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纤毛膜中含微管蛋白的脂蛋白结构复合物的证据。

Evidence for a tubulin-containing lipid-protein structural complex in ciliary membranes.

作者信息

Stephens R E

出版信息

J Cell Biol. 1985 Apr;100(4):1082-90. doi: 10.1083/jcb.100.4.1082.

Abstract

The proteins and lipids of the scallop gill ciliary membrane may be reassociated through several cycles of detergent solubilization, detergent removal, and freeze-thaw, without significant change in overall protein composition. Membrane proteins and lipids reassociate to form vesicles of uniform, discrete density classes under a variety of reassociation conditions involving detergent removal and concentration. Freed of the solubilizing detergent during equilibrium centrifugation, a protein-lipid complex equilibrates to a position on a sucrose density gradient characteristic of the original membrane density. When axonemal tubulin is solubilized by dialysis, mixed with 2:1 lecithin/cholesterol dissolved in Nonidet P-40, freed of detergent, and reconstituted by freeze-thaw, vesicles of a density essentially equal to pure lipid result. If the lipid fraction is derived through chloroform-methanol extraction of natural ciliary membranes, a moderate increase in density occurs upon reconstitution, but the protein is adsorbed and most is removed by a simple low ionic strength wash, in contrast to vesicles reconstituted from membrane proteins where even high salt extraction causes no loss of protein. The proteins of the ciliary membrane dissolve with constant composition, regardless of the type, concentration, or efficiency of detergent. Analytical ultracentrifugation demonstrates that monodisperse mixed micelles form at high detergent concentrations, but that membranes are dispersed to large sedimentable aggregates by Nonidet P-40 even at several times the critical micelle concentration, which suggests reasons for the efficacy of certain detergent for the production of ATP-reactivatable cell models. In extracts freed of detergent, structured polydisperse particles, but not membrane vesicles, are seen in negative staining; vesicles form upon concentration of the extract. Membrane tubulin is not in a form that will freely undergo electrophoresis, even in the presence of detergent above the critical micelle concentration. All chromatographic attempts to separate membrane tubulin from other membrane proteins have failed; lipid and protein are excluded together by gel filtration in the presence of high concentrations of detergent. These observations support the idea that a relatively stable lipid-protein complex exists in the ciliary membrane and that in this complex membrane tubulin is tightly associated with lipids and with a number of other proteins.

摘要

扇贝鳃纤毛膜的蛋白质和脂质可通过去污剂溶解、去污剂去除和冻融等几个循环重新结合,而总体蛋白质组成无显著变化。在涉及去污剂去除和浓缩的各种重新结合条件下,膜蛋白和脂质重新结合形成密度均匀、离散的囊泡。在平衡离心过程中去除增溶去污剂后,蛋白质 - 脂质复合物在蔗糖密度梯度上达到与原始膜密度特征相对应的位置。当轴丝微管蛋白通过透析溶解,与溶解在诺乃洗涤剂P - 40中的卵磷脂/胆固醇按2:1混合,去除去污剂并通过冻融进行重构时,会形成密度基本等于纯脂质的囊泡。如果脂质部分是通过对天然纤毛膜进行氯仿 - 甲醇萃取得到的,重构时密度会适度增加,但蛋白质会被吸附,并且通过简单的低离子强度洗涤大部分蛋白质会被去除,这与由膜蛋白重构的囊泡形成对比,在后者中即使高盐萃取也不会导致蛋白质损失。纤毛膜蛋白以恒定组成溶解,无论去污剂的类型、浓度或效率如何。分析超速离心表明,在高去污剂浓度下形成单分散混合胶束,但即使在临界胶束浓度的几倍时,诺乃洗涤剂P - 40也会将膜分散成大的可沉降聚集体,这表明了某些去污剂对产生ATP可激活细胞模型有效的原因。在去除去污剂的提取物中,负染可见结构化的多分散颗粒,但未见膜囊泡;提取物浓缩时会形成囊泡。膜微管蛋白即使在高于临界胶束浓度的去污剂存在下也不会以可自由进行电泳的形式存在。所有将膜微管蛋白与其他膜蛋白分离的色谱尝试均告失败;在高浓度去污剂存在下,脂质和蛋白质通过凝胶过滤一起被排除。这些观察结果支持了这样一种观点,即纤毛膜中存在相对稳定的脂质 - 蛋白质复合物,并且在这种复合物中膜微管蛋白与脂质和许多其他蛋白质紧密结合。

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