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氢化酶形成的调控对温度敏感,且在真养产碱杆菌中由质粒编码。

Regulation of hydrogenase formation is temperature sensitive and plasmid coded in Alcaligenes eutrophus.

作者信息

Friedrich C G, Friedrich B

出版信息

J Bacteriol. 1983 Jan;153(1):176-81. doi: 10.1128/jb.153.1.176-181.1983.

Abstract

Alcaligenes eutrophus grew well autotrophically with molecular hydrogen at 30 degrees C, but failed to grow at 37 degrees C (Hox Ts). At this temperature the strain grew well heterotrophically with a variety of organic compounds and with formate as an autotrophic substrate, restricting the thermolabile character to hydrogen metabolism. The soluble hydrogenase activity was stable at 37 degrees C. The catalytic properties of the wild-type enzyme were identical to those of a mutant able to grow lithoautotrophically at 37 degrees C (Hox Tr). Soluble hydrogenase was not rapidly degraded at elevated temperatures since the preformed enzyme remained stable for at least 5 h in resting cells or was diluted by growth, as shown in temperature shift experiments. Immunochemical studies revealed that the formation of the hydrogenase proteins was temperature sensitive. No cross-reactivity was detected above temperatures of 34 degrees C. The genetic information of Hox resides on a self-transmissible plasmid in A. eutrophus. Using Hox Tr mutants as donors of hydrogen-oxidizing ability resulted in Hox+ transconjugants which not only had recovered plasmid pHG1 and both hydrogenase activities but also were temperature resistant. This is evidence that the Hox Tr phenotype is coded by plasmid pHG1.

摘要

嗜碱假单胞菌在30℃下以分子氢为自养生长良好,但在37℃下不能生长(Hox Ts)。在此温度下,该菌株以多种有机化合物为异养生长良好,以甲酸盐为自养底物生长良好,这表明热不稳定特性仅限于氢代谢。可溶性氢化酶活性在37℃下稳定。野生型酶的催化特性与能够在37℃下进行自养生长的突变体(Hox Tr)相同。如温度转换实验所示,由于预先形成的酶在静止细胞中至少保持稳定5小时或因生长而被稀释,可溶性氢化酶在高温下不会迅速降解。免疫化学研究表明,氢化酶蛋白的形成对温度敏感。在34℃以上未检测到交叉反应。Hox的遗传信息存在于嗜碱假单胞菌的一个自我传递质粒上。使用Hox Tr突变体作为氢氧化能力的供体,产生了Hox+转接合子,这些转接合子不仅恢复了质粒pHG1和两种氢化酶活性,而且还具有温度抗性。这证明Hox Tr表型由质粒pHG1编码。

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