Literature DB >> 19192393

Biochemical characterization of alanine racemase--a spore protein produced by Bacillus anthracis.

Shivani Kanodia1, Shivangi Agarwal, Priyanka Singh, Shivani Agarwal, Preeti Singh, Rakesh Bhatnagar.   

Abstract

Alanine racemase catalyzes the interconversion of L-alanine and D-alanine and plays a crucial role in spore germination and cell wall biosynthesis. In this study, alanine racemase produced by Bacillus anthracis was expressed and purified as a monomer in Escherichia coli and the importance of lysine 41 in the cofactor binding octapeptide and tyrosine 270 in catalysis was evaluated. The native enzyme exhibited an apparent K(m) of 3 mM for L-alanine, and a V(max) of 295 micromoles/min/mg, with the optimum activity occurring at 37 degrees C and a pH of 8-9. The activity observed in the absence of exogenous pyridoxal 5'-phosphate suggested that the cofactor is bound to the enzyme. Additionally, the UV-visible absorption spectra indicated that the activity was pH independece, of VV-visible absorption spectra suggests that the bound PLP exists as a protonated Schiff's base. Furthermore, the loss of activity observed in the apoenzyme suggested that bound PLP is required for catalysis. Finally, the enzyme followed non-competitive and mixed inhibition kinetics for hydroxylamine and propionate with a K(i) of 160 microM and 30 mM, respectively. [BMB reports 2009; 42(1): 47-52].

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Year:  2009        PMID: 19192393     DOI: 10.5483/bmbrep.2009.42.1.047

Source DB:  PubMed          Journal:  BMB Rep        ISSN: 1976-6696            Impact factor:   4.778


  3 in total

1.  A Standard Method To Inactivate Bacillus anthracis Spores to Sterility via Gamma Irradiation.

Authors:  Christopher K Cote; Tony Buhr; Casey B Bernhards; Matthew D Bohmke; Alena M Calm; Josephine S Esteban-Trexler; Melissa Hunter; Sarah E Katoski; Neil Kennihan; Christopher P Klimko; Jeremy A Miller; Zachary A Minter; Jerry W Pfarr; Amber M Prugh; Avery V Quirk; Bryan A Rivers; April A Shea; Jennifer L Shoe; Todd M Sickler; Alice A Young; David P Fetterer; Susan L Welkos; Joel A Bozue; Derrell McPherson; Augustus W Fountain; Henry S Gibbons
Journal:  Appl Environ Microbiol       Date:  2018-05-31       Impact factor: 4.792

2.  Structural and biochemical analyses of alanine racemase from the multidrug-resistant Clostridium difficile strain 630.

Authors:  Oluwatoyin A Asojo; Sarah K Nelson; Sara Mootien; Yashang Lee; Wanderson C Rezende; Daniel A Hyman; Monica M Matsumoto; Scott Reiling; Alan Kelleher; Michel Ledizet; Raymond A Koski; Karen G Anthony
Journal:  Acta Crystallogr D Biol Crystallogr       Date:  2014-06-29

3.  Characterization of Lactobacillus salivarius alanine racemase: short-chain carboxylate-activation and the role of A131.

Authors:  Jyumpei Kobayashi; Jotaro Yukimoto; Yasuhiro Shimizu; Taketo Ohmori; Hirokazu Suzuki; Katsumi Doi; Toshihisa Ohshima
Journal:  Springerplus       Date:  2015-10-24
  3 in total

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