Site-directed Mutagenesis and HPLC Analysis of Inosine-Uridine Nucleoside Hydrolase RihC of <italic>Escherichia coli</italic>

dc.contributor.advisor Farone, Mary en_US
dc.contributor.author Arivett, Brock Aaron en_US
dc.contributor.committeemember Farone, Anthony en_US
dc.contributor.committeemember Kline, Paul en_US
dc.contributor.department Biology en_US
dc.date.accessioned 2014-12-19T19:03:37Z
dc.date.available 2014-12-19T19:03:37Z
dc.date.issued 2014 en_US
dc.description.abstract Recycling of purine and pyrimidine bases is critical in the metabolism of many organisms. While the archetype enzyme, Inosine-Uridine Nucleoside Hydrolase (IU-NH) of <italic>Crithidia fasciculata</italic>, is well studied because of its potential as a therapeutic target, other enzymes have not been well characterized, including ribonucleoside hydrolase C (RihC) of <italic>Escherichia coli</italic>. This study examined the effects of amino acid changes at conserved residues of RihC that have previously been shown to be critical for functioning of a similar enzyme in the protozoan <italic>C. fasciculata</italic>. Mutagenized RihC proteins, purified to greater than 95% purity, showed significant differences in kinetics when assayed by HPLC for uridine and inosine hydrolysis. Changes at four amino acid residues resulted in reductions in velocity when compared to the wild type enzyme for hydrolysis of uridine. These results support the critical roles for these residues for enzyme activity. en_US
dc.description.degree M.S. en_US
dc.identifier.uri http://jewlscholar.mtsu.edu/handle/mtsu/4338
dc.publisher Middle Tennessee State University en_US
dc.subject Malaria en_US
dc.subject Neglected tropical diseases en_US
dc.subject Nucleoside hydrolase en_US
dc.subject Transition-state inhibitors en_US
dc.subject.umi Biochemistry en_US
dc.subject.umi Chemistry en_US
dc.subject.umi Microbiology en_US
dc.thesis.degreegrantor Middle Tennessee State University en_US
dc.thesis.degreelevel Masters en_US
dc.title Site-directed Mutagenesis and HPLC Analysis of Inosine-Uridine Nucleoside Hydrolase RihC of <italic>Escherichia coli</italic> en_US
dc.type Thesis en_US
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