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真核生物鞭毛中分子伴侣的鉴定及其在微管组装位点的定位。

Identification of a molecular chaperone in the eukaryotic flagellum and its localization to the site of microtubule assembly.

作者信息

Bloch M A, Johnson K A

机构信息

Department of Molecular, Cellular and Developmental Biology, Haverford College, PA 19041, USA.

出版信息

J Cell Sci. 1995 Nov;108 ( Pt 11):3541-5. doi: 10.1242/jcs.108.11.3541.

Abstract

Monoclonal antibodies that recognize HSP70 family members from evolutionarily divergent organisms were used to identify both constitutively-expressed and stress-inducible HSP70 proteins in the green alga Chlamydomonas. These monoclonal antibodies also cross-reacted with a 70 kDa flagellar protein that comigrated with the constitutively-expressed HSP70 isoform(s) present in the cell body; this is the first identification of a molecular chaperone within the eukaryotic flagellum. Fractionation experiments demonstrated that much of the flagellar HSP70 was bound to the '9+2' microtubule axoneme. Incubation of isolated axonemes in ATP, but not AMP or AMP-PNP, caused significant release of the previously bound HSP70 as is characteristic of complexed HSP70s. Immunofluorescent localization in whole flagella showed that flagellar HSP70 was concentrated at the distal ends of flagella, sites of axonemal assembly in vivo. Extraction of axonemes under ionic conditions known to cause the release of capping structures that link the distal ends of the axonemal microtubules to the flagellar membrane also caused the release of axonemal-bound HSP70. Taken together, these results suggest a model in which an HSP70 chaperone may assist in targeting tubulin and other unassembled axonemal components to the flagellar tip where the chaperone may also participate in the assembly of the '9+2' flagellar axoneme.

摘要

利用识别来自进化上不同生物的热休克蛋白70(HSP70)家族成员的单克隆抗体,来鉴定绿藻衣藻中组成型表达和应激诱导型的HSP70蛋白。这些单克隆抗体还与一种70 kDa的鞭毛蛋白发生交叉反应,该蛋白与细胞体中组成型表达的HSP70异构体迁移率相同;这是真核生物鞭毛内分子伴侣的首次鉴定。分级分离实验表明,大部分鞭毛HSP70与“9+2”微管轴丝结合。在ATP中孵育分离的轴丝,但不是在AMP或AMP-PNP中,会导致先前结合的HSP70大量释放,这是复合HSP70的特征。在整个鞭毛中的免疫荧光定位显示,鞭毛HSP70集中在鞭毛的远端,即体内轴丝组装的部位。在已知会导致连接轴丝微管远端与鞭毛膜的封端结构释放的离子条件下提取轴丝,也会导致轴丝结合的HSP70释放。综上所述,这些结果提出了一个模型,其中HSP70分子伴侣可能有助于将微管蛋白和其他未组装的轴丝成分靶向鞭毛尖端,分子伴侣也可能参与“9+2”鞭毛轴丝的组装。

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