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肺炎克雷伯菌nifH基因突变的特征分析

Characterization of nifH mutations of Klebsiella pneumoniae.

作者信息

Chang C L, Davis L C, Rider M, Takemoto D J

机构信息

Department of Biochemistry, Kansas State University, Manhattan 66506.

出版信息

J Bacteriol. 1988 Sep;170(9):4015-22. doi: 10.1128/jb.170.9.4015-4022.1988.

Abstract

Nucleotide changes in the nifH gene of Klebsiella pneumoniae were identified by DNA cloning and sequencing of six selected mutant strains. The strains were UN60, C-640-GC----TGC; UN116, C-67-TC----TTC; UN117, G-688-AG----AAG; UN1041, CG-302-C----CAC; UN1678, GC-713-C----GTC; and UN1795, G-439-AG----AAG. Their corresponding amino acid substitutions were UN60, Arg-214----Cys; UN116, Leu-23----Phe; UN117, Glu-230----Lys; UN1041, Arg-101----His; UN1678, Ala-238----Val; and UN1795, Glu-147----Lys. Results from Western and Northern blots of the mutant strains showed significant reductions in both steady-state levels of the accumulated Fe protein and nifH mRNA during derepression in the presence of serine. The relative specific activities of the nitrogenases in strains UN60, UN1041, and UN1795 were less than 2% of the wild type, whereas those in UN116, UN117, and UN1678 were between 28 and 40% of the wild type during enhanced derepression with serine. The residues of Arg-101 (UN1041), Glu-147 (UN1795), and Arg-214 (UN60) were invariant in sequences of a dozen diazotrophs that have been examined thus far. In UN1041, in which Arg-101 of the Fe protein was replaced by His, the Fe protein had a larger apparent molecular weight than that of the other strains on sodium dodecyl sulfate-gel electrophoresis, as detected with rabbit antiserum raised against the C-terminal peptide of the wild-type Fe protein. The reduced levels of nifH mRNA in point mutant strains suggests that nifH (the gene or gene product) may be involved in self-regulation. mRNA transcripts of different sizes were detected when a nifH-specific probe, CCKp2003, was used in the Northern blot hybridization.

摘要

通过对六个选定突变菌株进行DNA克隆和测序,鉴定了肺炎克雷伯菌nifH基因中的核苷酸变化。这些菌株分别是UN60,C-640-GC----TGC;UN116,C-67-TC----TTC;UN117,G-688-AG----AAG;UN1041,CG-302-C----CAC;UN1678,GC-713-C----GTC;以及UN1795,G-439-AG----AAG。它们相应的氨基酸替换分别是UN60,Arg-214----Cys;UN116,Leu-23----Phe;UN117,Glu-230----Lys;UN1041,Arg-101----His;UN1678,Ala-238----Val;以及UN1795,Glu-147----Lys。突变菌株的蛋白质免疫印迹和RNA印迹结果显示,在丝氨酸存在下的去阻遏过程中,积累的铁蛋白和nifH mRNA的稳态水平均显著降低。在丝氨酸增强去阻遏过程中,UN60、UN1041和UN1795菌株中固氮酶的相对比活性低于野生型的2%,而UN116、UN117和UN1678菌株中的相对比活性在野生型的28%至40%之间。到目前为止,在已检测的十几种固氮菌序列中,Arg-101(UN1041)、Glu-147(UN1795)和Arg-214(UN60)的残基是不变的。在UN1041中,铁蛋白的Arg-101被His取代,在用针对野生型铁蛋白C末端肽产生的兔抗血清检测时,该铁蛋白在十二烷基硫酸钠凝胶电泳上的表观分子量比其他菌株的大。点突变菌株中nifH mRNA水平的降低表明nifH(基因或基因产物)可能参与自我调节。当在RNA印迹杂交中使用nifH特异性探针CCKp2003时,检测到了不同大小的mRNA转录本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a17/211404/665a46822a4c/jbacter00187-0238-a.jpg

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