首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Expression of Chinese hamster cAMP-dependent protein kinase in Escherichia coli results in growth inhibition of bacterial cells: a model system for the rapid screening of mutant type I regulatory subunits.
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Expression of Chinese hamster cAMP-dependent protein kinase in Escherichia coli results in growth inhibition of bacterial cells: a model system for the rapid screening of mutant type I regulatory subunits.

机译:中国仓鼠cAMP依赖性蛋白激酶在大肠杆菌中的表达导致细菌细胞的生长抑制:一个用于快速筛选突变型I调节亚基的模型系统。

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摘要

The regulatory and catalytic subunits of cAMP-dependent protein kinase (PKA) were coexpressed within the same bacterial cell using a polycistronic bacterial T7 expression vector encoding Chinese hamster cDNAs for the type I regulatory (RI) and catalytic alpha (C alpha) subunits of PKA. Basal expression of active RI/C alpha holoenzyme in the BL21(DE3) strain of Escherichia coli caused severe growth inhibition resulting in extremely small colony size. Several lines of evidence demonstrate that this growth inhibition requires active PKA subunits and cAMP: (i) this phenotype is dependent on cAMP since it is not seen in a strain lacking adenylyl cyclase activity, but the growth rate of these transformants is slower when exogenous cAMP is added; (ii) normal growth occurs when wild-type RI cDNA is replaced by a mutant RI cDNA encoding a RI protein with reduced cAMP binding; and (iii) the growth-inhibited phenotype of the transformed BL21(DE3) cells requires soluble, active C alpha protein. Holoenzyme expressed in bacteria is activated by cAMP, which stimulates phosphorylation of an endogenous 50-kDa protein that is missing in four host mutants selected for normal growth after transformation with PKA holoenzyme. A mutant RI cDNA library was generated by PCR random mutagenesis and screened by polycistronic expression in BL21(DE3) cells. The RI cDNA sequence from one revertant has base-pair substitutions creating two amino acid substitutions within the cAMP binding sites. The coexpression of the RI/C alpha subunits in BL21(DE3) bacterial cells provides a system for rapidly selecting mutations in the RI subunits of PKA.
机译:使用编码中国仓鼠cDNA的多顺反子细菌T7表达载体,在同一细菌细胞内共表达cAMP依赖性蛋白激酶(PKA)的调节和催化亚基,这些蛋白是PKA的I型调节(RI)和催化α(C alpha)亚基。活性的RI / Cα全酶在大肠杆菌BL21(DE3)菌株中的基础表达引起严重的生长抑制,导致菌落尺寸极小。几条证据表明,这种生长抑制需要活性的PKA亚基和cAMP:(i)这种表型取决于cAMP,因为在缺乏腺苷酸环化酶活性的菌株中未见到这种表型,但是当外源cAMP时,这些转化子的生长速度较慢被添加; (ii)当野生型RI cDNA被编码具有降低的cAMP结合的RI蛋白的突变RI cDNA替代时,正常生长发生; (iii)转化的BL21(DE3)细胞的生长抑制表型需要可溶性的活性Cα蛋白。细菌中表达的全酶被cAMP激活,该酶刺激内源性50 kDa蛋白的磷酸化,该蛋白在用PKA全酶转化后选择用于正常生长的四个宿主突变体中缺失。通过PCR随机诱变生成突变的RI cDNA文库,并通过在BL21(DE3)细胞中多顺反子表达进行筛选。来自一个回复子的RI cDNA序列具有碱基对取代,在cAMP结合位点内产生两个氨基酸取代。 RI / C alpha亚基在BL21(DE3)细菌细胞中的共表达提供了一个用于快速选择PKA RI亚基中突变的系统。

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