Javascript must be enabled to continue!
MarR family proteins sense sulfane sulfur in bacteria
View through CrossRef
AbstractMembers of the multiple antibiotic resistance regulator (MarR) protein family are ubiquitous in bacteria and play critical roles in regulating cellular metabolism and antibiotic resistance. MarR family proteins function as repressors, and their interactions with modulators induce the expression of controlled genes. The previously characterized modulators are insufficient to explain the activities of certain MarR family proteins. However, recently, several MarR family proteins have been reported to sense sulfane sulfur, including zero‐valent sulfur, persulfide (R‐SSH), and polysulfide (R‐SnH, n ≥ 2). Sulfane sulfur is a common cellular component in bacteria whose levels vary during bacterial growth. The changing levels of sulfane sulfur affect the expression of many MarR‐controlled genes. Sulfane sulfur reacts with the cysteine thiols of MarR family proteins, causing the formation of protein thiol persulfide, disulfide bonds, and other modifications. Several MarR family proteins that respond to reactive oxygen species (ROS) also sense sulfane sulfur, as both sulfane sulfur and ROS induce the formation of disulfide bonds. This review focused on MarR family proteins that sense sulfane sulfur. However, the sensing mechanisms reviewed here may also apply to other proteins that detect sulfane sulfur, which is emerging as a modulator of gene regulation.
Title: MarR family proteins sense sulfane sulfur in bacteria
Description:
AbstractMembers of the multiple antibiotic resistance regulator (MarR) protein family are ubiquitous in bacteria and play critical roles in regulating cellular metabolism and antibiotic resistance.
MarR family proteins function as repressors, and their interactions with modulators induce the expression of controlled genes.
The previously characterized modulators are insufficient to explain the activities of certain MarR family proteins.
However, recently, several MarR family proteins have been reported to sense sulfane sulfur, including zero‐valent sulfur, persulfide (R‐SSH), and polysulfide (R‐SnH, n ≥ 2).
Sulfane sulfur is a common cellular component in bacteria whose levels vary during bacterial growth.
The changing levels of sulfane sulfur affect the expression of many MarR‐controlled genes.
Sulfane sulfur reacts with the cysteine thiols of MarR family proteins, causing the formation of protein thiol persulfide, disulfide bonds, and other modifications.
Several MarR family proteins that respond to reactive oxygen species (ROS) also sense sulfane sulfur, as both sulfane sulfur and ROS induce the formation of disulfide bonds.
This review focused on MarR family proteins that sense sulfane sulfur.
However, the sensing mechanisms reviewed here may also apply to other proteins that detect sulfane sulfur, which is emerging as a modulator of gene regulation.
Related Results
Increased life expectancy of heart failure patients in a rural center by a multidisciplinary program
Increased life expectancy of heart failure patients in a rural center by a multidisciplinary program
Abstract
Funding Acknowledgements
Type of funding sources: None.
INTRODUCTION Patients with heart failure (HF)...
Hubungan Perilaku Pola Makan dengan Kejadian Anak Obesitas
Hubungan Perilaku Pola Makan dengan Kejadian Anak Obesitas
<p><em><span style="font-size: 11.0pt; font-family: 'Times New Roman',serif; mso-fareast-font-family: 'Times New Roman'; mso-ansi-language: EN-US; mso-fareast-langua...
Primary PCI: a reasonable treatment for STEMI care during the COVID-19 pandemic
Primary PCI: a reasonable treatment for STEMI care during the COVID-19 pandemic
Abstract
Funding Acknowledgements
Type of funding sources: None.
Introduction
...
On Flores Island, do "ape-men" still exist? https://www.sapiens.org/biology/flores-island-ape-men/
On Flores Island, do "ape-men" still exist? https://www.sapiens.org/biology/flores-island-ape-men/
<span style="font-size:11pt"><span style="background:#f9f9f4"><span style="line-height:normal"><span style="font-family:Calibri,sans-serif"><b><spa...
Towards understanding the pathway for hydrogen sulfide metabolism
Towards understanding the pathway for hydrogen sulfide metabolism
Hydrogen sulfide (H₂S) is the most recently identified member of a small family of labile biological signaling molecules, termed gasotransmitters, which includes nitric oxide and c...
Biology of Green Sulfur Bacteria
Biology of Green Sulfur Bacteria
AbstractGreen sulfur bacteria have gained much attention because of a number of highly interesting features including unique structures of the photosynthetic apparatus and the pres...
Sulfur Metabolism in Plants
Sulfur Metabolism in Plants
Abstract
Sulfur is an essential element found in plants in a variety of compounds with many different functions. The sulfur‐containing amino aci...
Heterotrophic bacteria drive sulfide oxidation in coastal sediments
Heterotrophic bacteria drive sulfide oxidation in coastal sediments
ABSTRACT
Sulfate reduction and sulfur oxidation are very active in coastal sediments. They shape the biogeochemistry and microbial ecology at hot...

