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Kaila, P.

Publications and source records attributed to Kaila, P..

2 recordsLinked to original sources

A glucanotransferase that uses two sub-sites and four catalytic aspartates/glutamates to disproportionate oligosaccharides ranging in length from maltotriose to starch

PF0272 (PfuAmyGT) from Pyrococcus furiosus is a 656 residues-long, homodimeric, three-domain GH57 glycoside hydrolase [homologous to TLGT from Thermococcus litoralis (PDB ID: 1K1X)]. It is proposed to be either an -amylase (EC 3.2.1.1), or a 4--glucanotransferase (EC 2.4.1.25). We demonstrate that PfuAmyGT is an exo-amylase-cum-glucanotransferase capable of transferring glucose, and dis-proportionating oligosaccharides, by excising glucose from malto-oligosaccharides (ranging in length from maltotriose to amylose/starch), and transferring it to malto-oligosaccharides (ranging in length from glucose to maltoheptaose and, possibly, even longer lengths). Convention holds that glucanotransferases transfer sugars through the serial and alternating binding of donors and acceptors to the same site, with covalent retention of excised sugars between such bindings. We present evidence of multiple behaviors in PfuAmyGT that challenge this view: (i) Production of free glucose, indicating scope for release of excised glucose; (ii) Higher activity with longer donors, indicating processivity; (iii) Accelerated activity with shorter acceptors, indicating a dependence upon rapid acceptor turnover; and (iv) Evidence of four catalytic glutamates/aspartates (E131, D222, E224, D362), indicating possible separation of excision and ligation functions. These behaviours collectively indicate the binding of donors and acceptors to separate sub-sites that have different substrate length preferences, supporting our own previous proposal regarding separate tunnel (internal) and groove (surface) binding sites. Although PfuAmyGTs mechanism of function remains to be fully elucidated, this paper definitively demonstrate coupling of exo-amylase and glucanotransferase functions involving separate sub-sites for donor and acceptor binding.

biochemistry↗

Differences in the activities of domain-swapped chimeras of two homologous GH57 glucanotransferases suggest that a glucan-binding DUF could influence donor substrate specificity

Five enzymes of the archaeal hyperthermophilic family of disproportionating GH57 4--glucanotransferases have been studied till date. Our focus here lies upon three homologous members of this family: (i) PfuAmyGT from Pyrococcus furiosus (PF0272), (ii) TonAmyGT from Thermococcus onnurenius (B6YUX8), and (iii) TliAmyGT (TLGT) from Thermococcus litoralis (O32462). The polypeptide chain of each of these enzymes is approximately 655 residues long, folded into three distinct domains (1, 2 and 3), and assembled into a homodimer. Domain 1 is a beta/alpha barrel containing an aspartate known to function as a catalytic nucleophile in TLGT. Domain 2 (which is helical) and domain 3 (made up of beta sheets) are thought to be domains of unknown function (or DUFs). In PfuAmyGT and TonAmyGT, we have recently identified a catalytically-important aspartate upon a loop in domain 2. In PfuAmyGT, we demonstrate the presence of two additional catalytically-important (glutamate) residues in domain 1, in a companion paper. In this paper, our focus lies upon domain 3 which hosts a second binding site (SBS) for a glucan, at its domain-domain interface with domain 2. Using strategies involving studies of both (a) domains (or pairs of contiguous domains) extracted from PfuAmyGT, and (b) chimeric three-domain enzymes recombining analogous domains between PfuAmyGT and TonAmyGT, we demonstrate that domain 3 determines the choice of the preferred glucan that acts as a donor in the glucan transfer reaction.

biochemistry↗