首页> 美国卫生研究院文献>other >PLEIAD/SIMC1/C5orf25 a Novel Autolysis Regulator for a Skeletal-Muscle-Specific Calpain CAPN3 Scaffolds a CAPN3 Substrate CTBP1
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PLEIAD/SIMC1/C5orf25 a Novel Autolysis Regulator for a Skeletal-Muscle-Specific Calpain CAPN3 Scaffolds a CAPN3 Substrate CTBP1

机译:PLEIAD / SIMC1 / C5orf25一种用于骨骼肌特定钙蛋白酶CAPN3的新型自溶调节剂可支撑CAPN3底物CTBP1

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摘要

CAPN3/p94/calpain-3 is a skeletal-muscle-specific member of the calpain protease family. Multiple muscle cell functions have been reported for CAPN3, and mutations in this protease cause limb-girdle muscular dystrophy type 2A. Little is known about the molecular mechanisms that allow CAPN3 to be so multifunctional. One hypothesis is that the very rapid and exhaustive autolytic activity of CAPN3 needs to be suppressed by dynamic molecular interactions for specific periods of time. The previously identified interaction between CAPN3 and connectin/titin, a giant molecule in muscle sarcomeres, supports this assumption; however, the regulatory mechanisms of non-sarcomere-associated CAPN3 are unknown. Here, we report that a novel CAPN3-binding protein, PLEIAD [Platform element for inhibition of autolytic degradation; originally called SIMC1/C5orf25 (SUMO-interacting motif containing protein 1/chromosome 5 open reading frame 25)], suppresses the protease activity of CAPN3. Database analyses showed that PLEIAD homologs, like CAPN3 homologs, are evolutionarily conserved in vertebrates. Furthermore, we found that PLEIAD also interacts with CTBP1 (C-terminal binding protein 1), a transcriptional co-regulator, and CTBP1 is proteolyzed in COS7 cells expressing CAPN3. The identified cleavage sites in CTBP1 suggested that it undergoes functional modification upon its proteolysis by CAPN3, as well as by conventional calpains. These results indicate that PLEIAD can shift its major function from CAPN3 suppression to CAPN3-substrate recruitment, depending on the cellular context. Taken together, our data suggest that PLEIAD is a novel regulatory scaffold for CAPN3, as reflected in its name.
机译:CAPN3 / p94 / calpain-3是钙蛋白酶蛋白酶家族的骨骼肌特异性成员。据报道,CAPN3具有多种肌肉细胞功能,这种蛋白酶的突变会导致2A型肢带型肌营养不良症。关于使CAPN3如此多功能的分子机制知之甚少。一种假设是,CAPN3的非常快速和详尽的自溶活性需要在特定时间段内通过动态分子相互作用来抑制。先前确定的CAPN3与肌肉肉瘤中的大分子connectin / titin之间的相互作用支持这一假设。然而,非肌节相关的CAPN3的调节机制是未知的。在这里,我们报道了一种新型的CAPN3结合蛋白PLEIAD [用于抑制自溶降解的平台元素;最初称为SIMC1 / C5orf25(包含蛋白1 /染色体5开放阅读框25的SUMO相互作用基序),可抑制CAPN3的蛋白酶活性。数据库分析表明,PLEIAD同源物(如CAPN3同源物)在脊椎动物中是进化保守的。此外,我们发现PLEIAD也与CTBP1相互作用(C- t 端粒 b inding p rotein 1 ),转录共调节因子,而CTBP1在表达CAPN3的COS7细胞中被蛋白水解。 CTBP1中鉴定出的切割位点表明,它在被CAPN3和常规钙蛋白酶进行蛋白水解后经历了功能修饰。这些结果表明,PLEIAD可以根据细胞情况将其主要功能从CAPN3抑制转移到CAPN3底物募集。综上所述,我们的数据表明PLEIAD是CAPN3的新型调节支架,如其名称所示。

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