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肌浆网膜中ATP酶蛋白的组装。

Assembly of ATPase protein in sarcoplasmic reticulum membranes.

作者信息

Scales D

出版信息

Biophys J. 1976 Jul;16(7):735-51. doi: 10.1016/S0006-3495(76)85725-6.

Abstract

Three specimen preparation techniques for electron microscopy were used to investigate the incorporation of the ATPase polypeptide chains in the membranes of fragmented sarcoplasmic reticulum (SR) obtained from rabbit skeletal muscle. Observations were made of both normal vesicles and vesicles exposed to trypsin, which is known to cleave the ATPase protein and to alter the ultrastructure of the vesicles in predictable ways. Freeze-fracture replicas reveal the typical 90-A particles on the concave (PF) faces with a density of 5,730 +/- 520/mum2. On the other hand both negatively stained and deeply etched preparations display outer projections, which are absent on trypsin-incubated vesicles. The etched specimens afford for the first time top views of the vesicles in the absence of any stain. These views reveal outer projections on the PS surface with a density of 21,000 +/- 3,900/mum2, a value nearly approximating the density of the ATPase polypeptide chains (106,000 mol wt) calculated on the basis of protein and membrane area determinations. On the other hand, this value is three to four times higher than that found for the density of the 90-A particles on the concave fracture faces. Since both outer projections and 90-A particles are identified with the ATPase protein, it is suggested that the ATPase polypeptide chains are amphiphilic molecules, with polar ends protruding individually as outer projections on the surface of the vesicles, and hydrophobic ends appearing as 90-A particles on the concave fracture faces. The discrepancy between the densities of the outer projections and the 90-A particles may be attributed either to variable penetration of the polypeptide chains into the membrane bilayer, or to formation of oligomers containing three or four hydrophobic ends and appearing as single 90-A particles. Each ATPase chain forms a complex with 20-30 phospholipid molecules. The remaining phospholipids (approximately 70% of the total SR phospholipids) account for less than half the membrane volume. It is proposed that the outer leaflet of the SR membrane is prevalently composed of the ATPase lipoprotein complex, and the inner leaflet is mostly a phospholipid monolayer.

摘要

采用三种电子显微镜标本制备技术,研究了从兔骨骼肌获得的肌浆网(SR)片段膜中ATP酶多肽链的掺入情况。对正常囊泡和用胰蛋白酶处理过的囊泡都进行了观察,已知胰蛋白酶能切割ATP酶蛋白,并以可预测的方式改变囊泡的超微结构。冷冻蚀刻复制品显示,凹面(PF)上典型的90埃颗粒密度为5730±520/μm²。另一方面,负染色和深度蚀刻标本都显示出外部突起,而用胰蛋白酶处理过的囊泡上则没有这些突起。蚀刻标本首次在没有任何染色的情况下提供了囊泡的顶视图。这些视图显示,PS表面的外部突起密度为21000±3900/μm²,该值几乎接近根据蛋白质和膜面积测定计算出的ATP酶多肽链(106000分子量)的密度。另一方面,该值比凹面断裂面上90埃颗粒的密度高三到四倍。由于外部突起和90埃颗粒都被认为与ATP酶蛋白有关,因此有人提出,ATP酶多肽链是两亲性分子,其极性末端单独突出为囊泡表面的外部突起,疏水末端则表现为凹面断裂面上的90埃颗粒。外部突起和90埃颗粒密度之间的差异可能归因于多肽链进入膜双层的可变穿透,或者归因于含有三个或四个疏水末端并表现为单个90埃颗粒的寡聚体的形成。每条ATP酶链与20 - 30个磷脂分子形成复合物。其余的磷脂(约占SR总磷脂的70%)占膜体积不到一半。有人提出,SR膜的外小叶主要由ATP酶脂蛋白复合物组成,内小叶主要是磷脂单层。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7b3/1334897/c6e88c6fbf48/biophysj00302-0035-a.jpg

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