Corrinoids are cobalt-containing molecules that function as enzyme cofactors in a wide variety of organisms but are produced solely by a subset of prokaryotes. Specific corrinoids are identified by the structure of their axial ligands. The lower axial ligand of a corrinoid can be a benzimidazole, purine, or phenolic compound. Though it is known that many organisms obtain corrinoids from the environment, the variety of corrinoids that can serve as cofactors for any one organism is largely unstudied. Here, we examine the range of corrinoids that function as cofactors for corrinoid-dependent metabolism in Dehalococcoides mccartyi strain 195. Dehalococcoides bacteria play an important role in the bioremediation of chlorinated solvents in the environment because of their unique ability to convert the common groundwater contaminants perchloroethene and trichloroethene to the innocuous end product ethene. All isolated D. mccartyi strains require exogenous corrinoids such as vitamin B(12) for growth. However, like many other corrinoid-dependent bacteria, none of the well-characterized D. mccartyi strains has been shown to be capable of synthesizing corrinoids de novo. In this study, we investigate the ability of D. mccartyi strain 195 to use specific corrinoids, as well as its ability to modify imported corrinoids to a functional form. We show that strain 195 can use only specific corrinoids containing benzimidazole lower ligands but is capable of remodeling other corrinoids by lower ligand replacement when provided a functional benzimidazole base. This study of corrinoid utilization and modification by D. mccartyi provides insight into the array of strategies that microorganisms employ in acquiring essential nutrients from the environment.
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http://dx.doi.org/10.1128/AEM.02150-12 | DOI Listing |
Cell Physiol Biochem
December 2024
Institute of Biology, Pomeranian University in Słupsk, Słupsk, Poland.
This review provides an analysis of the current literature on the health and nutrition of blood donors, examining key aspects that affect the quality of donated blood and the well-being of donors. The review discusses effective iron absorption facilitated by key nutrients and presents evidence on the importance of a balanced diet rich in essential nutrients, such as vitamin B12 and folic acid. The review examines the differences in iron levels between men and women and highlights the role of sex hormones in regulating iron metabolism.
View Article and Find Full Text PDFZhonghua Wei Zhong Bing Ji Jiu Yi Xue
November 2024
Department of Intensive Care Unit, Sichuan Provincial People's Hospiatl, Chengdu 610000, Sichuan, China.
Sepsis is a prevalent form of acute and critical illness encountered in intensive care unit (ICU), characterized by a high mortality and cognitive impairments among survivors. The pathogenesis of sepsis primarily involves immune dysfunction and excessive oxidative stress. Consequently, immune modulation, along with anti-inflammatory and antioxidant strategies, has emerged as a focal point in the treatment of sepsis.
View Article and Find Full Text PDFJ Vet Intern Med
December 2024
Clinic for Small Animals, Internal Medicine, JLU Giessen, Frankfurter Strasse 114, Giessen 35392, Germany.
Background: In dogs, data on reference intervals (RIs) for cobalamin, markers of metabolism (markersBmet), age and sex effects are limited.
Hypothesis/objectives: Establish RI for serum cobalamin, homocysteine, and methylmalonic acid (sMMA) concentrations, urinary methylmalonic acid-to-creatinine ratio (uMMA:crea), and determine effects of sex and age.
Methods: Prospective study using healthy dogs (1-10 years).
Cell Biochem Funct
December 2024
Department of Life and Consumer Sciences, University of South Florida, Roodepoort, South Africa.
Combination therapy offers a promising advantage because they target multiple pathways involved in the pathogenesis and progression of Alzheimer's disease. This study aimed to investigate the synergistic effect of donepezil and each of vitamin B12, vitamin B6 and vitamin B1 on aluminium chloride (AlCl)-induced neurotoxicity in rats. Fifty-four rats were divided into nine groups of six.
View Article and Find Full Text PDFCommun Biol
December 2024
School of Chemistry and Chemical Engineering, University of South China, Hengyang, China.
Allosteric conformational change is an important paradigm in the regulation of protein function, which is typically triggered by the binding of small cofactors, metal ions or protein partners. Here, we found those conformational transitions can be effectively monitored by F NMR, facilitated by a site-specific F incorporation strategy at the protein C-terminus using asparaginyl endopeptidase (AEP). Three case studies show that C-terminal F-nuclei can reveal protein dynamics not only adjacent but also distal to C-terminus, including those occurring in a hemoprotein neuroglobin (Ngb), calmodulin (CaM), and a cobalt metalloregulator (CoaR) responding to both cobalt and tetrapyrrole.
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