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Signaling of two-component systems by phosphoryl transfer requires interaction of the sensor kinase with the response regulator. Interaction of the C4-dicarboxylate-responsive and membrane-integral sensor kinase DcuS with the response regulator DcuR was studied. , the cytoplasmic part of DcuS (PAS-Kin) was employed. Stable complexes were formed, when either DcuS or DcuR were phosphorylated ( 22 ± 11 and 28 ± 7 nM, respectively). The unphosphorylated proteins produced a more labile complex ( 1380 ± 395 nM). Bacterial two-hybrid studies confirm interaction of DcuR with DcuS (and PAS-Kin) . The absolute contents of DcuR (197-979 pmol mg protein) in the bacteria exceeded those of DcuS by more than 1 order of magnitude. According to the values, DcuS exists in complex, with phosphorylated but also unphosphorylated DcuR. In live cell imaging, the predominantly freely diffusing DcuR becomes markedly less mobile after phosphorylation and activation of DcuS by fumarate. Portions of the low mobility fraction accumulated at the cell poles, the preferred location of DcuS, and other portions within the cell, representing phosphorylated DcuR bound to promoters. In the model, acitvation of DcuS increases the affinity toward DcuR, leading to DcuS-P × DcuR formation and phosphorylation of DcuR. The complex is stable enough for phosphate-transfer, but labile enough to allow exchange between DcuR from the cytosol and DcuR-P of the complex. Released DcuR-P diffuses to target promoters and binds. Uncomplexed DcuR-P in the cytosol binds to nonactivated DcuS and becomes dephosphorylated. The lower affinity between DcuR and DcuS avoids blocking of DcuS and allows rapid exchange of DcuR. Complex formation of membrane-bound sensor kinases with the response regulators represents an inherent step of signaling from the membrane to the promoters on the DNA. In the C4-dicarboxylate-sensing DcuS-DcuR two-component system, complex formation is strengthened by activation (phosphorylation) and , with trapping of the response regulator DcuR at the membrane. Single-molecule tracking of DcuR in the bacterial cell demonstrates two populations of DcuR with decreased mobility in the bacteria after activation: one at the membrane, but a second in the cytosol, likely representing DNA-bound DcuR. The data suggest a model with binding of DcuR to DcuS-P for phosphorylation, and of DcuR-P to DcuS for dephosphorylation, allowing rapid adaptation of the DcuR phosphorylation state. DcuR-P is released and transferred to DNA by 3D diffusion.
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http://dx.doi.org/10.1128/msphere.00235-22 | DOI Listing |
Afr J Reprod Health
August 2025
Nelson Mandela University, DCur, Department of Nursing Science, Research associate professor,. Port Elizabeth, South Africa.
The study investigates the experiences by teachers of teaching reproductive healthcare services related modules at school to young women in developing countries. These experiences highlight the complexity of youth sexual and reproductive health problems and their negative impact on teenagers. The study focuses on understanding the experiences of school principals and professional nurses in facilitating the teaching of reproductive healthcare in public high schools, with the goal of improving knowledge and access to services for school-going teenage girls.
View Article and Find Full Text PDFNurs Educ Perspect
October 2024
About the Authors Judith Bacchus Cornelius, PhD, RN, FAAN, ANEF, is a professor, College of Health and Human Services, University of North Carolina at Charlotte, Charlotte, North Carolina. Charlene Downing, PhD, RN, is a professor, Department of Nursing, Faculty of Health Sciences, University of Joh
The COVID-19 pandemic presented opportunities for educational innovations and the development of intercultural learning experiences. A global health assignment guided by a collaborative online international learning pedagogy was assigned to doctoral nursing students from three different countries. Icebreaker activities, along with the Culturally You diagram, commenced the team-building process.
View Article and Find Full Text PDFMicrob Physiol
April 2024
Institute for Molecular Physiology (IMP), Microbiology and Wine Research, Johannes Gutenberg-University, Mainz, Germany,
Introduction: C4-dicarboxylates (C4-DC) have emerged as significant growth substrates and signaling molecules for various Enterobacteriaceae during their colonization of mammalian hosts. Particularly noteworthy is the essential role of fumarate respiration during colonization of pathogenic bacteria. To investigate the regulation of aerobic C4-DC metabolism, the study explored the transcriptional control of the main aerobic C4-DC transporter, dctA, under different carbohydrate conditions.
View Article and Find Full Text PDFNat Commun
November 2023
TEDA Institute of Biological Sciences and Biotechnology, Nankai University, TEDA, Tianjin, 300457, P. R. China.
The mammalian gastrointestinal tract is a complex environment that hosts a diverse microbial community. To establish infection, bacterial pathogens must be able to compete with the indigenous microbiota for nutrients, as well as sense the host environment and modulate the expression of genes essential for colonization and virulence. Here, we found that enterohemorrhagic Escherichia coli (EHEC) O157:H7 imports host- and microbiota-derived L-malate using the DcuABC transporters and converts these substrates into fumarate to fuel anaerobic fumarate respiration during infection, thereby promoting its colonization of the host intestine.
View Article and Find Full Text PDFCirc Res
September 2023
Harper Cancer Research Institute (A.D.C.U.R., V.A.P., F.J.C., M.A.S.).
Background: Epigenetic regulation of vascular remodeling in pulmonary hypertension (PH) is poorly understood. Transcription regulating, histone acetylation code alters chromatin accessibility to promote transcriptional activation. Our goal was to identify upstream mechanisms that disrupt epigenetic equilibrium in PH.
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