» Articles » PMID: 22643908

Is PhoR-PhoP Partner Fidelity Strict? PhoR is Required for the Activation of the Pho Regulon in Streptomyces Coelicolor

Overview
Specialty Genetics
Date 2012 May 31
PMID 22643908
Citations 12
Authors
Affiliations
Soon will be listed here.
Abstract

Two-component regulatory systems play a key role in the cell metabolism adaptation to changing nutritional and environmental conditions. The fidelity between the two cognate proteins of a two-component system is important since it determines whether a specific response regulator integrates the signals transmitted by different sensor kinases. Phosphate regulation in Streptomyces coelicolor is mostly mediated by the PhoR-PhoP two-component system. Previous studies elucidated the mechanisms that control phosphate regulation as well as the genes directly regulated by the response regulator PhoP (pho regulon) in this organism. However, the role of the histidine kinase PhoR in Streptomyces coelicolor had not been unveiled so far. In this work, we report the characterization of a non-polar ΔphoR deletion mutant in S. coelicolor that keeps its native promoter. Induction of the phoRP operon was dependent upon phosphorylation of PhoP, but the ΔphoR mutant expressed phoP at a basal level. RT-PCR and reporter luciferase assays demonstrated that PhoR plays a key role in the activation of the pho regulon in this organism. Our results point towards a strict cognate partner specificity in terms of the phosphorylation of PhoP by PhoR thus corroborating the tight interaction between the two-components of this system.

Citing Articles

What is the role of microbial biotechnology and genetic engineering in medicine?.

Santos-Beneit F Microbiologyopen. 2024; 13(2):e1406.

PMID: 38556942 PMC: 10982607. DOI: 10.1002/mbo3.1406.


Trends in the two-component system's role in the synthesis of antibiotics by Streptomyces.

Cruz-Bautista R, Ruiz-Villafan B, Romero-Rodriguez A, Rodriguez-Sanoja R, Sanchez S Appl Microbiol Biotechnol. 2023; 107(15):4727-4743.

PMID: 37341754 PMC: 10345050. DOI: 10.1007/s00253-023-12623-z.


Characterization of Strains from Natural Honeybee Products with High Keratinolytic Activity and Antimicrobial Potential.

Martin-Gonzalez D, Bordel S, Solis S, Gutierrez-Merino J, Santos-Beneit F Microorganisms. 2023; 11(2).

PMID: 36838421 PMC: 9959047. DOI: 10.3390/microorganisms11020456.


Two-Component Systems of : An Intricate Network to Be Unraveled.

Sanchez de la Nieta R, Santamaria R, Diaz M Int J Mol Sci. 2022; 23(23).

PMID: 36499414 PMC: 9739842. DOI: 10.3390/ijms232315085.


The Global Regulator PhoU Positively Controls Growth and Butenyl-Spinosyn Biosynthesis in .

Tang J, Chen J, Liu Y, Hu J, Xia Z, Li X Front Microbiol. 2022; 13:904627.

PMID: 35756073 PMC: 9218956. DOI: 10.3389/fmicb.2022.904627.


References
1.
Mendes M, Tunca S, Anton N, Recio E, Sola-Landa A, Aparicio J . The two-component phoR-phoP system of Streptomyces natalensis: Inactivation or deletion of phoP reduces the negative phosphate regulation of pimaricin biosynthesis. Metab Eng. 2006; 9(2):217-27. DOI: 10.1016/j.ymben.2006.10.003. View

2.
Sola-Landa A, Moura R, Martin J . The two-component PhoR-PhoP system controls both primary metabolism and secondary metabolite biosynthesis in Streptomyces lividans. Proc Natl Acad Sci U S A. 2003; 100(10):6133-8. PMC: 156338. DOI: 10.1073/pnas.0931429100. View

3.
Ghorbel S, Kormanec J, Artus A, Virolle M . Transcriptional studies and regulatory interactions between the phoR-phoP operon and the phoU, mtpA, and ppk genes of Streptomyces lividans TK24. J Bacteriol. 2005; 188(2):677-86. PMC: 1347273. DOI: 10.1128/JB.188.2.677-686.2006. View

4.
Martin J, Sola-Landa A, Santos-Beneit F, Fernandez-Martinez L, Prieto C, Rodriguez-Garcia A . Cross-talk of global nutritional regulators in the control of primary and secondary metabolism in Streptomyces. Microb Biotechnol. 2011; 4(2):165-74. PMC: 3818857. DOI: 10.1111/j.1751-7915.2010.00235.x. View

5.
Amemura M, Makino K, Shinagawa H, Nakata A . Cross talk to the phosphate regulon of Escherichia coli by PhoM protein: PhoM is a histidine protein kinase and catalyzes phosphorylation of PhoB and PhoM-open reading frame 2. J Bacteriol. 1990; 172(11):6300-7. PMC: 526813. DOI: 10.1128/jb.172.11.6300-6307.1990. View