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利什曼原虫寄生虫副鞭毛杆的运动功能通过PFR-2基因敲除得以揭示。

A motility function for the paraflagellar rod of Leishmania parasites revealed by PFR-2 gene knockouts.

作者信息

Santrich C, Moore L, Sherwin T, Bastin P, Brokaw C, Gull K, LeBowitz J H

机构信息

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

出版信息

Mol Biochem Parasitol. 1997 Dec 1;90(1):95-109. doi: 10.1016/s0166-6851(97)00149-7.

Abstract

We demonstrate a functional role for the paraflagellar rod (PFR) in motility of Leishmania mexicana. The PFR is a complex cytoskeletal structure running parallel to the axoneme in the flagella of kinetoplastid protozoa. The PFR is composed of a latticework of protein filaments whose major constituents are two related proteins (PFR-1 and PFR-2 in Leishmania). The molecular details of their assembly into PFR filaments are unknown as is the biological function of the PFR. As an approach to understanding the structure and function of the PFR in Leishmania, we made L. mexicana null mutants of PFR-2. PFR-2 minus parasites grow and divide normally in culture and still express the PFR-1 protein. They lack most of the PFR structure demonstrating that the PFR-2 protein is an essential constituent of the PFR. Detailed ultrastructural analysis of the PFR-2 null mutant reveals the presence of a residual inner substructure of the PFR which contains PFR-1 protein, indicating that PFR-1 can polymerize in the absence of PFR-2. The PFR-2 null mutant displays pronounced changes in flagellar beat waveform and forward swimming velocity, compared to wild type parasites consistent with decreased internal elastic bending resistance in PFR-lacking flagella, and indicating a functional role for the PFR in the motility of Leishmania.

摘要

我们证明了副鞭毛杆(PFR)在墨西哥利什曼原虫运动中的功能作用。PFR是一种复杂的细胞骨架结构,与动基体原生动物鞭毛中的轴丝平行。PFR由蛋白质细丝的晶格组成,其主要成分是两种相关蛋白质(利什曼原虫中的PFR-1和PFR-2)。它们组装成PFR细丝的分子细节尚不清楚,PFR的生物学功能也不清楚。作为了解利什曼原虫中PFR结构和功能的一种方法,我们构建了PFR-2的墨西哥利什曼原虫缺失突变体。缺失PFR-2的寄生虫在培养中正常生长和分裂,并且仍然表达PFR-1蛋白。它们缺乏大部分PFR结构,表明PFR-2蛋白是PFR的重要组成部分。对PFR-2缺失突变体的详细超微结构分析揭示了PFR残余内部亚结构的存在,其中含有PFR-1蛋白,表明PFR-1可以在没有PFR-2的情况下聚合。与野生型寄生虫相比,PFR-2缺失突变体在鞭毛搏动波形和向前游动速度上表现出明显变化,这与缺乏PFR的鞭毛内部弹性弯曲阻力降低一致,表明PFR在利什曼原虫运动中具有功能作用。

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