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首页> 外文期刊>Biochemical Society Transactions >The enzymology of nitric oxide in bacterial pathogenesis and resistance.
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The enzymology of nitric oxide in bacterial pathogenesis and resistance.

机译:一氧化氮在细菌发病机理和抗性中的酶学。

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摘要

Mammalian NOSs (nitric oxide synthases) are haem-based monoxygenases that oxidize the amino acid arginine to the intracellular signal and protective cytotoxin nitric oxide (NO). Certain strains of mostly Gram-positive bacteria contain homologues of the mammalian NOS catalytic domain that can act as NOSs when suitable reductants are supplied. Crystallographic analyses of bacterial NOSs, with substrates and haem-ligands, have disclosed important features of assembly and active-centre chemistry, both general to the NOS family and specific to the bacterial proteins. The slow reaction profiles and especially stable haem-oxygen species of NOSs derived from bacterial thermophiles have facilitated the study of NOS reaction intermediates. Functionally, bacterial NOSs are distinct from their mammalian counterparts. In certain strains of Streptomyces, they participate in the biosynthetic nitration of plant toxins. In the radiation-resistant bacterium Deinococcus radiodurans, NOSs are also likely to be involved inbiosynthetic nitration reactions, but, furthermore, appear to play an important role in the recovery from damage induced by UV radiation.
机译:哺乳动物北极(一氧化氮合酶)是基于血红素的一氧酶,可将氨基酸精氨酸氧化为细胞内信号和保护性细胞毒素一氧化氮(NO)。某些革兰氏阳性细菌的某些菌株包含哺乳动物NOS催化结构域的同源物,当提供合适的还原剂时,它们可以用作NOSS。细菌NOSS的晶体学分析,带有底物和血状配体,已经披露了组装和主动中心化学的重要特征,无论是NOS家族还是针对细菌蛋白的特定特征。源自细菌嗜热的NOSS的缓慢反应谱,特别是稳定的血氧种类,促进了NOS反应中间体的研究。从功能上讲,细菌NOSS与其哺乳动物对应物不同。在某些链霉菌菌株中,它们参与植物毒素的生物合成硝化。在抗辐射抗性细菌deinococcus radiodurans中,NOSS也可能涉及投入合成硝化反应,但此外,在紫外线辐射引起的损害中的恢复中似乎起着重要作用。

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