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Elongation factor 2 as a target for selective inhibition of protein synthesis in vitro by the novel aromatic biasamidine
Authors:Gajko-Galicka  Anna  Bielawski  Krzysztof  Sredzinska  Krystyna  Bielawski  Anna  Gindzienski  Andrzej
Affiliation:Department of Medical Chemistry, Medical Academy of Bialystok, Poland. angajko@amb.ac.bialystok.pl
Abstract:
By the formation of cGMP the NO-sensitive guanylyl cyclase plays a key role within the NO/cGMP signaling cascade involved in vascular regulation and neurotransmission. The prosthetic heme group of the enzyme acts as the NO sensor, and binding of NO induces conformational changes leading to an up to 200-fold activation of the enzyme. The unexpected fast dissociation half-life of NO of a few seconds is fast enough to account for the deactivation of the enzyme in biological systems. YC-1 and its analogues acting as NO sensitizers uncovered a new pharmacologically and conceivably physiologically relevant regulatory principle of the enzyme.Two existing isoforms of the heterodimeric guanylyl cyclase (agr1beta1, agr2beta1) are known that are functionally indistinguishable. Up to now, the NO-sensitive guanylyl cyclase has been considered as a soluble enzyme. However, recent evidence about the agr2beta1 isoform interacting with a PDZ domain of the postsynaptic scaffold protein PSD-95 suggests that the agr2 subunit directs a membrane association of this isoform. The interaction with PSD-95 locates the agr2beta1 isoform in close proximity to the NO-generating NO synthase thereby enabling the NO sensor to respond to locally raised NO concentrations.
Keywords:nitric oxide  NO-sensitive guanylyl cyclase  PDZ domain  cGMP
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