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首页> 外文期刊>American Journal of Physiology >Accumulation of beta (m), a structural member of X,K-ATPase beta-subunit family, in nuclear envelopes of perinatal myocytes.
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Accumulation of beta (m), a structural member of X,K-ATPase beta-subunit family, in nuclear envelopes of perinatal myocytes.

机译:β(m)是围产期心肌细胞核被膜中X,K-ATPaseβ亚基家族的结构成员的积累。

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摘要

Recently discovered muscle-specific beta(m) protein is structurally closely related to the X,K-ATPase beta-subunits. However, it has a number of unique properties such as predominant localization in intracellular stores and lack of association with known X,K-ATPase alpha-subunits on heterologous coexpression. In this study, the primary structure of mouse beta(m) was determined and developmental regulation of the gene (ATP1B4) was analyzed. The expression is first detected at day 14 of gestation, is sharply increased at day 16, and reaches its maximum at day 18. After birth, the expression quickly decreases and is hardly detectable in adult mice. A more detailed subcellular localization study was undertaken, and its results indicate that beta(m) not only is located in sarcoplasmic reticulum but is concentrated in nuclear envelopes of both prenatal and postnatal skeletal muscles. Immunohistochemical studies show that beta(m) is specific to myocytes and, at the subcellular level, many nuclear envelopes are intensively labeled in both fetal and newborn skeletal muscles. Accordingly, beta(m) is detected by immunoblotting in purified nuclei and nuclear membranes from neonatal skeletal muscles. On transfection of human rhabdomyosarcoma cell line RD, green fluorescent protein-tagged beta(m) resides intracellularly with significant enrichment in nuclear envelopes, whereas beta(m) with transmembrane domain deleted localizes in both cytoplasm and nucleoplasm. Nuclear beta(m) apparently is not in association with Na,K-ATPase because we never detected its alpha-subunit in myonuclear membranes. These results indicate that beta(m) has a specialized function in mammalian perinatal myocytes, different from functions of other X,K-ATPase beta-subunits. The unique temporospatial distribution of beta(m) protein expression suggests its important role in development of growing skeletal muscle.
机译:最近发现的肌肉特异性beta(m)蛋白在结构上与X,K-ATPase beta-亚基密切相关。但是,它具有许多独特的特性,例如主要定位于细胞内存储区,并且在异源共表达时与已知的X,K-ATPaseα-亚基缺乏关联。在这项研究中,确定了小鼠beta(m)的一级结构,并分析了该基因(ATP1B4)的发育调控。首先在妊娠的第14天检测到该表达,在第16天急剧增加,并在第18天达到最大值。出生后,该表达迅速降低,在成年小鼠中几乎检测不到。进行了更详细的亚细胞定位研究,结果表明beta(m)不仅位于肌质网中,而且集中在产前和产后骨骼肌的核膜中。免疫组织化学研究表明,β(m)特异于肌细胞,在亚细胞水平上,胎儿和新生骨骼肌均强烈标记了许多核被膜。因此,通过免疫印迹检测新生骨骼肌的纯化核和核膜中的β(m)。转染人横纹肌肉瘤细胞系RD时,绿色荧光蛋白标记的beta(m)驻留在细胞内,在核被膜中富集,而带有跨膜结构域缺失的beta(m)定位在细胞质和核质中。核β(m)显然与Na,K-ATPase不相关,因为我们从未在肌核膜中检测到其α亚基。这些结果表明,beta(m)在哺乳动物的围产期心肌细胞中具有专门的功能,与其他X,K-ATPase beta亚基的功能不同。 beta(m)蛋白表达的独特的颞pat分布表明其在骨骼肌生长中的重要作用。

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