Membrane protein targeting to the MVB/lysosome.
Membrane protein targeting to the MVB/lysosome.
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DOI:
10.1021/cr800473s
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发表时间:
2009-04
期刊:
影响因子:
62.1
通讯作者:
Katzmann, David J.
中科院分区:
文献类型:
--
作者:
Davies, Brian A.;Lee, Jacqueline R. E.;Oestreich, Andrea J.;Katzmann, David J.
Cells sense and respond to their environment largely through the function of receptors, transporters, and channels within the plasma membrane. For cells to appropriately respond to environmental cues, they must maintain the proper protein complement at the cell surface. This involves both delivering proteins to the cell surface and removing them when necessary. The multivesicular body (MVB) sorting reaction within the endocytic pathway provides an important cellular mechanism for terminating the function of integral membrane proteins destined for degradation within the lysosome (reviewed in refs 1-3). The MVB sorting machinery recognizes a subset of endocytic cargoes and concentrates them into regions within the endosomal membrane. These sections then bud as small vesicles into the lumen of the endosome, giving the endosome a multivesicular appearance by electron microscopy. Subsequent fusion of the MVB with the lysosome delivers these intralumenal vesicles to the hydrolytic environment of the lysosome, where the lipid and protein contents of the vesicles are degraded (reviewed in ref 4). The topology of membrane invagination into the endosomal lumen (exvagination from the cytosol) during MVB sorting is similar to the budding process whereby enveloped viruses, including HIV-1 and Ebola virus, egress from the cell (Figure 1). Viral structural proteins, such as Gag from HIV-1 and VP40 from Ebola virus, utilize the MVB sorting machinery to bud either from the plasma membrane or into an intracellular compartment for subsequent release from the cell (reviewed in refs 5 and 6). Therefore, the MVB sorting machinery is important both for viral replication and for lysosomal delivery of endocytosed proteins. In addition, a number of recent studies have shown a role for the MVB sorting machinery in late steps of cytokinesis, 7-13 emphasizing the importance of this machinery for diverse cellular processes of similar membrane topology.MVB sorting is conserved throughout eukaryotes, and studies in both yeast and mammalian systems have identified a series of trans-acting factors that mediate this reaction (reviewed in refs 2, 14, and 15). The endosomal sorting complexes required for transport (ESCRTs) and associated proteins constitute the majority of this machinery. Cargo recognition is mediated by interactions with the Vps27/Hrs-Hse1/STAM complex as well as with ESCRT-I (Vps23/Tsg101, Vps28, Vps37, and Mvb12). 16-20 ESCRT-II (Vps22, Vps25, Vps36) appears to function downstream or in parallel to ESCRT-I and is also believed to interact with cargo based on ubiquitin-binding domain activity within Vps36. 21-25 ESCRT-II additionally serves to facilitate the recruitment and assembly of ESCRT-III subunits (Vps20/CHMP6, Snf7/CHMP4, Vps2/CHMP2, Vps24/CHMP3, Did2/CHMP1,
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DOI:
10.1083/jcb.200508166
发表时间:
2006-02-27
期刊:
The Journal of cell biology
影响因子:
--
作者:
Azmi I;Davies B;Dimaano C;Payne J;Eckert D;Babst M;Katzmann DJ
通讯作者:
Katzmann DJ
影响因子:
3.3
作者:
Bishop, N;Woodmane, P
通讯作者:
Woodmane, P
影响因子:
16.8
作者:
Alam, Steven L.;Langelier, Charles;Sundquist, Wesley I.
通讯作者:
Sundquist, Wesley I.
影响因子:
56.9
作者:
Carlton, Jez G.;Martin-Serrano, Juan
通讯作者:
Martin-Serrano, Juan
影响因子:
3.3
作者:
Amerik, AY;Nowak, J;Hochstrasser, M
通讯作者:
Hochstrasser, M