%0 Journal Article %T Exploration of Sitagliptin as a potential inhibitor for the M1 Alanine aminopeptidase enzyme in Plasmodium falciparum using computational docking %A Mohana Krishnamoorthy %A Anant Achar %J Bioinformation %D 2013 %I %X Plasmodium falciparum has limited capacity for de novo amino acid synthesis and rely on degradation of host hemoglobin to maintain protein metabolism and synthesis of proteins. M1 alanine aminopeptidase enzyme of the parasite involved in the terminal degradation of host hemoglobin was subjected to in silico screening with low molecular weight protease inhibitors. The km (avg) of the enzyme M1 alanine aminopeptidase for the substrate DL ¨C Alanine ¦Â Napthylamide Hydrochloride was estimated as 322.05¦ÌM. The molecular interactions between the enzyme and the substrate and the mechanism of enzyme action were analyzed which paved way for inhibition strategies. Among all the inhibitors screened, Sitagliptin was found to be most potent inhibitor with ki of 0.152 ¦ÌM in its best orientation whereas the ki(avg) was 2.0055 ¦ÌM. The ki of Sitagliptin is lower than the km of M1 alanine aminopeptidase for the substrate DL ¨C Alanine ¦Â Napthylamide Hydrochloride (322.05 ¦ÌM) and Ki of the known inhibitor Bestatin. Therefore Sitagliptin may serve as a potent competitive inhibitor of the enzyme M1 alanine aminopeptidase of Plasmodium falciparum. %K Plasmodium falciparum %K M1 alanine aminopeptidase %K Computational Docking %K DL ¨C Alanine ¦Â Napthylamide Hydrochloride %K Bestatin and Sitagliptin. %U http://www.bioinformation.net/009/97320630009293.htm