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CMF22是一种广泛保守的轴丝蛋白,是布氏锥虫推进运动所必需的。

CMF22 is a broadly conserved axonemal protein and is required for propulsive motility in Trypanosoma brucei.

作者信息

Nguyen HoangKim T, Sandhu Jaspreet, Langousis Gerasimos, Hill Kent L

机构信息

Department of Microbiology, Immunology and Molecular Genetics, University of California, Los Angeles, California, USA.

出版信息

Eukaryot Cell. 2013 Sep;12(9):1202-13. doi: 10.1128/EC.00068-13. Epub 2013 Jul 12.

Abstract

The eukaryotic flagellum (or cilium) is a broadly conserved organelle that provides motility for many pathogenic protozoa and is critical for normal development and physiology in humans. Therefore, defining core components of motile axonemes enhances understanding of eukaryotic biology and provides insight into mechanisms of inherited and infectious diseases in humans. In this study, we show that component of motile flagella 22 (CMF22) is tightly associated with the flagellar axoneme and is likely to have been present in the last eukaryotic common ancestor. The CMF22 amino acid sequence contains predicted IQ and ATPase associated with a variety of cellular activities (AAA) motifs that are conserved among CMF22 orthologues in diverse organisms, hinting at the importance of these domains in CMF22 function. Knockdown by RNA interference (RNAi) and rescue with an RNAi-immune mRNA demonstrated that CMF22 is required for propulsive cell motility in Trypanosoma brucei. Loss of propulsive motility in CMF22-knockdown cells was due to altered flagellar beating patterns, rather than flagellar paralysis, indicating that CMF22 is essential for motility regulation and likely functions as a fundamental regulatory component of motile axonemes. CMF22 association with the axoneme is weakened in mutants that disrupt the nexin-dynein regulatory complex, suggesting potential interaction with this complex. Our results provide insight into the core machinery required for motility of eukaryotic flagella.

摘要

真核生物鞭毛(或纤毛)是一种广泛保守的细胞器,它为许多致病原生动物提供运动能力,对人类的正常发育和生理功能至关重要。因此,确定运动轴丝的核心成分有助于增进对真核生物生物学的理解,并为深入了解人类遗传性和感染性疾病的机制提供线索。在本研究中,我们发现运动鞭毛成分22(CMF22)与鞭毛轴丝紧密相关,并且可能存在于最后的真核生物共同祖先中。CMF22氨基酸序列包含预测的IQ和与多种细胞活动相关的ATP酶(AAA)基序,这些基序在不同生物的CMF22直系同源物中是保守的,这暗示了这些结构域在CMF22功能中的重要性。通过RNA干扰(RNAi)敲低并使用RNAi免疫mRNA进行拯救,结果表明CMF22是布氏锥虫推进性细胞运动所必需的。CMF22敲低细胞中推进性运动的丧失是由于鞭毛摆动模式的改变,而不是鞭毛麻痹,这表明CMF22对于运动调节至关重要,并且可能作为运动轴丝的基本调节成分发挥作用。在破坏连接蛋白-动力蛋白调节复合物的突变体中,CMF22与轴丝的结合减弱,这表明它与该复合物可能存在潜在相互作用。我们的结果为真核生物鞭毛运动所需的核心机制提供了深入见解。

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