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A SINGLE AMINO-ACID SUBSTITUTION (GLU134 -] ALA) IN NHAR1 INCREASES THE INDUCIBILITY BY NA+ OF THE PRODUCT OF NHAA, A NA+/H+ ANTIPORTER GENE IN ESCHERICHIA-COLI
被引:17
|作者:
CARMEL, O
DOVER, N
RAHAVMANOR, O
DIBROV, P
KIRSCH, D
KARPEL, R
SCHULDINER, S
PADAN, E
机构:
[1] Div Microbial and Molecular Ecology, Institute of Life Sciences, Hebrew University of Jerusalem
来源:
关键词:
ESCHERICHIA COLI;
LYSR-OXYR FAMILY;
NA+;
H+ ANTIPORTERS;
NHAR1;
MUTATION;
TRANSCRIPTIONAL REGULATION;
D O I:
10.1002/j.1460-2075.1994.tb06467.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 mutation nhaA(up) (antup) has now been identified as a Glu134 to Ala substitution in NhaR and designated nhaR1. This was demonstrated by sequence analysis showing that the mutant contains a wild-type nhaA but nhaR1 instead of nhaR and by the finding that nhaR1 cloned in a plasmid confers the NhaA(up) phenotype. Naf (107 mM) increases by 5- to 10-fold the level of nhaA transcripts, similar to the effect on the NhaR-mediated expression of a nhaA'-'lacZ fusion. These results are in agreement with the notion that nhaR is a positive regulator which controls Na+-dependent transcription of nhaA. The promoter region of nhaR and nhaR1 was found to reside within the BglII-BamHI fragment of the C-terminal sequences of nhaA. The mutation nhaR1, while increasing dramatically the level of transcription, reduces the requirement for Na+ by 3- to 5-fold both for nhaA transcription and for the nhaR1-mediated expression of nhaA'-'lacZ fusion. NhaR1, like NhaR, binds specifically to the promoter region of nhaA. However, at equal protein concentration NhaR1 binds more DNA and the NhaR1- DNA complex shows higher mobility than that of NhaR-DNA, suggesting the existence of two different binding complexes. Yet in this assay the DNA binding pattern of neither NhaR nor NhaR1 was affected by the addition of Na+. The possible relevance of these two DNA-binding complexes to the Na+-induced NhaR-mediated expression is discussed.
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页码:1981 / 1989
页数:9
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