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磷酸酶缺失肌管蛋白(myotubularin)可改善小鼠 X 连锁中轴核肌病表型。

Phosphatase-dead myotubularin ameliorates X-linked centronuclear myopathy phenotypes in mice.

机构信息

Department of Translational Medecine, Institut de Génétique et de Biologie Moléculaire et Cellulaire (IGBMC), INSERM U964, CNRS UMR7104, Université de Strasbourg, Collège de France, Illkirch, France.

出版信息

PLoS Genet. 2012;8(10):e1002965. doi: 10.1371/journal.pgen.1002965. Epub 2012 Oct 11.

Abstract

Myotubularin MTM1 is a phosphoinositide (PPIn) 3-phosphatase mutated in X-linked centronuclear myopathy (XLCNM; myotubular myopathy). We investigated the involvement of MTM1 enzymatic activity on XLCNM phenotypes. Exogenous expression of human MTM1 in yeast resulted in vacuolar enlargement, as a consequence of its phosphatase activity. Expression of mutants from patients with different clinical progression and determination of PtdIns3P and PtdIns5P cellular levels confirmed the link between vacuolar morphology and MTM1 phosphatase activity, and showed that some disease mutants retain phosphatase activity. Viral gene transfer of phosphatase-dead myotubularin mutants (MTM1(C375S) and MTM1(S376N)) significantly improved most histological signs of XLCNM displayed by a Mtm1-null mouse, at similar levels as wild-type MTM1. Moreover, the MTM1(C375S) mutant improved muscle performance and restored the localization of nuclei, triad alignment, and the desmin intermediate filament network, while it did not normalize PtdIns3P levels, supporting phosphatase-independent roles of MTM1 in maintaining normal muscle performance and organelle positioning in skeletal muscle. Among the different XLCNM signs investigated, we identified only triad shape and fiber size distribution as being partially dependent on MTM1 phosphatase activity. In conclusion, this work uncovers MTM1 roles in the structural organization of muscle fibers that are independent of its enzymatic activity. This underlines that removal of enzymes should be used with care to conclude on the physiological importance of their activity.

摘要

肌小管素 1(MTM1)是一种磷酸肌醇(PPIn)3-磷酸酶,在 X 连锁中轴核肌病(XLCNM;肌小管肌病)中发生突变。我们研究了 MTM1 酶活性对 XLCNM 表型的影响。人类 MTM1 的外源性表达导致酵母中的空泡增大,这是其磷酸酶活性的结果。表达来自不同临床进展的患者的突变体,并测定 PtdIns3P 和 PtdIns5P 的细胞水平,证实了空泡形态与 MTM1 磷酸酶活性之间的联系,并表明一些疾病突变体保留了磷酸酶活性。磷酸酶失活的肌小管素突变体(MTM1(C375S)和 MTM1(S376N))的病毒基因转移显著改善了 Mtm1 缺失小鼠中大多数 XLCNM 的组织学特征,其效果与野生型 MTM1 相似。此外,MTM1(C375S)突变体改善了肌肉性能并恢复了核定位、三联体对齐和结蛋白中间丝网络,而不使 PtdIns3P 水平正常化,支持 MTM1 在维持正常肌肉性能和细胞器定位中的磷酸酶非依赖性作用在骨骼肌中。在所研究的不同 XLCNM 迹象中,我们仅确定三联体形状和纤维大小分布部分依赖于 MTM1 磷酸酶活性。总之,这项工作揭示了 MTM1 在肌肉纤维结构组织中的作用,这些作用不依赖于其酶活性。这强调了在得出其活性的生理重要性时,应谨慎使用去除酶的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/424b/3469422/ae3e17e38115/pgen.1002965.g001.jpg

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