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Structural and molecular basis for the novel catalytic mechanism and evolution of<scp>DddP</scp>, an abundant peptidaseā€like bacterial Dimethylsulfoniopropionate lyase: a new enzyme from an old fold

Authors :
Bin-Bin Xie
Qi-Long Qin
Xiang Gao
Bai-Cheng Zhou
Peng Wang
De-yu Zhu
Lu-ying Xun
Yu-Zhong Zhang
Xi-Ying Zhang
Hai-Nan Su
Xiu-Lan Chen
Chun-Yang Li
Source :
Molecular Microbiology. 98:289-301
Publication Year :
2015
Publisher :
Wiley, 2015.

Abstract

The microbial cleavage of dimethylsulfoniopropionate (DMSP) generates volatile dimethyl sulfide (DMS) and is an important step in global sulfur and carbon cycles. DddP is a DMSP lyase in marine bacteria, and the deduced dddP gene product is abundant in marine metagenomic data sets. However, DddP belongs to the M24 peptidase family according to sequence alignment. Peptidases hydrolyze C-N bonds, but DddP is deduced to cleave C-S bonds. Mechanisms responsible for this striking functional shift are currently unknown. We determined the structures of DMSP lyase RlDddP (the DddP from Ruegeria lacuscaerulensis ITI_1157) bound to inhibitory 2-(N-morpholino) ethanesulfonic acid or PO4 (3-) and of two mutants of RlDddP bound to acrylate. Based on structural, mutational and biochemical analyses, we characterized a new ion-shift catalytic mechanism of RlDddP for DMSP cleavage. Furthermore, we suggested the structural mechanism leading to the loss of peptidase activity and the subsequent development of DMSP lyase activity in DddP. This study sheds light on the catalytic mechanism and the divergent evolution of DddP, leading to a better understanding of marine bacterial DMSP catabolism and global DMS production.

Details

ISSN :
13652958 and 0950382X
Volume :
98
Database :
OpenAIRE
Journal :
Molecular Microbiology
Accession number :
edsair.doi.dedup.....1bf761fac605bc7f77f8cb2e32c241c2
Full Text :
https://doi.org/10.1111/mmi.13119