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The ubiquitin-conjugating enzyme CDC34 is essential for cytokinesis in contrast to putative subunits of a SCF complex in Trypanosoma brucei

机译:与布鲁氏锥虫SCF复合体的假定亚基相比泛素结合酶CDC34对于胞质分裂是必不可少的

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摘要

The ubiquitin-proteasome system is a post-translational regulatory pathway for controlling protein stability and activity that underlies many fundamental cellular processes, including cell cycle progression. Target proteins are tagged with ubiquitin molecules through the action of an enzymatic cascade composed of E1 ubiquitin activating enzymes, E2 ubiquitin conjugating enzymes, and E3 ubiquitin ligases. One of the E3 ligases known to be responsible for the ubiquitination of cell cycle regulators in eukaryotes is the SKP1-CUL1-F-box complex (SCFC). In this work, we identified and studied the function of homologue proteins of the SCFC in the life cycle of Trypanosoma brucei, the causal agent of the African sleeping sickness. Depletion of trypanosomal SCFC components TbRBX1, TbSKP1, and TbCDC34 by RNAi resulted in decreased growth rate and contrasting cell cycle abnormalities for both procyclic (PCF) and bloodstream (BSF) forms. Depletion of TbRBX1 in PCF cells interfered with kinetoplast replication, whilst depletion of TbSKP1 arrested PCF and BSF cells in the G1/S transition. Silencing of TbCDC34 in BSF cells resulted in a block in cytokinesis and caused rapid clearance of parasites from infected mice. We also show that TbCDC34 is able to conjugate ubiquitin in vitro and in vivo, and that its activity is necessary for T. brucei infection progression in mice. This study reveals that different components of a putative SCFC have contrasting phenotypes once depleted from the cells, and that TbCDC34 is essential for trypanosome replication, making it a potential target for therapeutic intervention.
机译:泛素-蛋白酶体系统是翻译后的调控途径,用于控制蛋白质的稳定性和活性,这是许多基本细胞过程(包括细胞周期进程)的基础。通过E1泛素激活酶,E2泛素结合酶和E3泛素连接酶组成的酶促级联反应,用泛素分子标记靶蛋白。已知负责真核生物中细胞周期调节剂泛素化的E3连接酶之一是SKP1-CUL1-F-box复合物(SCFC)。在这项工作中,我们确定并研究了SCFC同源蛋白在非洲锥虫病(Trypanosoma brucei)的生命周期中的作用,而锥虫是非洲昏睡病的病因。 RNAi耗尽锥虫SCFC成分TbRBX1,TbSKP1和TbCDC34导致生长速度下降,并对比了前环(PCF)和血流(BSF)形式的细胞周期异常。 PCF细胞中TbRBX1的耗竭会干扰运动质体的复制,而TbSKP1的耗竭会在G1 / S过渡中使PCF和BSF细胞停滞。 TbCDC34在BSF细胞中的沉默导致胞质分裂阻滞,并导致从感染小鼠中快速清除寄生虫。我们还显示,TbCDC34能够在体外和体内结合泛素,并且其活性对于小鼠布鲁氏杆菌感染的进展是必需的。这项研究表明,假定的SCFC的不同成分一旦从细胞中耗竭后就会具有相反的表型,而且TbCDC34对于锥虫复制至关重要,使其成为治疗干预的潜在靶标。

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