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本文引用的文献

1
Calpain 3 is a modulator of the dysferlin protein complex in skeletal muscle.钙蛋白酶3是骨骼肌中dysferlin蛋白复合物的调节剂。
Hum Mol Genet. 2008 Jun 15;17(12):1855-66. doi: 10.1093/hmg/ddn081. Epub 2008 Mar 11.
2
Refining genotype phenotype correlations in muscular dystrophies with defective glycosylation of dystroglycan.在肌营养不良聚糖糖基化缺陷的肌肉营养不良症中优化基因型-表型相关性。
Brain. 2007 Oct;130(Pt 10):2725-35. doi: 10.1093/brain/awm212. Epub 2007 Sep 18.
3
Transcriptional pathways associated with skeletal muscle disuse atrophy in humans.与人类骨骼肌废用性萎缩相关的转录途径。
Physiol Genomics. 2007 Nov 14;31(3):510-20. doi: 10.1152/physiolgenomics.00115.2006. Epub 2007 Sep 5.
4
Myofibrillar protein turnover: the proteasome and the calpains.肌原纤维蛋白周转:蛋白酶体与钙蛋白酶
J Anim Sci. 2008 Apr;86(14 Suppl):E19-35. doi: 10.2527/jas.2007-0395. Epub 2007 Aug 20.
5
The calpains: modular designs and functional diversity.钙蛋白酶:模块化设计与功能多样性
Genome Biol. 2007;8(6):218. doi: 10.1186/gb-2007-8-6-218.
6
Calpain-3 is autolyzed and hence activated in human skeletal muscle 24 h following a single bout of eccentric exercise.在单次离心运动后24小时,钙蛋白酶-3在人体骨骼肌中发生自溶并因此被激活。
J Appl Physiol (1985). 2007 Sep;103(3):926-31. doi: 10.1152/japplphysiol.01422.2006. Epub 2007 Jun 21.
7
C-terminal titin deletions cause a novel early-onset myopathy with fatal cardiomyopathy.肌联蛋白C末端缺失导致一种伴有致命性心肌病的新型早发性肌病。
Ann Neurol. 2007 Apr;61(4):340-51. doi: 10.1002/ana.21089.
8
Comprehensive survey of p94/calpain 3 substrates by comparative proteomics--possible regulation of protein synthesis by p94.通过比较蛋白质组学对p94/钙蛋白酶3底物进行全面研究——p94对蛋白质合成的可能调控
Biotechnol J. 2007 May;2(5):565-76. doi: 10.1002/biot.200700018.
9
Myogenic stage, sarcomere length, and protease activity modulate localization of muscle-specific calpain.肌源性阶段、肌节长度和蛋白酶活性调节肌肉特异性钙蛋白酶的定位。
J Biol Chem. 2007 May 11;282(19):14493-504. doi: 10.1074/jbc.M610806200. Epub 2007 Mar 19.
10
Ins and outs of therapy in limb girdle muscular dystrophies.肢带型肌营养不良症的治疗详情
Int J Biochem Cell Biol. 2007;39(9):1608-24. doi: 10.1016/j.biocel.2007.02.005. Epub 2007 Feb 12.

钙蛋白酶3,肌节正确组装、周转和维持的“守门人”。

Calpain 3, the "gatekeeper" of proper sarcomere assembly, turnover and maintenance.

作者信息

Beckmann Jacques S, Spencer Melissa

机构信息

Service and Department of Medical Genetics, Centre Hospitalier Universitaire Vaudois, CHUV and Faculty of Biology and Medicine, University of Lausanne, Lausanne, Switzerland.

出版信息

Neuromuscul Disord. 2008 Dec;18(12):913-21. doi: 10.1016/j.nmd.2008.08.005. Epub 2008 Oct 29.

DOI:10.1016/j.nmd.2008.08.005
PMID:18974005
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2614824/
Abstract

Calpain 3 is a member of the calpain family of calcium-dependent intracellular proteases. Thirteen years ago it was discovered that mutations in calpain 3 (CAPN3) result in an autosomal recessive and progressive form of limb girdle muscular dystrophy called limb girdle muscular dystrophy type 2A. While calpain 3 mRNA is expressed at high levels in muscle and appears to have some role in developmental processes, muscles of patients and mice lacking calpain 3 still form apparently normal muscle during prenatal development; thus, a functional calpain 3 protease is not mandatory for muscle to form in vivo but it is a pre-requisite for muscle to remain healthy. Despite intensive research in this field, the physiological substrates of the calpain 3 protein (hereafter referred to as CAPN3) and its alternatively spliced isoforms remain elusive. The existence of these multiple isoforms complicates the search for the physiological functions of CAPN3 and its pathophysiological role. In this review, we summarize the genetic and biochemical evidence that point to loss of function of the full-length isoform of CAPN3, also known as p94, as the pathogenic isoform. We also argue that its natural substrates must reside in its proximity within the sarcomere where it is stored in an inactive state anchored to titin. We further propose that CAPN3 has many attributes that make it ideally suited as a sensor of sarcomeric integrity and function, involved in its repair and maintenance. Loss of these CAPN3-mediated activities can explain the "progressive" development of muscular dystrophy.

摘要

钙蛋白酶3是钙依赖性细胞内蛋白酶钙蛋白酶家族的成员。13年前人们发现,钙蛋白酶3(CAPN3)的突变会导致常染色体隐性和进行性的肢带型肌营养不良,即2A型肢带型肌营养不良。虽然钙蛋白酶3信使核糖核酸在肌肉中高表达,并且似乎在发育过程中发挥一定作用,但缺乏钙蛋白酶3的患者和小鼠的肌肉在产前发育期间仍能形成外观正常的肌肉;因此,功能性钙蛋白酶3蛋白酶并非体内肌肉形成的必需条件,但却是肌肉保持健康的先决条件。尽管该领域进行了深入研究,但钙蛋白酶3蛋白(以下简称CAPN3)及其可变剪接异构体的生理底物仍然未知。这些多种异构体的存在使寻找CAPN3的生理功能及其病理生理作用变得复杂。在这篇综述中,我们总结了遗传学和生物化学证据,这些证据表明全长异构体CAPN3(也称为p94)功能丧失是致病异构体。我们还认为其天然底物必定存在于肌节中与其相邻的位置,它以无活性状态锚定在肌联蛋白上并储存于此。我们进一步提出,CAPN3具有许多特性,使其非常适合作为肌节完整性和功能的传感器,参与其修复和维持。这些由CAPN3介导的活性丧失可以解释肌营养不良的“进行性”发展。