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    题名 作者 年代 出处 被引量
1Inhibition of bacterial cell division protein FtsZ by cinnamaldehyde 显示文摘Prerna D Sanjay S Anirban B 2007Biochemical Pharmacology2007,,74:1
2Synthesis and properties of semi-interpenetrating network based on styrene-aerylonitrile-vinyl acetate terpolymer and zinc acrylate 显示文摘PRERNA S SRIVASTAVA A K 1995Polymer Gels and Networks1995,3,3:1
3Biotechnology of microbial xylanase: enzymology, molecular biology, and appllication显示文摘Subramaniyan S Prerna P 2002Crit Rev Biotechnol2002,22,:1
4Mouse models of prostate cancer显示文摘Prerna S Nicole SA 1999Oneo-gene1999,18,5:1
5Isolation and Characterization of Nickel Uptake by Nickel Resistant Bacterial Isolate (NiRBI)显示文摘Objective Bioremediation technology has gained importance because microbes could be the convenient source of bio-absorption/bioaccumulation of metals from effluent streams. Methods The nickel-resistant bacterial isolates (NiRBI) were selected from various bacterial isolates from industrial effluent and grown in nutrient broth containing different concentrations of nickel sulfate (0.3-3.0 mmol/L) and their capability of accumulating metal from the medium. Results Well-defined growth of NiRBI was observed in the medium containing up to 2.5 mmol/L of nickel. The isolate was identified using 16S rRNA and closely related to Pseudomonas fragi. Maximum accumulation of nickel (0.59 mg/g dry weight of bacterial cells) was observed when NiRBI was grown in media containing 2 mmol/L of nickel. The protein profile of the NiRBI cellular extract by SDS-PAGE showed two metal stress-induced proteins of molecular weight 48 KD and 18 KD with a simultaneous down regulation of four proteins of 46.7 KD, 42.2 KD, 19.7 KD, and 4.0 KD. Conclusion 48 KD and 18 KD proteins play a role in metal resistance mechanism by NiRBI.JAGDISH S PATEL PRERNA C PATEL KIRAN KALIA 2006Biomedical and Environmental Sciences2006,19,4:0
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