CrgA Protein Represses AlkB2 Monooxygenase and Regulates the Degradation of Medium-to-Long-Chain -Alkanes in SJTD-1.

Front Microbiol

State Key Laboratory of Microbial Metabolism, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, China.

Published: March 2019

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Article Abstract

AlkB monooxygenases in bacteria are responsible for the hydroxylation of medium- and long-chain -alkanes. In this study, one CrgA protein of SJTD-1, a member of LysR family, was proved to regulate AlkB2 monooxygenase and the degradation of medium-to-long-chain -alkanes (C-C) by directly binding to the upstream of 2 gene. Two specific sites for CrgA binding were found in the promoter region of 2 gene, and the imperfect mirror repeat (IIR) structure was proved critical for CrgA recognition and binding. Hexadecyl CoA and octadecyl CoA could effectively release the CrgA binding and start the transcription of gene, implying a positive regulation of metabolic intermediate. In the presence of medium-to-long-chain -alkanes (C-C), deletion of gene could enhance the transcription and expression of AlkB2 monooxygenase significantly; and in n-octadecane culture, strain S1 grew more vigorously than strain S1 . Almost no regulation of CrgA protein was observed to 1 gene and . Therefore, CrgA acted as a negative regulator for the medium-to-long-chain -alkane utilization in SJTD-1. The work will promote the regulation mechanism study of -alkane degradation in bacteria and help the bioremediation method development for petroleum pollution.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6422896PMC
http://dx.doi.org/10.3389/fmicb.2019.00400DOI Listing

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