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钙网蛋白在L6成肌细胞中的过表达:内质网亚结构域的形成及其演变成离散的液泡,蛋白质聚集体在其中特异性积累。

Overexpression of calsequestrin in L6 myoblasts: formation of endoplasmic reticulum subdomains and their evolution into discrete vacuoles where aggregates of the protein are specifically accumulated.

作者信息

Gatti G, Podini P, Meldolesi J

机构信息

Consiglio Nazionale delle Ricerche Cellular, Department of Pharmacology, University of Milan, Italy.

出版信息

Mol Biol Cell. 1997 Sep;8(9):1789-803. doi: 10.1091/mbc.8.9.1789.

Abstract

Calsequestrin (CSQ), the major low-affinity Ca(2+)-binding glycoprotein of striated muscle fibers, is concentrated to yield aggregates that occupy the lumen of the terminal cisternae of the sarcoplasmic reticulum (SR). When infected or transfected into L6 myoblast, the protein is also concentrated, however, in dense vacuoles apparently separate from the endoplasmic reticulum (ER). CSQ-rich cells appear otherwise normal; in particular, neither other proteins involved in Ca2+ homeostasis nor ER chaperones are increased. The CSQ dense vacuoles are shown herein to be specialized ER subdomains as demonstrated by 1) the endoglycosidase H sensitivity of their CSQ and 2) two markers, calreticulin and calnexin (but not others, protein disulfide isomerase and BiP), intermixed with the vacuole content. Their formation is shown to start with the aggregation of CSQ at discrete sites of the ER lumen. When cells were transfected with both CSQ and calreticulin, only the first gave rise to vacuoles; the second remained diffusely distributed within the ER lumen. The possibility that CSQ aggregation is an artifact of overexpression appears unlikely because 1) within dense vacuoles CSQ molecules are not disulfide cross-linked, 2) their turnover is relatively slow (t = 12 h), and 3) segregated CSQ is bound to large amounts of Ca2+. Transfection of a tagged CSQ into cells already overexpressing the protein revealed the continuous import of the newly synthesized protein into preassembled vacuoles. The tendency to aggregation appears, therefore, as a property contributing to the segregation of CSQ within the ER lumen and to its accumulation within specialized subdomains. The study of L6 cells expressing CSQ-rich vacuoles might thus ultimately help to unravel mechanisms by which the complexity of the sarcoplasmic reticulum is established in muscle fibers.

摘要

肌集钙蛋白(CSQ)是横纹肌纤维中主要的低亲和力钙结合糖蛋白,它会聚集形成聚集体,占据肌浆网(SR)终末池的内腔。当被感染或转染到L6成肌细胞中时,该蛋白也会聚集,但却是在明显与内质网(ER)分离的致密液泡中。富含CSQ的细胞在其他方面看起来正常;特别是,参与钙稳态的其他蛋白质或内质网伴侣蛋白都没有增加。本文显示,CSQ致密液泡是内质网的特殊亚结构域,证据如下:1)其CSQ对内切糖苷酶H敏感;2)两种标记物,钙网蛋白和钙连蛋白(但不是其他的,如蛋白二硫键异构酶和结合免疫球蛋白蛋白)与液泡内容物混合存在。研究表明,它们的形成始于CSQ在内质网腔的离散位点聚集。当细胞同时转染CSQ和钙网蛋白时,只有前者会产生液泡;后者仍在内质网腔内呈弥散分布。CSQ聚集是过表达假象的可能性似乎不大,原因如下:1)在致密液泡中,CSQ分子没有二硫键交联;2)它们的周转相对较慢(t = 12小时);3)分离的CSQ与大量钙离子结合。将标记的CSQ转染到已经过表达该蛋白的细胞中,结果显示新合成的蛋白会持续导入预先组装好的液泡中。因此,聚集倾向似乎是一种特性,有助于CSQ在内质网腔内的分离及其在特殊亚结构域内的积累。因此,对表达富含CSQ液泡的L6细胞的研究最终可能有助于揭示在肌纤维中建立肌浆网复杂性的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45bb/305737/cda7a0c8767d/mbc00111-0146-a.jpg

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