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本文引用的文献

1
Leishmaniasis.利什曼病
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2
Mitochondrial DNA ligase in Crithidia fasciculata.纤细短膜虫中的线粒体DNA连接酶。
Proc Natl Acad Sci U S A. 2004 Mar 30;101(13):4361-6. doi: 10.1073/pnas.0305705101. Epub 2004 Mar 2.
3
The protein components and mechanism of eukaryotic Okazaki fragment maturation.真核生物冈崎片段成熟的蛋白质成分及机制
Crit Rev Biochem Mol Biol. 2003;38(5):433-52. doi: 10.1080/10409230390259382.
4
The cell cycle of parasitic protozoa: potential for chemotherapeutic exploitation.寄生原生动物的细胞周期:化疗利用的潜力
Prog Cell Cycle Res. 2003;5:91-101.
5
Failure to produce mitochondrial DNA results in embryonic lethality in Rnaseh1 null mice.无法产生线粒体DNA会导致核糖核酸酶H1基因敲除小鼠出现胚胎致死性。
Mol Cell. 2003 Mar;11(3):807-15. doi: 10.1016/s1097-2765(03)00088-1.
6
Multiple ribonuclease H-encoding genes in the Caenorhabditis elegans genome contrasts with the two typical ribonuclease H-encoding genes in the human genome.秀丽隐杆线虫基因组中的多个核糖核酸酶H编码基因与人类基因组中的两个典型核糖核酸酶H编码基因形成对比。
Mol Biol Evol. 2002 Nov;19(11):1910-9. doi: 10.1093/oxfordjournals.molbev.a004015.
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Mitochondrial processing peptidases.线粒体加工肽酶
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8
Multiple mitochondrial DNA polymerases in Trypanosoma brucei.布氏锥虫中的多种线粒体DNA聚合酶。
Mol Cell. 2002 Jul;10(1):175-86. doi: 10.1016/s1097-2765(02)00571-3.
9
Enhanced activity of antisense phosphorothioate oligos against leishmania amastigotes: augmented uptake of oligo, ribonuclease H activation, and efficient target intervention under altered growth conditions.硫代磷酸反义寡核苷酸对利什曼原虫无鞭毛体的活性增强:寡核苷酸摄取增加、核糖核酸酶H激活以及在改变的生长条件下有效的靶点干预。
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10
RNA interference of a trypanosome topoisomerase II causes progressive loss of mitochondrial DNA.锥虫拓扑异构酶II的RNA干扰导致线粒体DNA逐渐丢失。
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来自利什曼原虫线粒体的II型核糖核酸酶H:一种对该寄生虫生长至关重要的酶。

A type II ribonuclease H from Leishmania mitochondria: an enzyme essential for the growth of the parasite.

作者信息

Misra Smita, Bennett Jabbar, Friew Yeshitila N, Abdulghani Junaid, Irvin-Wilson Charletha V, Tripathi Manish K, Williams Shauntae, Chaudhuri Minu, Chaudhuri Gautam

机构信息

Department of Microbiology, Meharry Medical College, 1005 D.B. Todd, Jr. Blvd., Nashville, TN 37208, USA.

出版信息

Mol Biochem Parasitol. 2005 Oct;143(2):135-45. doi: 10.1016/j.molbiopara.2005.05.009.

DOI:10.1016/j.molbiopara.2005.05.009
PMID:15978682
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3089020/
Abstract

Replication of kDNA in the mitochondrion of the kinetoplastid protozoan is an essential process. One of the proteins that may be required for the kDNA replication is the ribonuclease H (RNase H; EC 3.1.26.4). We have identified four distinct ribonuclease H genes in Leishmania, one type I (LRNase HI) and three type II (LRNase HIIA, LRNase HIIB and LRNase HIIC). We detail here molecular characterization of LRNase HIIC. The coding sequence of LRNase HIIC is 1425 bp in length encoding a 474-amino acid protein with a calculated molecular mass of approximately 53 kDa. While LRNase HIIC shares several conserved domains with mitochondrial RNase H from other organisms, it has three extra patches of amino acid sequences unique to this enzyme. Functional identity of this protein as an RNase H was verified by genetic complementation in RNase H-deficient Escherichia coli. The precursor protein may be enzymatically inactive as it failed to complement the E. coli mutant. The mitochondrial localization signal in LRNase HIIC is within the first 40 amino acid residues at the N-terminus. In vitro import of the protein by the mitochondrial vesicles showed that the precursor protein is processed to a 49-kDa protein. Antisense ablation of LRNase HIIC gene expression is lethal to the parasite cells both in vitro and in vivo. This study not only reveals the significance of the LRNase HIIC in the kinetoplast biology but also identifies a potential molecular target for antileishmanial chemotherapy.

摘要

动质体原生动物线粒体中的动质体DNA(kDNA)复制是一个必不可少的过程。kDNA复制可能所需的一种蛋白质是核糖核酸酶H(RNase H;EC 3.1.26.4)。我们在利什曼原虫中鉴定出了四个不同的核糖核酸酶H基因,一个I型(LRNase HI)和三个II型(LRNase HIIA、LRNase HIIB和LRNase HIIC)。我们在此详细描述LRNase HIIC的分子特征。LRNase HIIC的编码序列长度为1425 bp,编码一个474个氨基酸的蛋白质,计算分子量约为53 kDa。虽然LRNase HIIC与其他生物体的线粒体RNase H有几个保守结构域,但它有三个该酶特有的额外氨基酸序列片段。通过在缺乏RNase H的大肠杆菌中进行遗传互补,验证了该蛋白质作为RNase H的功能特性。前体蛋白可能没有酶活性,因为它无法互补大肠杆菌突变体。LRNase HIIC中的线粒体定位信号位于N端的前40个氨基酸残基内。线粒体小泡对该蛋白质的体外导入表明,前体蛋白被加工成了一个49 kDa的蛋白质。LRNase HIIC基因表达的反义缺失对体外和体内的寄生虫细胞都是致命的。这项研究不仅揭示了LRNase HIIC在动质体生物学中的重要性,还确定了一个抗利什曼原虫化疗的潜在分子靶点。