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衣藻鞭毛的辐条:柄部成分的多肽组成和磷酸化

Radial spokes of Chlamydomonas flagella: polypeptide composition and phosphorylation of stalk components.

作者信息

Piperno G, Huang B, Ramanis Z, Luck D J

出版信息

J Cell Biol. 1981 Jan;88(1):73-9. doi: 10.1083/jcb.88.1.73.

Abstract

Polypeptides from flagella or axonemes of Chlamydomonas reinhardtii were analyzed by labeling cellular proteins by prolonged growth on 35S-containing media and using one- and two-dimensional electrophoretic techniques which can resolve greater than 170 axonemal components. By this approach, a paralyzed mutant that lacks axonemal radial spokes, pf14, has been shown to lack 17 polypeptides in the molecular weight range of 20,000 to 124,000 and in the isoelectric point range of 4.8-7.1. Five of those polypeptides are also missing in the mutant pf-1 which lacks only radial spokeheads. The identification of the 17 polypeptides missing in pf-14 as components of radial spoke structures and the localization of the polypeptides lacking in pf-1 within the spokehead, are supported by experiments of chemical dissection of wild-type axonemes. Extraction procedures that solubilize outer and inner dynein arms preserve the structure of the radial spokes along with the 17 polypeptides in question. Six radial spoke polypeptides are solubilized in conditions that cause disassembly of radial spokeheads from the stalks and those components include the five polypeptides missing in pf-1. No Ca++- or Mg++-activated ATPase activities were found to be associated with solubilized preparations of wild-type radial spokeheads. In vivo pulse 32P incorporation experiments provide evidence that greater than 80 axonemal components are labeled by 32P and that five of the radial spoke stalk polypeptides are modified to different extents.

摘要

通过在含35S的培养基上长时间培养来标记细胞蛋白质,并使用一维及二维电泳技术(该技术可分辨超过170种轴丝成分),对莱茵衣藻鞭毛或轴丝中的多肽进行了分析。通过这种方法,已证明缺乏轴丝辐射辐条的瘫痪突变体pf14在分子量范围为20,000至124,000且等电点范围为4.8 - 7.1内缺少17种多肽。在仅缺少辐射辐头球的突变体pf - 1中,也缺少其中的5种多肽。对野生型轴丝进行化学剖析的实验支持了将pf - 14中缺失的17种多肽鉴定为辐射辐条结构的成分,以及将pf - 1中缺少的多肽定位在辐头球内。溶解外动力蛋白臂和内动力蛋白臂的提取程序保留了辐射辐条的结构以及相关的17种多肽。在导致辐头球从柄部拆卸的条件下,6种辐射辐条多肽被溶解,这些成分包括pf - 1中缺少的5种多肽。未发现野生型辐射辐头球的溶解制剂与Ca++或Mg++激活的ATP酶活性相关。体内脉冲32P掺入实验提供了证据,表明超过80种轴丝成分被32P标记,并且5种辐射辐条柄多肽被不同程度地修饰。

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