Evolutionary Adaptation of the Essential tRNA Methyltransferase TrmD to the Signaling Molecule 3′,5′-cAMP in Bacteria

被引:19
作者
Zhang, Yong [1 ,2 ,6 ]
Agrebi, Rym [3 ,4 ]
Bellows, Lauren E. [1 ,2 ]
Collet, Jean-Francois [3 ,4 ]
Kaever, Volkhard [5 ]
Grundling, Angelika [1 ,2 ]
机构
[1] Imperial Coll London, Sect Microbiol, London SW7 2AZ, England
[2] Imperial Coll London, MRC Ctr Mol Bacteriol & Infect, London SW7 2AZ, England
[3] WELBIO, Ave Hippocrate 75, B-1200 Brussels, Belgium
[4] Catholic Univ Louvain, de Duve Inst, Ave Hippocrate 75, B-1200 Brussels, Belgium
[5] Hannover Med Sch, Res Core Unit Metabol, Carl Neuberg Str 1, D-30625 Hannover, Germany
[6] Univ Copenhagen, Dept Biol, DK-2200 Copenhagen, Denmark
基金
英国惠康基金; 欧洲研究理事会;
关键词
CYCLIC ADENOSINE-MONOPHOSPHATE; MULTIPLE SEQUENCE ALIGNMENTS; IV ADENYLYL-CYCLASE; STAPHYLOCOCCUS-AUREUS; ESCHERICHIA-COLI; THIAMINE TRIPHOSPHATASE; BACILLUS-SUBTILIS; CRYSTAL-STRUCTURE; BINDING-SITE; ACTIVE-SITE;
D O I
10.1074/jbc.M116.758896
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 nucleotide signaling molecule 3',5'-cyclic adenosine monophosphate (3',5'-cAMP) plays important physiological roles, ranging from carbon catabolite repression in bacteria to mediating the action of hormones in higher eukaryotes, including human. However, it remains unclear whether 3',5'-cAMP is universally present in the Firmicutes group of bacteria. We hypothesized that searching for proteins that bind 3',5'-cAMP might provide new insight into this question. Accordingly, we performed a genome-wide screen and identified the essential Staphylococcus aureus tRNA m(1)G37 methyltransferase enzyme TrmD, which is conserved in all three domains of life as a tight 3',5'-cAMP-binding protein. TrmD enzymes are known to use S-adenosyl-L-methionine (AdoMet) as substrate; we have shown that 3',5'-cAMP binds competitively with AdoMet to the S. aureus TrmD protein, indicating an overlapping binding site. However, the physiological relevance of this discovery remained unclear, as we were unable to identify a functional adenylate cyclase in S. aureus and only detected 2',3' -cAMP but not 3',5'-cAMP in cellular extracts. Interestingly, TrmD proteins from Escherichia coli and Mycobacterium tuberculosis, organisms known to synthesize 3',5'-cAMP, did not bind this signaling nucleotide. Comparative bioinformatics, mutagenesis, and biochemical analyses revealed that the highly conserved Tyr-86 residue in E. coli TrmD is essential to discriminate between 3',5'-cAMP and the native substrate AdoMet. Combined with a phylogenetic analysis, these results suggest that amino acids in the substrate binding pocket of TrmD underwent an adaptive evolution to accommodate the emergence of adenylate cyclases and thus the signaling molecule 3',5'-cAMP. Altogether this further indicates that S. aureus does not produce 3',5'-cAMP, which would otherwise competitively inhibit an essential enzyme.
引用
收藏
页码:313 / 327
页数:15
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