1, but not MVB12A and MVB12B, disrupts ubiquitin-dependent sorting at the MVB.

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Place of publication:
England
Volume:
127
Issue:
Pt 3
Pagination:
663-72
Digital Object Identifier:
10.1242/jcs.140673
Pubmed Identifier:
24284069
Pii Identifier:
jcs.140673
Access state:
Active

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Record metadata

Manchester eScholar ID:
uk-ac-man-scw:292872
Created by:
Woodman, Philip
Created:
18th December, 2015, 14:28:01
Last modified by:
Woodman, Philip
Last modified:
18th December, 2015, 14:28:01

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