代谢产物及其他物质的溶酶体膜输出。

IF 5.5 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
FEBS Journal Pub Date : 2021-07-01 Epub Date: 2020-11-12 DOI:10.1111/febs.15602
Sönke Rudnik, Markus Damme
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引用次数: 14

摘要

溶酶体是真核细胞中的降解细胞器,可将各种大分子水解分解为小的基本构件。这些低分子量的代谢物被运过溶酶体膜,并在细胞质和其他细胞器中重新用于生物合成途径。尽管在过去 20 年中,我们对溶酶体膜的各种转运体、其他整体和外周膜蛋白、脂质组成以及其周转率的了解有了显著提高,但在溶酶体膜功能的关键方面仍有许多问题尚未解决。这些问题包括溶酶体作为细胞储藏室的可能功能、介导各种氨基酸等输出的尚未确定的转运体、介导溶酶体膜蛋白从高尔基体转运到溶酶体的机制以及溶酶体膜蛋白的周转。在此,我们回顾了目前有关溶酶体膜的知识,并指出了未来需要解决的一些开放性问题,以便全面完整地了解溶酶体如何与其他细胞器、细胞过程和途径沟通。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The lysosomal membrane-export of metabolites and beyond.

Lysosomes are degradative organelles in eukaryotic cells mediating the hydrolytic catabolism of various macromolecules to small basic building blocks. These low-molecular-weight metabolites are transported across the lysosomal membrane and reused in the cytoplasm and other organelles for biosynthetic pathways. Even though in the past 20 years our understanding of the lysosomal membrane regarding various transporters, other integral and peripheral membrane proteins, the lipid composition, but also its turnover has dramatically improved, there are still many unresolved questions concerning key aspects of the function of the lysosomal membrane. These include a possible function of lysosomes as a cellular storage compartment, yet unidentified transporters mediating the export such as various amino acids, mechanisms mediating the transport of lysosomal membrane proteins from the Golgi apparatus to lysosomes, and the turnover of lysosomal membrane proteins. Here, we review the current knowledge about the lysosomal membrane and identify some of the open questions that need to be solved in the future for a comprehensive and complete understanding of how lysosomes communicate with other organelles, cellular processes, and pathways.

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来源期刊
FEBS Journal
FEBS Journal 生物-生化与分子生物学
CiteScore
11.70
自引率
1.90%
发文量
375
审稿时长
1 months
期刊介绍: The FEBS Journal is an international journal devoted to the rapid publication of full-length papers covering a wide range of topics in any area of the molecular life sciences. The criteria for acceptance are originality and high quality research, which will provide novel perspectives in a specific area of research, and will be of interest to our broad readership. The journal does not accept papers that describe the expression of specific genes and proteins or test the effect of a drug or reagent, without presenting any biological significance. Papers describing bioinformatics, modelling or structural studies of specific systems or molecules should include experimental data.
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