...
首页> 外文期刊>The Journal of biological chemistry >Isolation and Characterization of a Hybrid Respiratory Supercomplex Consisting of Mycobacterium tuberculosis Cytochrome bcc and Mycobacterium smegmatis Cytochrome aa 3 *
【24h】

Isolation and Characterization of a Hybrid Respiratory Supercomplex Consisting of Mycobacterium tuberculosis Cytochrome bcc and Mycobacterium smegmatis Cytochrome aa 3 *

机译:一种由<斜体>结核分枝杆菌的混合呼吸超复合物的分离和表征细胞色素<斜斜体> BCC 和<斜体>分枝杆菌SMEGMATIS 细胞色素<斜体> AA 3 *

获取原文
           

摘要

Background: Mycobacteria have no soluble cytochrome c ; the electron transfer chain involves a Complex III-IV “supercomplex.” Results: Expression of the M. tuberculosis Complex III in M. smegmatis lacking native complex yields a functional hybrid supercomplex. Conclusion: This supercomplex is a dimer of protomers containing two each of hemes A, B, and C. Significance: This is the first purification of respiratory Complex III or IV from Mycobacterium . Recently, energy production pathways have been shown to be viable antitubercular drug targets to combat multidrug-resistant tuberculosis and eliminate pathogen in the dormant state. One family of drugs currently under development, the imidazo[1,2- a ]pyridine derivatives, is believed to target the pathogen's homolog of the mitochondrial bc _(1)complex. This complex, denoted cytochrome bcc , is highly divergent from mitochondrial Complex III both in subunit structure and inhibitor sensitivity, making it a good target for drug development. There is no soluble cytochrome c in mycobacteria to transport electrons from the bcc complex to cytochrome oxidase. Instead, the bcc complex exists in a “supercomplex” with a cytochrome aa _(3)-type cytochrome oxidase, presumably allowing direct electron transfer. We describe here purification and initial characterization of the mycobacterial cytochrome bcc-aa _(3)supercomplex using a strain of M. smegmatis that has been engineered to express the M. tuberculosis cytochrome bcc . The resulting hybrid supercomplex is stable during extraction and purification in the presence of dodecyl maltoside detergent. It is hoped that this purification procedure will potentiate functional studies of the complex as well as crystallographic studies of drug binding and provide structural insight into a third class of the bc complex superfamily.
机译:背景:分枝杆菌没有可溶性细胞色素C;电子转移链涉及复杂的III-IV“超复杂”。结果:缺乏天然复合物的M.结核综合体III的表达,产生了功能性杂交超复杂。结论:该超复合物是含有两种血液A,B和C的重选酶的二聚体:这是第一次纯化来自分枝杆菌的呼吸道综合体III或IV。最近,能量生产途径已被证明是可行的抗细胞药物靶标,以打击多药结核病,并在休眠状态下消除病原体。目前正在开发的一家药物,咪唑[1,2- A]吡啶衍生物被认为靶向线粒体BC _(1)复合物的病原体的同源物。这种复合物表示细胞色素BCC,在亚基结构和抑制剂敏感性中,从线粒体复合体III高度发散,使其成为药物发育的良好目标。分枝杆菌中没有可溶性细胞色素C,以将电子从BCC复合物传送到细胞色素氧化酶。相反,具有细胞色素AA _(3)型细胞色素氧化酶的“超复杂”中存在BCC复合物,可能是允许直接电子转移。在这里,在这里描述了使用菌株的微分细胞学细胞色素BCC-AA _(3)Supercople的纯化和初始表征,所述M. Smogmatis的菌株被设计成表达M.结核性细胞色素BCC。在十二烷基麦芽糖化洗涤剂存在下,所得混合超复杂性在提取和纯化期间稳定。希望该净化程序能够提高复杂的功能研究以及药物结合的结晶研究,并提供对BC复合物超家族的第三类的结构洞察力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号