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本文引用的文献

1
SH3TC2/KIAA1985 protein is required for proper myelination and the integrity of the node of Ranvier in the peripheral nervous system.SH3TC2/KIAA1985蛋白对于外周神经系统中正常的髓鞘形成和郎飞结的完整性是必需的。
Proc Natl Acad Sci U S A. 2009 Oct 13;106(41):17528-33. doi: 10.1073/pnas.0905523106. Epub 2009 Sep 29.
2
D-AKAP2 interacts with Rab4 and Rab11 through its RGS domains and regulates transferrin receptor recycling.D-AKAP2通过其RGS结构域与Rab4和Rab11相互作用,并调节转铁蛋白受体的循环利用。
J Biol Chem. 2009 Nov 20;284(47):32869-80. doi: 10.1074/jbc.M109.022582. Epub 2009 Sep 21.
3
Missense mutations in the SH3TC2 protein causing Charcot-Marie-Tooth disease type 4C affect its localization in the plasma membrane and endocytic pathway.SH3TC2 蛋白中的错义突变导致 4C 型腓骨肌萎缩症,影响其在质膜和内吞途径中的定位。
Hum Mol Genet. 2009 Dec 1;18(23):4603-14. doi: 10.1093/hmg/ddp427. Epub 2009 Sep 10.
4
Pathways and mechanisms of endocytic recycling.内吞再循环的途径和机制。
Nat Rev Mol Cell Biol. 2009 Sep;10(9):597-608. doi: 10.1038/nrm2755.
5
Rab GTPases as coordinators of vesicle traffic.作为囊泡运输协调因子的Rab小GTP酶
Nat Rev Mol Cell Biol. 2009 Aug;10(8):513-25. doi: 10.1038/nrm2728. Epub 2009 Jul 15.
6
The phenotype of Charcot-Marie-Tooth disease type 4C due to SH3TC2 mutations and possible predisposition to an inflammatory neuropathy.由SH3TC2突变引起的4C型夏科-马里-图斯病的表型及可能易患炎性神经病的倾向。
Neuromuscul Disord. 2009 Apr;19(4):264-9. doi: 10.1016/j.nmd.2009.01.006. Epub 2009 Mar 9.
7
Molecular mechanisms of inherited demyelinating neuropathies.遗传性脱髓鞘性神经病的分子机制
Glia. 2008 Nov 1;56(14):1578-1589. doi: 10.1002/glia.20751.
8
Sorting out the inherited neuropathies.梳理遗传性神经病。
Pract Neurol. 2007 Apr;7(2):93-105.
9
Identification of Rab11 as a small GTPase binding protein for the Evi5 oncogene.鉴定Rab11为Evi5癌基因的一种小GTPase结合蛋白。
Proc Natl Acad Sci U S A. 2007 Jan 23;104(4):1236-41. doi: 10.1073/pnas.0610500104. Epub 2007 Jan 17.
10
Cell biology of membrane trafficking in human disease.人类疾病中膜运输的细胞生物学
Int Rev Cytol. 2006;252:1-69. doi: 10.1016/S0074-7696(06)52005-4.

SH3TC2 靶向错误远离再循环内体导致 4C 型腓骨肌萎缩症。

Mistargeting of SH3TC2 away from the recycling endosome causes Charcot-Marie-Tooth disease type 4C.

机构信息

Cambridge Institute for Medical Research, University of Cambridge, Cambridge CB2 0XY, UK.

出版信息

Hum Mol Genet. 2010 Mar 15;19(6):1009-18. doi: 10.1093/hmg/ddp565. Epub 2009 Dec 22.

DOI:10.1093/hmg/ddp565
PMID:20028792
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2830826/
Abstract

Mutations in the functionally uncharacterized protein SH3TC2 are associated with the severe hereditary peripheral neuropathy, Charcot-Marie-Tooth disease type 4C (CMT4C). Similarly, to other proteins mutated in CMT, a role for SH3TC2 in endocytic membrane traffic has been previously proposed. However, recent descriptions of the intracellular localization of SH3TC2 are conflicting. Furthermore, no clear functional pathogenic mechanisms have so far been proposed to explain why both nonsense and missense mutations in SH3TC2 lead to similar clinical phenotypes. Here, we describe our intracellular localization studies, supported by biochemical and functional data, using wild-type and mutant SH3TC2. We show that wild-type SH3TC2 targets to the intracellular recycling endosome by associating with the small GTPase, Rab11, which is known to regulate the recycling of internalized membrane and receptors back to the plasma membrane. Furthermore, we demonstrate that SH3TC2 interacts preferentially with the GTP-bound form of Rab11, identifying SH3TC2 as a novel Rab11 effector. Of clinical pathological relevance, all SH3TC2 constructs harbouring disease-causing mutations are shown to be unable to associate with Rab11 with consequent loss of recycling endosome localization. Moreover, we show that wild-type SH3TC2, but not mutant SH3TC2, influences transferrin receptor dynamics, consistent with a functional role on the endocytic recycling pathway. Our data therefore implicate mistargeting of SH3TC2 away from the recycling endosome as the fundamental molecular defect that leads to CMT4C.

摘要

功能尚未明确的 SH3TC2 蛋白中的突变与严重遗传性周围神经病,即 Charcot-Marie-Tooth 病 4C 型(CMT4C)有关。与其他在 CMT 中发生突变的蛋白一样,先前曾提出 SH3TC2 在胞吞膜运输中的作用。然而,最近对 SH3TC2 细胞内定位的描述存在冲突。此外,迄今为止,尚无明确的功能致病性机制来解释为什么 SH3TC2 中的无义突变和错义突变会导致相似的临床表型。在这里,我们使用野生型和突变型 SH3TC2 描述了我们的细胞内定位研究,这些研究得到了生化和功能数据的支持。我们表明,野生型 SH3TC2 通过与已知调节内化膜和受体返回质膜的小 GTP 酶 Rab11 结合,靶向细胞内再循环内体。此外,我们证明 SH3TC2 与 Rab11 的 GTP 结合形式优先相互作用,从而将 SH3TC2 鉴定为一种新型 Rab11 效应物。与临床病理学相关的是,所有携带致病突变的 SH3TC2 构建体均显示无法与 Rab11 结合,从而导致再循环内体定位丧失。此外,我们表明野生型 SH3TC2(而非突变型 SH3TC2)影响转铁蛋白受体的动力学,这与在胞吞再循环途径中的功能作用一致。因此,我们的数据表明 SH3TC2 从再循环内体的靶向错误是导致 CMT4C 的基本分子缺陷。