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Rajakumar Govindasamy Thiruvengadam Muthu Mydhili Govindarasu Gomathi Thandapani Chung Ill-Min 《Bioprocess and biosystems engineering》2018,41(1):21-30
Bioprocess and Biosystems Engineering - Bio-mediated synthesis of zinc oxide nanoparticles (ZnO NPs) was carried out by utilizing the reducing and capping potential of Andrographis paniculata leaf... 相似文献
164.
Fisher Z Hernandez Prada JA Tu C Duda D Yoshioka C An H Govindasamy L Silverman DN McKenna R 《Biochemistry》2005,44(4):1097-1105
In the catalysis of the hydration of carbon dioxide and dehydration of bicarbonate by human carbonic anhydrase II (HCA II), a histidine residue (His64) shuttles protons between the zinc-bound solvent molecule and the bulk solution. To evaluate the effect of the position of the shuttle histidine and pH on proton shuttling, we have examined the catalysis and crystal structures of wild-type HCA II and two double mutants: H64A/N62H and H64A/N67H HCA II. His62 and His67 both have their side chains extending into the active-site cavity with distances from the zinc approximately equivalent to that of His64. Crystal structures were determined at pH 5.1-10.0, and the catalysis of the exchange of (18)O between CO(2) and water was assessed by mass spectrometry. Efficient proton shuttle exceeding a rate of 10(5) s(-)(1) was observed for histidine at positions 64 and 67; in contrast, relatively inefficient proton transfer at a rate near 10(3) s(-)(1) was observed for His62. The observation, in the crystal structures, of a completed hydrogen-bonded water chain between the histidine shuttle residue and the zinc-bound solvent does not appear to be required for efficient proton transfer. The data suggest that the number of intervening water molecules between the donor and acceptor supporting efficient proton transfer in HCA II is important, and furthermore suggest that a water bridge consisting of two intervening water molecules is consistent with efficient proton transfer. 相似文献
165.
Kirill Salewskij Theresa GrossThebing Elizabeth IngSimmons Binyamin Duethorn Bettina Rieger Rui Fan Rui Chen Niraimathi Govindasamy Heike Brinkmann Ludmila Kremer Nannette KuempelRink Karina Mildner Dagmar Zeuschner Martin Stehling Marion Dejosez Thomas P Zwaka Hans R Schler Karin B Busch Juan M Vaquerizas Ivan Bedzhov 《EMBO reports》2021,22(11)
During implantation, the murine embryo transitions from a “quiet” into an active metabolic/proliferative state, which kick‐starts the growth and morphogenesis of the post‐implantation conceptus. Such transition is also required for embryonic stem cells to be established from mouse blastocysts, but the factors regulating this process are poorly understood. Here, we show that Ronin plays a critical role in the process by enabling active energy production, and the loss of Ronin results in the establishment of a reversible quiescent state in which naïve pluripotency is promoted. In addition, Ronin fine‐tunes the expression of genes that encode ribosomal proteins and is required for proper tissue‐scale organisation of the pluripotent lineage during the transition from blastocyst to egg cylinder stage. Thus, Ronin function is essential for governing the metabolic capacity so that it can support the pluripotent lineage’s high‐energy demands for cell proliferation and morphogenesis. 相似文献
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Antibiotic resistance to clinically employed beta-lactam antibiotics currently poses a very serious threat to the clinical community. The origin of this resistance is the expression of several beta-lactamases that effectively hydrolyze the amide bond in beta-lactam compounds. These beta-lactamases are classified into two major categories: serine beta-lactamases and metallo-beta-lactamases. The metalloenzymes use one or two zinc ions in their active sites to catalyze the hydrolysis of all classes of beta-lactam antibiotics, including carbapenems. As there is no clinically useful inhibitor for the metallo-beta-lactamases, it is important to understand the mechanism by which these enzymes catalyze the hydrolysis of antibiotics. In this regard, the development of synthetic analogues will be very useful in understanding the mechanism of action of metallo-beta-lactamases. This review highlights some important contributions made by various research groups in the area of synthetic analogues of metallo-beta-lactamases, with major emphasis on the role of dinuclear Zn(II) complexes in the hydrolysis of beta-lactam antibiotics. 相似文献
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M. Senthilkumar V. Govindasamy P. Dureja K. Annapurna 《Journal of plant biochemistry and biotechnology.》2007,16(2):131-134
Culture supernatant of soybean nodule endophytic bacterium Paenibacillus sp strain HKA-15 showed the antifungal activity against Rhizoctonia bataticola, the causative agent of charcoal rot disease in soybean. The activity was detected only during the on set of stationary phase (24h post inoculation) in potato dextrose broth. The culture filtrate was extracted with nbutanol, resolved into two compounds by hydrophobic interaction column (Sephadex LH-20) chromatography and purified by reverse phase HPLC. Bioactive fractions collected from preparative HPLC were characterized as cyclic peptide and depsipeptide. No loss of activity was recorded with these metabolites when exposed to proteinase K, glycerol (50%), sodium dodecyl sulphate (1%), triton X-100 (1%) and wide pH range. 相似文献