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Assembly polypeptides from coated vesicles mediate reassembly of unique clathrin coats

机译:包被囊泡的组装多肽介导独特网格蛋白涂层的重组

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摘要

A protein activity has been identified in extracts of coated vesicles that enables purified clathrin triskelions to reassemble in vitro into coat structures of uniform size. Coats formed in the presence of this preparation, regardless of the buffer system employed, are uniform in size with a mean diameter of 78 nm (+/- 5 nm SD) and a sedimentation coefficient (S20,w) of approximately 250S. Analysis of the reassembled coats on dodecyl sulfate acrylamide gels reveals that they have specifically incorporated three polypeptides from the preparation: those of Mr congruent to 52,000, 100,000, and 110,000. The 52,000-, 100,000-, and 110,000-mol-wt polypeptides are incorporated in molar ratios of 0.85, 1.11, and 0.26, respectively, per three clathrin monomers (equivalent to one triskelion). We therefore designate these as assembly polypeptides (AP). In contrast, coats formed from clathrin alone, under permissive buffer conditions, are larger (400S), more heterogeneous in size (101 nm +/- 15 nm SD), and are composed only of clathrin and its associated light chains. These biochemical and biophysical characteristics distinguish AP-reassembled coats from coats formed by triskelions alone. AP-reassembled coats can be isolated, dissociated, then reassembled in the absence of any other factors. This recycling indicates that all the information needed for reassembly is present in the coat-incorporated polypeptides themselves. Reassembly is stoichiometric and saturable with respect to both clathrin and AP concentration. In the presence of AP, significant coat reassembly occurs at clathrin concentrations as low as 0.06 mg/ml. AP-mediated reassembly proceeds at 4 degrees, 22 degrees, and 37 degrees C. Coat formation also proceeds efficiently at intracellular pH values (7.2- 7.5) in the presence of AP. In its absence, reassembly does not occur at all above pH 6.7. In summary, AP promotes clathrin reassembly into coat structures of uniform size and distinctive composition under physiologically relevant salt, temperature, and pH conditions. In addition, the close similarity in size between AP-reassembled coats in vitro and coated membranes in the Golgi region in vivo raises the possibility that AP in the cell may be associated with this subpopulation of coat structures.
机译:已经在包被的囊泡的提取物中鉴定出蛋白质活性,该蛋白活性使纯化的网格蛋白三方化合物能够在体外重新组装成大小均一的包衣结构。无论使用何种缓冲液系统,在此制剂的存在下形成的涂层尺寸均一,平均直径为78 nm(+/- 5 nm SD),沉降系数(S20,w)约为250S。对十二烷基硫酸盐丙烯酰胺凝胶上的重新组装的涂层的分析显示,它们已特别掺入了制剂中的三种多肽:Mr等同于52,000、100,000和110,000的多肽。每三个网格蛋白单体(相当于一个三氟甲磺酸盐)分别以0.85、1.11和0.26的摩尔比掺入52,000-,100,000-和110,000-mol-wt多肽。因此,我们将它们指定为装配多肽(AP)。相反,在允许的缓冲条件下,单独由网格蛋白形成的涂层较大(400S),尺寸更不均匀(101 nm +/- 15 nm SD),并且仅由网格蛋白及其相关的轻链组成。这些生化和生物物理特性将AP重装的外套与仅由三尖峰形成的外套区分开。可以将AP重新组装的涂层分离,解离,然后在没有任何其他因素的情况下重新组装。这种回收表明重组所需的所有信息都存在于结合了外壳的多肽本身中。对于网格蛋白和AP浓度而言,重组是化学计量的且可饱和的。在存在AP的情况下,网格蛋白的浓度低至0.06 mg / ml时会发生明显的涂层重组。 AP介导的重组在4度,22度和37摄氏度下进行。在存在AP的细胞内pH值(7.2- 7.5)下,涂层的形成也有效进行。如果不存在,则在高于pH 6.7的条件下完全不会发生重组。总之,在生理上相关的盐,温度和pH条件下,AP促进网格蛋白重新组装成大小均匀且组成独特的涂层结构。另外,体外AP重组装的外套与体内高尔基体区域的被覆膜之间大小的相似性增加了细胞中AP可能与这种外套结构亚群相关的可能性。

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