Herasse M, Ono Y, Fougerousse F, Kimura E, Stockholm D, Beley C, Montarras D, Pinset C, Sorimachi H, Suzuki K, Beckmann J S, Richard I
Généthon, CNRS URA 1922, 91000 Evry, France.
Mol Cell Biol. 1999 Jun;19(6):4047-55. doi: 10.1128/MCB.19.6.4047.
Calpain 3 is a nonlysosomal cysteine protease whose biological functions remain unknown. We previously demonstrated that this protease is altered in limb girdle muscular dystrophy type 2A patients. Preliminary observations suggested that its gene is subjected to alternative splicing. In this paper, we characterize transcriptional and posttranscriptional events leading to alterations involving the NS, IS1, and IS2 regions and/or the calcium binding domains of the mouse calpain 3 gene (capn3). These events can be divided into three groups: (i) splicing of exons that preserve the translation frame, (ii) inclusion of two distinct intronic sequences between exons 16 and 17 that disrupt the frame and would lead, if translated, to a truncated protein lacking domain IV, and (iii) use of an alternative first exon specific to lens tissue. In addition, expression of these isoforms seems to be regulated. Investigation of the proteolytic activities and titin binding abilities of the translation products of some of these isoforms clearly indicated that removal of these different protein segments affects differentially the biochemical properties examined. In particular, removal of exon 6 impaired the autolytic but not fodrinolytic activity and loss of exon 16 led to an increased titin binding and a loss of fodrinolytic activity. These results are likely to impact our understanding of the pathophysiology of calpainopathies and the development of therapeutic strategies.
钙蛋白酶3是一种非溶酶体半胱氨酸蛋白酶,其生物学功能尚不清楚。我们之前证明,这种蛋白酶在2A型肢带型肌营养不良症患者中发生了改变。初步观察表明,其基因存在可变剪接。在本文中,我们描述了导致小鼠钙蛋白酶3基因(capn3)的NS、IS1和IS2区域及/或钙结合结构域发生改变的转录和转录后事件。这些事件可分为三组:(i)保留翻译框架的外显子剪接;(ii)在第16和17外显子之间包含两个不同的内含子序列,这些序列破坏了框架,如果翻译,将导致缺少结构域IV的截短蛋白;(iii)使用晶状体组织特有的替代第一外显子。此外,这些异构体的表达似乎受到调控。对其中一些异构体翻译产物的蛋白水解活性和肌联蛋白结合能力的研究清楚地表明,去除这些不同的蛋白片段对所检测的生化特性有不同的影响。特别是,去除第6外显子会损害自溶活性但不影响对 fodrin 的水解活性,而失去第16外显子会导致肌联蛋白结合增加和对 fodrin 的水解活性丧失。这些结果可能会影响我们对钙蛋白酶病病理生理学的理解以及治疗策略的开发。