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立克次氏体的生化与遗传学研究

[Biochemical and genetical study of Rickettsia].

作者信息

Balaeva N M

出版信息

Mol Gen Mikrobiol Virusol. 1985 Apr(4):3-15.

PMID:3916224
Abstract

The review deals with the phenomenology in the studies on characteristics of surface antigenic and immunogenic structures of Rickettsia, their cellular membranes, the processes of metabolic cooperation and interaction with the host cells, and the structure of Rickettsia genome. The data on active antigenic and immunogenic proteins distribution in inner and outer membranes and on osmotically active functioning cellular membrane, including the specific substrate carriers, are discussed. The materials, are presented on the specific ADP-ATP transport system, slightly different from the mitochondrial one, in evidence that Rickettsia utilize ATP in two pathways: endogenous and exogenous. The metabolic regulatory processes, controlled by adenine nucleotides are discussed that could be used as a means of fitting to constantly changing conditions of Rickettsia ecological niche. The Rickettsia deficiency in AMP catabolism enzyme could be used for allosteric-regulation of citrate synthase, the key enzyme in the Krebs cycle. The data on the mol mass of Rickettsia DNA (1 x 10(9)) and the characteristics of plasmids are presented. In conclusion new data on molecular cloning of Rickettsia genes in vector plasmids and the restriction analysis of specific DNA sequences are discussed.

摘要

该综述涉及立克次体表面抗原和免疫原性结构特征、其细胞膜、代谢合作过程以及与宿主细胞的相互作用,还有立克次体基因组结构等方面的现象学。讨论了内膜和外膜中活性抗原和免疫原性蛋白分布的数据,以及渗透活性起作用的细胞膜的数据,包括特定底物载体。文中介绍了与线粒体系统略有不同的特定ADP - ATP转运系统的材料,证明立克次体通过内源性和外源性两条途径利用ATP。讨论了由腺嘌呤核苷酸控制的代谢调节过程,这些过程可作为立克次体适应其生态位不断变化条件的一种方式。立克次体中AMP分解代谢酶的缺乏可用于对柠檬酸合酶(三羧酸循环中的关键酶)进行变构调节。给出了立克次体DNA的摩尔质量(1×10⁹)和质粒特征的数据。最后讨论了立克次体基因在载体质粒中的分子克隆以及特定DNA序列的限制性分析的新数据。

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