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含有微管蛋白的睫状膜的重建。

Reconstitution of ciliary membranes containing tubulin.

作者信息

Stephens R E

出版信息

J Cell Biol. 1983 Jan;96(1):68-75. doi: 10.1083/jcb.96.1.68.

Abstract

Membranes from the gill cilia of the mollusc Aequipecten irradians may be solubilized readily with Nonidet P-40. When the detergent is removed from the solution by adsorption to polystyrene beads, the proteins of the extract remain soluble. However, when the solution is frozen and thawed, nearly all of the proteins reassociate to form membrane vesicles, recruiting lipids from the medium. The membranes equilibrate as a narrow band (d = 1.167 g/cm3) upon sucrose density gradient centrifugation. The lipid composition of reconstituted membranes (1:2 cholesterol:phospholipids) closely resembles that of the original extract, as does the protein content (45%). Ciliary calmodulin is the major extract protein that does not associate with the reconstituted membrane, even in the presence of 1 mM calcium ions, suggesting that it is a soluble matrix component. The major protein of reconstituted vesicles is membrane tubulin, shown previously to differ hydrophobically from axonemal tubulin. The tubulin is tightly associated with the membrane since extraction with 1 mM iodide or thiocyanate leaves a vesicle fraction whose protein composition and bouyant density are unchanged. Subjecting the detergent-free membrane extract to a freeze-thaw cycle in the presence of elasmobranch brain tubulin or forming membranes by warming the extract in the presence of polymerization-competent tubulin yields a membrane fraction with little incorporated brain tubulin. This suggests that ciliary membrane tubulin specifically associates with lipids, whereas brain tubulin preferentially forms microtubules.

摘要

软体动物海湾扇贝鳃纤毛的膜可以很容易地用诺乃洗涤剂P - 40溶解。当通过吸附到聚苯乙烯珠粒从溶液中去除洗涤剂时,提取物中的蛋白质仍保持可溶状态。然而,当溶液冷冻和解冻时,几乎所有蛋白质重新缔合形成膜泡,并从培养基中募集脂质。在蔗糖密度梯度离心时,这些膜平衡形成一条窄带(d = 1.167 g/cm³)。重构膜的脂质组成(胆固醇与磷脂比例为1:2)与原始提取物非常相似,蛋白质含量(45%)也是如此。纤毛钙调蛋白是主要的提取物蛋白质,即使在存在1 mM钙离子的情况下也不会与重构膜缔合,这表明它是一种可溶性基质成分。重构膜泡的主要蛋白质是膜微管蛋白,先前已证明其在疏水性上与轴丝微管蛋白不同。微管蛋白与膜紧密结合,因为用1 mM碘化物或硫氰酸盐提取后留下的膜泡部分,其蛋白质组成和浮力密度没有变化。在有板鳃类动物脑微管蛋白存在的情况下,对无洗涤剂的膜提取物进行冻融循环,或者在有具备聚合能力的微管蛋白存在的情况下加热提取物形成膜,得到的膜部分几乎没有掺入脑微管蛋白。这表明纤毛膜微管蛋白与脂质特异性缔合,而脑微管蛋白则优先形成微管。

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