Suppr超能文献

在体外,长链脂肪酰化或胆固醇可稳定VIP21-窖蛋白的寡聚化。

Oligomerization of VIP21-caveolin in vitro is stabilized by long chain fatty acylation or cholesterol.

作者信息

Monier S, Dietzen D J, Hastings W R, Lublin D M, Kurzchalia T V

机构信息

Department of Cell Biology, Max-Delbrück Centre for Molecular Medicine, Berlin-Buch, Germany.

出版信息

FEBS Lett. 1996 Jun 17;388(2-3):143-9. doi: 10.1016/0014-5793(96)00519-4.

Abstract

VIP21-caveolin is one of the components which form the cytoplasmic surface of caveolae. In vivo, this integral membrane protein is found in homo-oligomers with molecular masses of approximately 200, 400 and 600 kDa. These oligomers are also formed by the addition of cytosol to the in vitro synthesized and membrane inserted VIP21-caveolin. Here we show that long chain fatty acyl coenzyme A esters can completely substitute for cytosol in inducing 200 kDa and 400 kDa complexes, whereas 25-hydroxy-cholesterol can produce the 200 kDa oligomer. In order to understand whether acylation of VIP21-caveolin itself is a prerequisite for oligomerization, we studied a mutant protein lacking all three cysteines. When analyzed by velocity sucrose gradient centrifugation in the presence of the non-ionic detergent octylglucoside, both palmitoylated and non-palmitoylated VIP21-caveolin formed oligomers that were indistinguishable. However, only the oligomers of the non-palmitoylated protein are disrupted when analyzed by SDS-PAGE without boiling. These data suggest that the protein domains of VIP21-caveolin are the primary determinants of oligomerization, but that palmitoylation of cysteine residues can increase the stability of the oligomers.

摘要

小窝蛋白-21(VIP21-caveolin)是构成小窝细胞质表面的成分之一。在体内,这种整合膜蛋白以分子量约为200、400和600 kDa的同型寡聚体形式存在。这些寡聚体也可通过将胞质溶胶添加到体外合成并插入膜中的VIP21-caveolin中形成。在这里我们表明,长链脂肪酰辅酶A酯在诱导200 kDa和400 kDa复合物时可以完全替代胞质溶胶,而25-羟基胆固醇可以产生200 kDa的寡聚体。为了了解VIP21-caveolin自身的酰化是否是寡聚化的先决条件,我们研究了一种缺乏所有三个半胱氨酸的突变蛋白。当在非离子去污剂辛基葡糖苷存在下通过速度蔗糖梯度离心分析时,棕榈酰化和未棕榈酰化的VIP21-caveolin均形成难以区分的寡聚体。然而,当通过不煮沸的SDS-PAGE分析时,只有未棕榈酰化蛋白的寡聚体被破坏。这些数据表明VIP21-caveolin的蛋白结构域是寡聚化的主要决定因素,但半胱氨酸残基的棕榈酰化可以增加寡聚体的稳定性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验