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Modeling, Substrate Docking, And Mutational Analysis Identify Residues Essential For The Function And Specificity Of A Eukaryotic Purine-Cytosine Ncs1 Transporter.

J Biol Chem.. 2012-10;  287(44):36792 - 36803
Emilia Krypotou, Vasiliki Kosti, Sotiris Amillis, Vassilios Myrianthopoulos, Emmanuel Mikros, and George Diallinas. Faculty of Biology, University of Athens, Panepistimiopolis, Athens 15784, Greece.
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Abstract

The recent elucidation of crystal structures of a bacterial member of the NCS1 family, the Mhp1 benzyl-hydantoin permease from Microbacterium liquefaciens, allowed us to construct and validate a three-dimensional model of the Aspergillus nidulans purine-cytosine/H(+) FcyB symporter. The model consists of 12 transmembrane α-helical, segments (TMSs) and cytoplasmic N- and C-tails. A distinct core of 10 TMSs is made of two intertwined inverted repeats (TMS1-5 and TMS6-10) that are followed by two additional TMSs. TMS1, TMS3, TMS6, and TMS8 form an open cavity that is predicted to host the substrate binding site. Based on primary sequence alignment, three-dimensional topology, and substrate docking, we identi... More

Keywords

Aspergillus; Kinetics; Membrane Transport; Purine; Transporters