An alternative P-II protein in the regulation of glutamine synthetase in Escherichia coli

被引:166
作者
vanHeeswijk, WC
Hoving, S
Molenaar, D
Stegeman, B
Kahn, D
Westerhoff, HV
机构
[1] UNIV AMSTERDAM, EC SLATER INST, NL-1018 TV AMSTERDAM, NETHERLANDS
[2] INRA, CNRS, LAB BIOL MOLEC RELAT PLANTES MICROORGANISMES, F-31326 CASTANET TOLOSAN, FRANCE
关键词
D O I
10.1046/j.1365-2958.1996.6281349.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The P-II protein has been considered pivotal to the dual cascade regulating ammonia assimilation through glutamine synthetase activity. Here we show that P-II, encoded by the glnB gene, is not always essential; for instance upon ammonia deprivation of a glnB deletion strain, glutamine synthetase can be deadenylylated as effectively as in the wild-type strain. We describe a new operon, glnK amtB, which encodes a homologue of P-II and a putative ammonia transporter. We cloned and overexpressed glnK and found that the expressed protein had almost the same molecular weight as P-II, reacted with polyclonal P-II antibody, and was 67% identical in terms of amino acid sequence with Escherichia coli P-II. Like P-II, purified GlnK can activate the adenylylation of glutamine synthetase in vitro, and, in vivo, the GlnK protein is uridylylated in a glnD-dependent fashion. Unlike P-II, however, the expression of glnK depends on the presence of UTase, nitrogen regulator I (NRI), and absence of ammonia. Because of a NRI and a sigma(N) (sigma(54)) RNA polymerase-binding consensus sequence upstream from the glnK gene, this suggests that glnK is regulated through the NRI/NRII two-component regulatory system. Indeed, in cells grown in the presence of ammonia, glutamine synthetase deadenylylation upon ammonia depletion depended on P-II, Possible regulatory implications of this conditional redundancy of P-II are discussed.
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页码:133 / 146
页数:14
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