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肠炎沙门氏菌的CbiB蛋白是一种参与从头合成咕啉环生物合成途径最后一步的整合膜蛋白。

The CbiB protein of Salmonella enterica is an integral membrane protein involved in the last step of the de novo corrin ring biosynthetic pathway.

作者信息

Zayas Carmen L, Claas Kathy, Escalante-Semerena Jorge C

机构信息

Department of Bacteriology, University of Wisconsin-Madison, WI 53706, USA.

出版信息

J Bacteriol. 2007 Nov;189(21):7697-708. doi: 10.1128/JB.01090-07. Epub 2007 Sep 7.

Abstract

We report results of studies of the conversion of adenosylcobyric acid (AdoCby) to adenosylcobinamide-phosphate, the last step of the de novo corrin ring biosynthetic branch of the adenosylcobalamin (coenzyme B12) pathway of Salmonella enterica serovar Typhimurium LT2. Previous reports have implicated the CbiB protein in this step of the pathway. Hydropathy analysis predicted that CbiB would be an integral membrane protein. We used a computer-generated topology model of the primary sequence of CbiB to guide the construction of CbiB-LacZ and CbiB-PhoA protein fusions, which were used to explore the general topology of CbiB in the cell membrane. A refined model of CbiB as an integral membrane protein is presented. In vivo analyses of the effect of single-amino-acid changes showed that periplasm- and cytosol-exposed residues are critical for CbiB function. Results of in vivo studies also show that ethanolamine-phosphate (EA-P) is a substrate of CbiB, but l-Thr-P is not, and that CbiB likely activates AdoCby by phosphorylation. The latter observation leads us to suggest that CbiB is a synthetase not a synthase enzyme. Results from mass spectrometry and bioassay experiments indicate that serovar Typhimurium synthesizes norcobalamin (cobalamin lacking the methyl group at C176) when EA-P is the substrate of CbiB.

摘要

我们报告了鼠伤寒沙门氏菌LT2腺苷钴胺素(辅酶B12)从头合成咕啉环生物合成分支的最后一步,即腺苷钴胺酸(AdoCby)转化为磷酸腺苷钴胺酰胺的研究结果。先前的报道表明CbiB蛋白参与了该途径的这一步骤。亲水性分析预测CbiB将是一种整合膜蛋白。我们使用计算机生成的CbiB一级序列拓扑模型来指导构建CbiB-LacZ和CbiB-PhoA蛋白融合体,用于探索CbiB在细胞膜中的总体拓扑结构。本文提出了一个更为完善的CbiB作为整合膜蛋白的模型。单氨基酸变化的体内分析表明,周质和胞质暴露的残基对CbiB的功能至关重要。体内研究结果还表明,磷酸乙醇胺(EA-P)是CbiB的底物,但磷酸-L-苏氨酸不是,并且CbiB可能通过磷酸化激活AdoCby。后一观察结果使我们认为CbiB是一种合成酶而非合酶。质谱和生物测定实验结果表明,当EA-P是CbiB的底物时,鼠伤寒沙门氏菌合成了降钴胺素(C176位缺少甲基的钴胺素)。

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