【2h】

THE MITOTIC APPARATUS

机译:隐喻器具

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摘要

The major 22S protein of the hexylene glycol-isolated mitotic apparatus has been characterized from spindle isolates and extracts of whole eggs and acetone powders of eggs from the sea urchins Strongylocentrotus purpuratus, Strongylocentrotus droebachiensis, and Arbacia punctulata. The protein is free of nucleotide, lipid, and ATPase activity. Essentially identical in amino acid composition, proteins from these species show a relatively high content of glutamic and aspartic acids and are fairly rich in hydrophobic amino acids. Optical rotatory dispersion studies indicate a helical content of about 20%, a value consistent with the proline content of the protein. The purified proteins have sedimentation rates in the range of 22–24S, diffusion constants of 2.4–2.5F, intrinsic viscosities of 3.7–4.3 ml/g, a partial specific volume of 0.74, and an average molecular weight of 880,000. Electron microscopy indicates a globular molecule with dimensions of approximately 150 by 200 A; such size and symmetry are consistent with hydrodynamic measurements. The 22S protein yields 6–7S, 9–10S, and 13–14S subunits below pH 4 or above pH 11. The 13–14S component has an estimated molecular weight of 600,000–700,000. A 5–6S particle is formed in 8 M urea or 5 M guanidine hydrochloride, while at pH 12 the 6–7S subunit is seen; each particle has a molecular weight of 230,000–240,000. In 8 M urea plus 2% mercaptoethanol or at pH 13, the molecular weight becomes 105,000–120,000; under these conditions the particle sediments at 2.5–3S and 4S, respectively. On the basis of these molecular weights, the 6–7S, 9–10S, 13–14S, and the parent 22S particle should be dimer, tetramer, hexamer, and octamer, respectively, of the 105,000–120,000 molecular weight subunit. The various subunits will reform the 22S particle when returned to neutral buffer, with the exception of the mercaptoethanol-treated urea subunit where breakage of disulfide bonds results in a polydisperse aggregate. The 22S particle itself is not susceptible to sulfhydryl reagents, implying either that the disulfide bonds are inaccessible or that they are unnecessary for maintenance of tertiary structure once the 22S particle has formed from subunits.
机译:己二醇分离的有丝分裂装置的主要22S蛋白的特征是从梭形分离物以及海胆Strongylocentrotus purpuratus,Strongylocentrotus droebachiensis和Arbacia punctulata的全卵和卵的丙酮粉提取物中提取出来。该蛋白质不含核苷酸,脂质和ATPase活性。这些物种的蛋白质在氨基酸组成上基本相同,显示出相对较高的谷氨酸和天冬氨酸含量,并且富含疏水性氨基酸。旋光分散研究表明,螺旋含量约为20%,该值与蛋白质的脯氨酸含量一致。纯化的蛋白质的沉淀速率范围为22-24S,扩散常数为2.4-2.5F,固有粘度为3.7-4.3 ml / g,部分比容为0.74,平均分子量为880,000。电子显微镜检查表明球形分子的大小约为150 x 200 A;这样的尺寸和对称性与流体力学测量结果是一致的。 22S蛋白可产生低于pH 4或高于pH 11的6-7S,9-10S和13-14S亚基。13-14S组分的分子量估计为600,000-700,000。在8 M尿素或5 M盐酸胍中形成5-6S颗粒,而在pH值为12时,可以看到6-7S亚基。每个粒子的分子量为230,000–240,000。在8 M尿素加2%巯基乙醇中或在pH值为13时,分子量变为105,000–120,000;在这些条件下,颗粒沉降分别在2.5-3S和4S。根据这些分子量,6-7S,9-10S,13-14S和母体22S颗粒应分别为105,000-120,000分子量亚基中的二聚体,四聚体,六聚体和八聚体。当返回到中性缓冲液中时,各个亚基将重整22S颗粒,但巯基乙醇处理的尿素亚基除外,在该亚硫基中,二硫键的断裂导致形成多分散聚集体。 22S颗粒本身不易受巯基试剂的影响,这意味着一旦22S颗粒由亚基形成,二硫键就难以接近或对于维持三级结构而言是不必要的。

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