• Title/Summary/Keyword: DevSR two-component system

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Inhibition of the DevSR Two-Component System by Overexpression of Mycobacterium tuberculosis PknB in Mycobacterium smegmatis

  • Bae, Hyun-Jung;Lee, Ha-Na;Baek, Mi-Na;Park, Eun-Jin;Eom, Chi-Yong;Ko, In-Jeong;Kang, Ho-Young;Oh, Jeong-Il
    • Molecules and Cells
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    • v.40 no.9
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    • pp.632-642
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    • 2017
  • The DevSR (DosSR) two-component system, which is a major regulatory system involved in oxygen sensing in mycobacteria, plays an important role in hypoxic induction of many genes in mycobacteria. We demonstrated that overexpression of the kinase domain of Mycobacterium tuberculosis (Mtb) PknB inhibited transcriptional activity of the DevR response regulator in Mycobacterium smegmatis and that this inhibitory effect was exerted through phosphorylation of DevR on Thr180 within its DNA-binding domain. Moreover, the purified kinase domain of Mtb PknB significantly phosphorylated RegX3, NarL, KdpE, TrcR, DosR, and MtrA response regulators of Mtb that contain the Thr residues corresponding to Thr180 of DevR in their DNA-binding domains, implying that transcriptional activities of these response regulators might also be inhibited when the kinase domain of PknB is overexpressed.

Inactivation of the DevS Histidine Kinase of Mycobacterium smegmatis by the Formation of the Intersubunit Disulfide Bond (Subunit 간의 disulfide 결합 형성에 의한 Mycobacterium smegmatis DevS histidine kinase의 불활성화)

  • Lee, Jin-Mok;Park, Kwang-Jin;Kim, Min-Ju;Ko, In-Jeong;Oh, Jeong-Il
    • Journal of Life Science
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    • v.20 no.6
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    • pp.853-860
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    • 2010
  • The DevSR two-component system is a major regulatory system involved in redox sensing in Mycobacterium smegmatis. The DevSR system consists of the DevS histidine kinase and its cognate DevR response regulator. When exposed to hypoxic conditions, the DevS histidine kinase is activated to phosphorylate the DevR response regulator, leading to the transcriptional activation of the DevR regulation. The ligand-binding state of the heme embedded in the N-terminal GAF domain of DevS determines the kinase activity of DevS. In this study, we demonstrated that the redox-responsive cysteine (C547) in the C-terminal kinase domain is involved in the redox-dependent control of DevS kinase activity. The formation of an intersubunit disulfide bond between the C547 residues in the presence of $O_2$ led to inactivation of DevS kinase activity. The reduction of the oxidized DevS with reductants such as $\beta$-mercaptoethanol and dithiothreitol resulted in the restoration of DevS kinase activity. It was demonstrated in vivo by complementation test that the substitution of C547 to alanine partially impaired the sensory function of DevS in M. smegmatis.

Expression of Adenylyl Cyclase Genes in Mycobacterium smegmatis under Hypoxic and Nitric Oxide Conditions (저산소와 NO 조건에서 Mycobacterium smegmatis의 adenylyl cyclase 유전자 발현)

  • Jeon, Han-Seung;Yang, Ki-Hoon;Ko, In-Jeong;Oh, Jeong-Il
    • Journal of Life Science
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    • v.24 no.12
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    • pp.1330-1338
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    • 2014
  • In Mycobacterium tuberculosis H37Rv 16 adenylyl cyclase (AC) genes have been identified, while 10 AC genes have been found in non-pathogenic Mycobacterium smegmatis. Expression of 6 AC genes (MSMEG_0218, MSMEG_3243, MSMEG_3780, MSMEG_4279, MSMEG_4477, and MSMEG_6154) among 10 AC genes in M. smegmatis was increased when M. smegmatis was subjected to hypoxic growth conditions. On the other hand, only MSMEG_3780 and MSMEG_4279 were slightly induced in the presence of NO. The cAMP levels in cells and culture media were 450- and 9.8-fold increased, respectively, when M. smegmatis was grown under hypoxic conditions relative to those grown aerobically. Intracellular levels of cAMP were increased 5.8-fold on the exposure to NO. The DevSR two-component system is known to be involved in the induction of many genes whose expression is induced under hypoxic conditions and in the presence of NO. Expression of 6 hypoxically induced AC genes was observed to be induced in a devR deletion mutant grown under hypoxic conditions, indicating that the induction of the 6 AC genes under hypoxic conditions is independent of the DevSR two-component system. In order to identify a trans-acting regulatory element that is pertinent in the hypoxic induction of MSMEG_3780, ligand-fishing analysis was performed using the upstream DNA of MSMEG_3780 and MSMEG_5136 protein was identified.