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交替氧化酶在布氏锥虫前循环型中的过表达效应。

The effect of over-expression of the alternative oxidase in the procyclic forms of Trypanosoma brucei.

作者信息

Walker Robert, Saha Lipi, Hill George C, Chaudhuri Minu

机构信息

Department of Microbiology, Meharry Medical College, Nashville, TN 37208, USA.

出版信息

Mol Biochem Parasitol. 2005 Feb;139(2):153-62. doi: 10.1016/j.molbiopara.2004.11.003.

Abstract

Trypanosome alternative oxidase (TAO) is the cyanide-resistant but SHAM-sensitive terminal oxidase of the mitochondrial electron transport chain in African trypanosomes. The bloodstream forms of Trypanosoma brucei lack cytochromes and respire exclusively via TAO. On the other hand, the insect, or procyclic form possesses a fully developed cytochrome system, and down regulates TAO several folds by reducing the stability of the TAO transcript. We expressed an ectopic copy of TAO in the procyclic form from a tetracycline regulated stable expression vector, in which the TAO 3'-UTR was replaced by T. brucei aldolase 3'-UTR. The TAO transcript produced from the ectopic copy was stably accumulated in the procyclic form. Upon induction with doxycycline, TAO protein level was gradually increased about five-fold within 72 h. TAO over-expression did not show any effect on the growth of the parasite. The rate of respiration and the SHAM-sensitive respiratory pathway capacity was increased about two- and five-fold, respectively, and the cytochrome-mediated respiratory pathway capacity was reduced two- to three-folds within 5 days after induction of TAO. Doxycycline induced TAO+ cells preferentially utilized CN-resistant, SHAM-sensitive pathway of respiration, whereas, in the control cells 70-80% of total respiration was via the CN-sensitive pathway. Moreover, we have found that increased expression of TAO caused about two-fold down regulation of cytochrome oxidase subunit IV, and cytochrome c1 protein level and also caused a four-fold up-regulation of the expression of the surface coat protein, GPEET procyclin in the procyclic form. This suggests that the expression of two terminal oxidases and the coat protein is linked in T. brucei.

摘要

锥虫交替氧化酶(TAO)是非洲锥虫线粒体电子传递链中对氰化物抗性但对水杨基氧肟酸(SHAM)敏感的末端氧化酶。布氏锥虫的血流形式缺乏细胞色素,仅通过TAO进行呼吸。另一方面,昆虫型或前循环型具有完全发育的细胞色素系统,并通过降低TAO转录本的稳定性将TAO下调数倍。我们从四环素调控的稳定表达载体中以前循环型表达了TAO的异位拷贝,其中TAO的3'-非翻译区(UTR)被布氏锥虫醛缩酶的3'-UTR取代。从异位拷贝产生的TAO转录本在前循环型中稳定积累。用强力霉素诱导后,TAO蛋白水平在72小时内逐渐增加约五倍。TAO的过表达对寄生虫的生长没有显示出任何影响。在诱导TAO后的5天内,呼吸速率和对SHAM敏感的呼吸途径容量分别增加了约两倍和五倍,而细胞色素介导的呼吸途径容量降低了两到三倍。强力霉素诱导的TAO +细胞优先利用对氰化物抗性、对SHAM敏感的呼吸途径,而在对照细胞中,总呼吸的70 - 80%通过对氰化物敏感的途径。此外,我们发现TAO表达的增加导致细胞色素氧化酶亚基IV和细胞色素c1蛋白水平下调约两倍,并且还导致前循环型表面糖蛋白GPEET前环蛋白的表达上调四倍。这表明在布氏锥虫中两种末端氧化酶和表面糖蛋白的表达是相关联的。

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