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1.
Indian J Biochem Biophys ; 2012 Jun; 49(3): 155-164
Artículo en Inglés | IMSEAR | ID: sea-140231

RESUMEN

Decarboxylation of amino acid is a key step for biosynthesis of several important cellular metabolites in the biological systems. This process is catalyzed by amino acid decarboxylases and most of them use pyridoxal-5'-phosphate (PLP) as a co-factor. PLP is bound to the active site of the enzyme by various interactions with the neighboring amino acid residues. In the present investigation, density functional theory (DFT) and real-time dynamics studies on both ligand-free and ligand-bound dopa decarboxylases (DDC) have been carried out in order to elucidate the factors responsible for facile decarboxylation and also for proper binding of PLP in the active site of the enzyme. It has been found that in the crystal structure Asp271 interacts with the pyridine nitrogen atom of PLP through H-bonding in both native and substrate-bound DDC. On the contrary, Thr246 is in close proximity to the oxygen of 3-OH of PLP pyridine ring only in the substrate-bound DDC. In the ligand-free enzyme, the distance between the oxygen atom of 3-OH group of PLP pyridine ring and oxygen atom of Thr246 hydroxyl group is not favorable for hydrogen bonding. Thus, present study reveals that hydrogen bonding with O3 of PLP with a hydrogen bond donor residue provided by the enzyme plays an important role in the decarboxylation process.


Asunto(s)
Dopa-Decarboxilasa/química , Dopa-Decarboxilasa/metabolismo , Modelos Moleculares , Simulación de Dinámica Molecular , Conformación Proteica , Fosfato de Piridoxal/química , Fosfato de Piridoxal/metabolismo , Relación Estructura-Actividad , Treonina/química , Treonina/metabolismo
2.
Benha Medical Journal. 2004; 21 (1): 113-120
en Inglés | IMEMR | ID: emr-172731

RESUMEN

In platelets, the major stimulatory second messengers are inositol 1, 4, 5 triphosphate [IP3] and 1,2-diacyiglycerol [DAG] produced upon the hydrolysis of phosphoinositides by phosphoinositide-speciftc phospholpase C [P1-PLC]. Pyridoxal-5-phosphate [PLP] is well known as a potent inhibitor of platelet aggregation. The mechanism[s] of its inhibitory action remains to be elucidated. P1-PLC was assayed and the effect of PLP on the assay was examined in an attempt to explain the nature of the inhibitory effect of PLP on platelet function. The assay was satisfactory and was inhibited by PLP with full inhibition at 10mMPLP


Asunto(s)
Fosfato de Piridoxal/química , Inositol 1,4,5-Trifosfato/química , Diglicéridos/química , Agregación Plaquetaria/efectos de los fármacos
3.
Indian J Biochem Biophys ; 1991 Oct-Dec; 28(5-6): 352-7
Artículo en Inglés | IMSEAR | ID: sea-27615

RESUMEN

The circular dichroism has been used to evaluate the effect of mutation on the environment of the pyridoxal phosphate coenzyme in the active site of the beta-subunit in the tryptophan synthase alpha 2 beta 2 complex from Salmonella typhimurium. Seven mutant forms of the alpha 2 beta 2-complex with single amino acid replacements at residues 87, 109, 188, 306, and 350 of the beta-subunit have been prepared by site-directed mutagenesis, purified to homogeneity, and characterized by absorption and circular dichroism spectroscopy. Since the wild type and mutant alpha 2 beta 2 complexes all exhibit positive circular dichroism in the coenzyme absorption band, pyridoxal phosphate must bind asymmetrically in the active site of these enzymes. However, the coenzyme may have an altered orientation or active site environment in five of the mutant enzymes that display less intense ellipticity bands. The mutant enzyme in which lysine 87 is replaced by threonine has very weak ellipticity at 400 nm. Since lysine 87 forms a Schiff base with pyridoxal phosphate in the wild type enzyme, our results demonstrate the importance of the Schiff base linkage for rigid or asymmetric binding. Although the mutant enzymes display spectra in the presence of L-serine that differ from that of the wild type enzyme, addition of alpha-glycerol 3-phosphate converts the spectra of two of the mutant enzymes to that of the wild type enzyme. We conclude that this alpha-subunit ligand may produce a conformational change in the alpha-subunit that is transmitted to the mutant beta-subunits and partially corrects conformational alterations in the mutant enzymes.


Asunto(s)
Secuencia de Bases , Sitios de Unión , Dicroismo Circular , Coenzimas/química , ADN Bacteriano/genética , Datos de Secuencia Molecular , Mutagénesis Sitio-Dirigida , Conformación Proteica , Fosfato de Piridoxal/química , Salmonella typhimurium/enzimología , Triptófano Sintasa/química
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