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Molecular characterization of Plasmodium falciparum S-adenosylmethionine synthetase

Authors :
Diarmuid Nicholson
Janice Y. Chou
Peter K. Chiang
David E. Lanar
Sandrine C. Soubes
Sean T. Prigge
John P. Scovill
Gangadharan Subramanian
Louis H. Miller
Margaret E. Chamberlin
Xin-zhuan Su
Source :
Biochemical Journal. 344:571-576
Publication Year :
1999
Publisher :
Portland Press Ltd., 1999.

Abstract

S-Adenosylmethionine (AdoMet) synthetase (SAMS: EC 2.5.1.6) catalyses the formation of AdoMet from methionine and ATP. We have cloned a gene for Plasmodium falciparum AdoMet synthetase (PfSAMS) (GenBank accession no. AF097923), consisting of 1209 base pairs with no introns. The gene encodes a polypeptide (PfSAMS) of 402 amino acids with a molecular mass of 44844 Da, and has an overall base composition of 67% A+T. PfSAMS is probably a single copy gene, and was mapped to chromosome 9. The PfSAMS protein is highly homologous to all other SAMS, including a conserved motif for the phosphate-binding P-loop, HGGGAFSGKD, and the signature hexapeptide, GAGDQG. All the active-site amino acids for the binding of ADP, Pi and metal ions are similarly preserved, matching entirely those of human hepatic SAMS and Escherichia coli SAMS. Molecular modelling of PfSAMS guided by the X-ray crystal structure of E. coli SAMS indicates that PfSAMS binds ATP/Mg2+ in a manner similar to that seen in the E. coli SAMS structure. However, the PfSAMS model shows that it can not form tetramers as does E. coli SAMS, and is probably a dimer instead. There was a differential sensitivity towards the inhibition by cycloleucine between the expressed PfSAMS and the human hepatic SAMS with Ki values of 17 and 10 mM, respectively. Based on phylogenetic analysis using protein parsimony and neighbour-joining algorithms, the malarial PfSAMS is closely related to SAMS of other protozoans and plants.

Details

ISSN :
14708728 and 02646021
Volume :
344
Database :
OpenAIRE
Journal :
Biochemical Journal
Accession number :
edsair.doi...........acc9f6cfcf134abead7dbdc0ad7a8a87
Full Text :
https://doi.org/10.1042/bj3440571