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本文引用的文献

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A direct role for Met endocytosis in tumorigenesis.Met 内吞作用在肿瘤发生中的直接作用。
Nat Cell Biol. 2011 Jun 5;13(7):827-37. doi: 10.1038/ncb2257.
2
LMP1 association with CD63 in endosomes and secretion via exosomes limits constitutive NF-κB activation.LMP1 与内体中的 CD63 结合,并通过外泌体分泌,限制了 NF-κB 的组成性激活。
EMBO J. 2011 Jun 1;30(11):2115-29. doi: 10.1038/emboj.2011.123. Epub 2011 Apr 28.
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Unidirectional transfer of microRNA-loaded exosomes from T cells to antigen-presenting cells.外泌体来源的 microRNA 从 T 细胞单向转移至抗原提呈细胞。
Nat Commun. 2011;2:282. doi: 10.1038/ncomms1285.
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Selective transfer of exosomes from oligodendrocytes to microglia by macropinocytosis.小窝胞饮作用介导少突胶质细胞来源的外泌体向小胶质细胞的选择性转移
J Cell Sci. 2011 Feb 1;124(Pt 3):447-58. doi: 10.1242/jcs.074088.
5
Wnt signaling requires sequestration of glycogen synthase kinase 3 inside multivesicular endosomes.Wnt 信号通路需要将糖原合酶激酶 3(GSK3)隔离在多泡内体(MVEs)中。
Cell. 2010 Dec 23;143(7):1136-48. doi: 10.1016/j.cell.2010.11.034.
6
Germinal center dynamics revealed by multiphoton microscopy with a photoactivatable fluorescent reporter.利用光活化荧光报告蛋白的多光子显微镜揭示生发中心动力学。
Cell. 2010 Nov 12;143(4):592-605. doi: 10.1016/j.cell.2010.10.032.
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Exosome release of β-catenin: a novel mechanism that antagonizes Wnt signaling.外泌体释放β-catenin:拮抗 Wnt 信号的新机制。
J Cell Biol. 2010 Sep 20;190(6):1079-91. doi: 10.1083/jcb.201002049. Epub 2010 Sep 13.
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mTORC1 signals from late endosomes: taking a TOR of the endocytic system.mTORC1 从晚期内体发出信号:掌控内吞系统的 TOR
Cell Cycle. 2010 May 15;9(10):1869-70. doi: 10.4161/cc.9.10.11679.
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Functional delivery of viral miRNAs via exosomes.通过外泌体实现病毒 miRNA 的功能递送。
Proc Natl Acad Sci U S A. 2010 Apr 6;107(14):6328-33. doi: 10.1073/pnas.0914843107. Epub 2010 Mar 18.
10
The reverse logic of multivesicular endosomes.多泡体的逆向逻辑。
EMBO Rep. 2010 Feb;11(2):79-81. doi: 10.1038/embor.2009.281. Epub 2010 Jan 8.

由内体-外泌体途径控制的细胞内信号传导。

Intracellular signaling controlled by the endosomal-exosomal pathway.

作者信息

Verweij Frederik J, Middeldorp Jaap M, Pegtel D Michiel

机构信息

Department of Pathology; Cancer Center Amsterdam; VU University Medical Center; Amsterdam, The Netherlands.

出版信息

Commun Integr Biol. 2012 Jan 1;5(1):88-93. doi: 10.4161/cib.18452.

DOI:10.4161/cib.18452
PMID:22482020
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3291324/
Abstract

Tight control of intracellular signaling is essential for developmental processes such as cell differentiation, migration but also for maintaining tissue homeostasis. Disruption in the control of these signaling pathways can result in cell death (apoptosis), anergy or uncontrolled cell proliferation and growth leading to cancer. In multicellular organisms, timely termination of signaling is thus equally important as initiation. Known pathways for downregulating membrane receptor-mediated signaling are mediated via specialized endosomal organelles known as lysosomes and proteosomes that degrade such proteins in the cytoplasm. An alternative pathway for attenuating receptor-mediated signaling was recently discovered independently by the group of M. Caplan and our own group.1,2 It appears that apart from the classical protein degradation machineries, the release of signaling proteins also effectively restricts signaling of at least two major signal transduction routes; the canonical Wnt/β-catenin and NFκB pathways. Expelling proteins from the cell, rather than coordinated degradation in lysosomes may involve defined protein modifications, such as ubiquitination, myristyolation, and/or palmitoylation, but little experimental data are currently available. Although the secretion of proteins via exosomes starts by accumulation within multivesicular bodies (MVBs), a key distinction with degredatory MVBs is that exosome-producing MVBs seem to preferentially fuse with the plasmamembrane (Fig. 1). Here we discuss the latest developments in the biology of exosomes and their unexpected effect on intracellular signal transduction.

摘要

严格控制细胞内信号传导对于细胞分化、迁移等发育过程至关重要,对于维持组织稳态也同样重要。这些信号通路控制的破坏可导致细胞死亡(凋亡)、无反应性或不受控制的细胞增殖和生长,进而导致癌症。因此,在多细胞生物中,信号传导的及时终止与起始同样重要。已知的下调膜受体介导信号传导的途径是通过称为溶酶体和蛋白酶体的特殊内体细胞器介导的,这些细胞器在细胞质中降解此类蛋白质。最近,M. Caplan团队和我们自己的团队分别独立发现了一种减弱受体介导信号传导的替代途径。1,2 看来,除了经典的蛋白质降解机制外,信号蛋白的释放也有效地限制了至少两条主要信号转导途径的信号传导;即经典的Wnt/β-连环蛋白和NFκB途径。将蛋白质排出细胞,而不是在溶酶体中进行协调降解,可能涉及特定的蛋白质修饰,如泛素化、肉豆蔻酰化和/或棕榈酰化,但目前几乎没有实验数据。尽管蛋白质通过外泌体分泌始于在多囊泡体(MVBs)内积累,但与降解性MVBs的一个关键区别在于,产生外泌体的MVBs似乎优先与质膜融合(图1)。在这里,我们讨论外泌体生物学的最新进展及其对细胞内信号转导的意外影响。