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Mutant torsinA, which causes early-onset primary torsion dystonia, is redistributed to membranous structures enriched in vesicular monoamine transporter in cultured human SH-SY5Y cells.导致早发性原发性扭转肌张力障碍的突变型扭转蛋白A在培养的人SH-SY5Y细胞中重新分布到富含囊泡单胺转运体的膜结构中。
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本文引用的文献

1
Impairment of bidirectional synaptic plasticity in the striatum of a mouse model of DYT1 dystonia: role of endogenous acetylcholine.DYT1肌张力障碍小鼠模型纹状体中双向突触可塑性受损:内源性乙酰胆碱的作用
Brain. 2009 Sep;132(Pt 9):2336-49. doi: 10.1093/brain/awp194. Epub 2009 Jul 29.
2
Printor, a novel torsinA-interacting protein implicated in dystonia pathogenesis.Printor,一种与肌张力障碍发病机制相关的新型 torsinA 相互作用蛋白。
J Biol Chem. 2009 Aug 7;284(32):21765-75. doi: 10.1074/jbc.M109.004838. Epub 2009 Jun 17.
3
LULL1 retargets TorsinA to the nuclear envelope revealing an activity that is impaired by the DYT1 dystonia mutation.LULL1将扭转蛋白A重新定位到核膜,揭示了一种被DYT1肌张力障碍突变损害的活性。
Mol Biol Cell. 2009 Jun;20(11):2661-72. doi: 10.1091/mbc.e09-01-0094. Epub 2009 Apr 1.
4
Walker-A threonine couples nucleotide occupancy with the chaperone activity of the AAA+ ATPase ClpB.沃克-苏氨酸将核苷酸占据与AAA+ATP酶ClpB的伴侣活性联系起来。
Protein Sci. 2009 Feb;18(2):287-93. doi: 10.1002/pro.36.
5
Consequences of the DYT1 mutation on torsinA oligomerization and degradation.DYT1突变对扭转蛋白A寡聚化和降解的影响。
Neuroscience. 2008 Dec 2;157(3):588-95. doi: 10.1016/j.neuroscience.2008.09.028. Epub 2008 Sep 27.
6
TorsinA binds the KASH domain of nesprins and participates in linkage between nuclear envelope and cytoskeleton.扭转蛋白A与nesprins的KASH结构域结合,并参与核膜与细胞骨架之间的连接。
J Cell Sci. 2008 Oct 15;121(Pt 20):3476-86. doi: 10.1242/jcs.029454. Epub 2008 Sep 30.
7
Dystonia-associated mutations cause premature degradation of torsinA protein and cell-type-specific mislocalization to the nuclear envelope.肌张力障碍相关突变导致扭转蛋白A蛋白过早降解,并使其在细胞类型特异性上错误定位于核膜。
Hum Mol Genet. 2008 Sep 1;17(17):2712-22. doi: 10.1093/hmg/ddn173. Epub 2008 Jun 14.
8
The torsin-family AAA+ protein OOC-5 contains a critical disulfide adjacent to Sensor-II that couples redox state to nucleotide binding.扭转蛋白家族的AAA+蛋白OOC-5在与传感器II相邻处含有一个关键二硫键,该二硫键将氧化还原状态与核苷酸结合相偶联。
Mol Biol Cell. 2008 Aug;19(8):3599-612. doi: 10.1091/mbc.e08-01-0015. Epub 2008 Jun 11.
9
Abnormal motor function and dopamine neurotransmission in DYT1 DeltaGAG transgenic mice.DYT1 DeltaGAG转基因小鼠的异常运动功能和多巴胺神经传递
Exp Neurol. 2008 Apr;210(2):719-30. doi: 10.1016/j.expneurol.2007.12.027. Epub 2008 Jan 19.
10
siRNA knock-down of mutant torsinA restores processing through secretory pathway in DYT1 dystonia cells.小干扰RNA敲低突变型扭转蛋白A可恢复DYT1肌张力障碍细胞中通过分泌途径的加工过程。
Hum Mol Genet. 2008 May 15;17(10):1436-45. doi: 10.1093/hmg/ddn032. Epub 2008 Feb 7.

早发性扭转痉挛相关蛋白 torsinA 在体外具有分子伴侣活性。

The early-onset torsion dystonia-associated protein, torsinA, displays molecular chaperone activity in vitro.

机构信息

Department of Biological Sciences, The University of Alabama, Tuscaloosa, AL 35487-0344, USA.

出版信息

Cell Stress Chaperones. 2010 Sep;15(5):605-17. doi: 10.1007/s12192-010-0173-2. Epub 2010 Feb 19.

DOI:10.1007/s12192-010-0173-2
PMID:20169475
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3006618/
Abstract

TorsinA is a member of the AAA+ ATPase family of proteins and, notably, is the only known ATPase localized to the ER lumen. It has been suggested to act as a molecular chaperone, while a mutant form associated with early-onset torsion dystonia, a dominantly inherited movement disorder, appears to result in a net loss of function in vivo. Thus far, no studies have examined the chaperone activity of torsinA in vitro. Here we expressed and purified both wild-type (WT) and mutant torsinA fusion proteins in bacteria and examined their ability to function as molecular chaperones by monitoring suppression of luciferase and citrate synthase (CS) aggregation. We also assessed their ability to hold proteins in an intermediate state for refolding. As measured by light scattering and SDS-PAGE, both WT and mutant torsinA effectively, and similarly, suppressed protein aggregation compared to controls. This function was not further enhanced by the presence of ATP. Further, we found that while neither form of torsinA could protect CS from heat-induced inactivation, they were both able to reactivate luciferase when ATP and rabbit reticulocyte lysate were added. This suggests that torsinA holds luciferase in an intermediate state, which can then be refolded in the presence of other chaperones. These data provide conclusive evidence that torsinA acts as a molecular chaperone in vitro and suggests that early-onset torsion dystonia is likely not a consequence of a loss in torsinA chaperone activity but might be an outcome of insufficient torsinA localization at the ER to manage protein folding or trafficking.

摘要

TorsinA 是 AAA+ATP 酶家族蛋白的成员,值得注意的是,它是唯一已知定位于内质网腔的 ATP 酶。它被认为具有分子伴侣的作用,而与早发性扭转痉挛(一种显性遗传性运动障碍)相关的突变形式似乎导致体内功能净丧失。迄今为止,尚无研究检查 torsinA 在体外的伴侣活性。在这里,我们在细菌中表达和纯化了野生型 (WT) 和突变 torsinA 融合蛋白,并通过监测荧光素酶和柠檬酸合酶 (CS) 聚集的抑制作用来检查它们作为分子伴侣的功能。我们还评估了它们将蛋白质保持在中间状态进行重折叠的能力。如通过光散射和 SDS-PAGE 测量,WT 和突变 torsinA 都有效地、类似地抑制了蛋白质聚集,与对照相比。这种功能不会因 ATP 的存在而进一步增强。此外,我们发现,虽然 torsinA 的两种形式都不能保护 CS 免受热诱导失活,但当添加 ATP 和兔网织红细胞裂解物时,它们都能够使荧光素酶重新激活。这表明 torsinA 将荧光素酶保持在中间状态,然后在其他伴侣存在的情况下可以重折叠。这些数据提供了确凿的证据,证明 torsinA 在体外作为分子伴侣起作用,并表明早发性扭转痉挛可能不是 torsinA 伴侣活性丧失的结果,而是由于内质网中 torsinA 定位不足,无法管理蛋白质折叠或运输。