Mutation of gltB (encoding glutamate oxoglutarate amidotransferase or GOGAT) in RU2307 increased the intracellular Gln:Glu ratio and inhibited amino acid transport via Aap and Bra. The mechanism probably involves global post-translational inhibition independent of Ntr. Transport was separately restored by increased gene expression of Aap or heterologous transporters. Likewise, second site suppressor mutations in the RNA chaperone Hfq elevated transport by Aap and Bra by increasing mRNA levels. Microarrays showed Hfq regulates 34 ABC transporter genes, including aap, bra and opp. The genes coding for integral membrane proteins and ABC subunits aapQMP braDEFGC were more strongly elevated in the hfq mutants than solute-binding proteins (aapJ braC). aapQMP and braDEFG are immediately downstream of stem-loops, indicating Hfq attenuates downstream translation and stability of mRNA, explaining differential expression of ABC genes. RU2307 nodulated peas and bacteria grew down infection threads, but bacteroid development was arrested and N(2) was not fixed. This probably results from an inability to synthesize or transport amino acids. However, GOGAT and GOGAT/AldA double mutants carrying suppressor mutations that increased amino acid uptake fixed N(2) on pea plants. Thus de novo ammonium assimilation into amino acids is unnecessary in bacteroids demonstrating sufficient amino acids are supplied by plants.
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http://dx.doi.org/10.1111/j.1365-2958.2011.07565.x | DOI Listing |
Hum Reprod Open
April 2024
Instituto de Biología y Medicina Experimental, Consejo Nacional de Investigaciones Científicas y Técnicas de Argentina-Fundación IBYME, Buenos Aires, Argentina.
Background: The widespread interest in male reproductive health (MRH), fueled by emerging evidence, such as the global decline in sperm counts, has intensified concerns about the status of MRH. Consequently, there is a pressing requirement for a strategic, systematic approach to identifying critical questions, collecting pertinent information, and utilizing these data to develop evidence-based strategies. The methods for addressing these questions and the pathways toward their answers will inevitably vary based on the variations in cultural, geopolitical, and health-related contexts.
View Article and Find Full Text PDFNeurology
February 2019
From the Department of Neurology-Neuroimmunology, Multiple Sclerosis Centre of Catalonia (Cemcat) (A.P., L.M., J.C., P.M., A.V.-J., G.A., B.R.-A., J.S.-G., J.R., M.C., I.G., M.T., X.M.), Hospital Universitari Vall d'Hebron, Universitat Autònoma de Barcelona, Spain; Department of Internal Medicine (C.P.B.R.) and Center of Biomedical Research in Network on Neurodegenerative Diseases (CIBERNED) (C.P.B.R.), Sant Joan d'Alacant University Hospital, Alicante, Spain; Department of Neurology (A.P.), Hospital Italiano, Buenos Aires, Argentina; Department of Infectious Diseases (C.P.B.R., A.A.P., I.R.C.) and Microbiology Department (M.L.), Vall d'Hebron University Hospital, Barcelona, Spain; and Division of Neurology (X.M.), University of Toronto, St Michael's Hospital, Toronto, Canada.
Autophagy
October 2016
kb Emory University, School of Medicine, Department of Microbiology and Immunology , Atlanta , GA , USA.
Mol Plant Microbe Interact
March 2012
Institute Of Genetics And Biophysics, A Buzzati-Traverso, CNR, Naples, Italy.
Here, we provide genetic and biochemical evidence indicating that the ability of Rhizobium etli bacteria to efficiently catabolize glutamine depends on its ability to produce reduced glutathione (l-γ-glutamyl-l-cysteinylglycine [GSH]). We find that GSH-deficient strains, namely a gshB (GSH synthetase) and a gor (GSH reductase) mutant, can use different amino acids, including histidine, alanine, and asparagine but not glutamine, as sole source of carbon, energy, and nitrogen. Moreover, l-buthionine(S,R)-sulfoximine, a GSH synthesis inhibitor, or diamide that oxidizes GSH, induced the same phenotype in the wild-type strain.
View Article and Find Full Text PDFMol Microbiol
April 2011
Molecular Microbiology, John Innes Centre, Norwich Research Park, Norwich NR4 7UH, UK.
Mutation of gltB (encoding glutamate oxoglutarate amidotransferase or GOGAT) in RU2307 increased the intracellular Gln:Glu ratio and inhibited amino acid transport via Aap and Bra. The mechanism probably involves global post-translational inhibition independent of Ntr. Transport was separately restored by increased gene expression of Aap or heterologous transporters.
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