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利什曼原虫副鞭毛杆的遗传学剖析,一种独特的鞭毛细胞骨架结构。

Genetic dissection of the Leishmania paraflagellar rod, a unique flagellar cytoskeleton structure.

作者信息

Maga J A, Sherwin T, Francis S, Gull K, LeBowitz J H

机构信息

Department of Biochemistry, Purdue University, West Lafayette, IN 47907, USA.

出版信息

J Cell Sci. 1999 Aug;112 ( Pt 16):2753-63. doi: 10.1242/jcs.112.16.2753.

Abstract

The paraflagellar rod (PFR) is a unique network of cytoskeletal filaments that lies alongside the axoneme in the flagella of most trypanosomatids. While little is known about how two major Leishmania mexicana PFR protein components, PFR1 and PFR2, assemble into this complex structure, previous analysis of PFR2 null mutants demonstrated that the PFR is essential for proper cell motility. The structural roles of PFR1 and PFR2 are now examined through comparison of PFR2 null mutants with new PFR1 null mutant and PFR1/PFR2 double null mutant parasites. Both PFR1 and PFR2 were essential for PFR formation and cell motility. When elimination of one PFR gene prevented assembly of a native PFR structure, the other PFR protein accumulated at the distal flagellar tip. Comparison of PFR substructures remaining in each mutant revealed that: (1) fibers that attach the PFR to the axoneme did not contain PFR1 or PFR2, and assemble in the absence of a PFR. (2) PFR1 was synthesized and transported to the flagella in the absence of PFR2, where it formed a stable association with the axoneme attachment fibers. (3) PFR2 was synthesized and transported to the flagella in the absence of PFR1, though it was not found associated with the axoneme attachment fibers. (4) PFR1 and PFR2 were located throughout the subdomains of the PFR. These data suggest that while PFR filaments contain both PFR1 and PFR2, the PFR is attached to the axoneme by interaction of PFR1 with the axoneme attachment fibers.

摘要

副鞭毛杆(PFR)是一种独特的细胞骨架丝网络,存在于大多数锥虫鞭毛中的轴丝旁。虽然对于墨西哥利什曼原虫的两种主要PFR蛋白成分PFR1和PFR2如何组装成这种复杂结构知之甚少,但先前对PFR2基因敲除突变体的分析表明,PFR对于细胞的正常运动至关重要。现在,通过将PFR2基因敲除突变体与新的PFR1基因敲除突变体和PFR1/PFR2双基因敲除突变体寄生虫进行比较,研究了PFR1和PFR2的结构作用。PFR1和PFR2对于PFR的形成和细胞运动都是必不可少的。当一个PFR基因的缺失阻止了天然PFR结构的组装时,另一种PFR蛋白会在鞭毛远端积累。对每个突变体中剩余的PFR亚结构进行比较后发现:(1)将PFR与轴丝连接的纤维不包含PFR1或PFR2,并且在没有PFR的情况下也能组装。(2)在没有PFR2的情况下,PFR1被合成并运输到鞭毛,在那里它与轴丝附着纤维形成稳定的结合。(3)在没有PFR1的情况下,PFR2被合成并运输到鞭毛,尽管未发现它与轴丝附着纤维相关。(④)PFR1和PFR2分布在PFR的各个亚结构域中。这些数据表明,虽然PFR丝同时包含PFR1和PFR2,但PFR是通过PFR1与轴丝附着纤维的相互作用而与轴丝相连的。

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