Kenney D M, Weiss L D, Linck R W
Center for Blood Research, Boston, Massachusetts 02115.
J Biol Chem. 1988 Jan 25;263(3):1432-8.
A characterization is reported of the major cytoskeletal protein, called IEF (isoelectric focusing)-51K, of marginal band microtubule coils from human blood platelets (Kenney, D. M. and Linck, R. W. (1985) J. Cell Sci. 78, 1-22). IEF-51K is a unique biochemical species which is distinguishable from platelet and mammalian neuronal alpha-tubulin and beta-tubulin by 1) its faster mobility on discontinuous sodium dodecyl sulfate electrophoresis corresponding to an apparent Mr 51,000; 2) its more alkaline relative isoelectric point at pH 5.7 compared with that of alpha- and beta-tubulin at pH 5.3 and 5.5, respectively; 3) lack of coincidence in peptide maps prepared with chymotrypsin or Staphylococcus aureus V8 protease; and 4) lack of immunochemical cross-reactivity of polyclonal anti-IEF-51K with alpha- and beta-tubulin and of monoclonal anti-alpha-tubulin and anti-beta-tubulin with IEF-51K. In contrast to its chemical uniqueness, IEF-51K is tubulin-like in some of its properties. IEF-51K is localized in the marginal band of intact platelets by immunofluorescence; it undergoes cycles of microtubule disassembly/reassembly both in vitro and in vivo. Furthermore, IEF-51K was not extracted from isolated Taxol-stabilized marginal band microtubules by elevated NaCl concentrations (to 0.45 M), conditions that do not disrupt the polymeric structure of alpha- and beta-tubulin. These results indicate that IEF-51K together with alpha-tubulin and beta-tubulin are the major structural polypeptides of platelet marginal band microtubules. The unusual subunit composition of the platelet marginal band microtubule may be related to specialization(s) of microtubule structure and function in the marginal band coil of platelets.
本文报道了人血小板边缘带微管线圈中主要细胞骨架蛋白IEF(等电聚焦)-51K的特性(肯尼,D.M.和林克,R.W.(1985年)《细胞科学杂志》78卷,1 - 22页)。IEF-51K是一种独特的生化物质,与血小板和哺乳动物神经元α-微管蛋白及β-微管蛋白不同,表现在:1)在不连续十二烷基硫酸钠电泳上迁移速度更快,对应表观分子量为51,000;2)相对等电点更偏碱性,pH值为5.7,而α-和β-微管蛋白的等电点分别为pH 5.3和5.5;3)用胰凝乳蛋白酶或金黄色葡萄球菌V8蛋白酶制备的肽图不一致;4)多克隆抗IEF-51K与α-和β-微管蛋白缺乏免疫化学交叉反应,单克隆抗α-微管蛋白和抗β-微管蛋白与IEF-51K也缺乏免疫化学交叉反应。与其化学独特性相反,IEF-51K在某些特性上类似微管蛋白。通过免疫荧光法,IEF-51K定位于完整血小板的边缘带;它在体外和体内都经历微管解聚/重聚循环。此外,通过提高NaCl浓度(至0.45 M),未能从分离的紫杉醇稳定的边缘带微管中提取出IEF-51K,这种条件不会破坏α-和β-微管蛋白的聚合结构。这些结果表明,IEF-51K与α-微管蛋白和β-微管蛋白一起是血小板边缘带微管的主要结构多肽。血小板边缘带微管不寻常的亚基组成可能与血小板边缘带线圈中微管结构和功能的特化有关。