Nucleotides and their hydrolytic products act through specific nucleotide receptors which are divided in: ionotropic P2X and metabotropic P2Y receptors coupled to G proteins. The P2Y receptor family consists of at least eight human subtypes (P2Y1,2,4,6,11-14), that are activated by either or both adenine and uracil nucleotides [1]. Activation of P2Y receptors generally results in the stimulation of phospholipase C (PLC), which generates inositol phosphates and diacylglycerol from phosphatidyl inositol(4,5)bisphosphate, leading to the rise in intracellular calcium and activation of protein kinase C. According to a dendrogram relating sequence homology, the P2Y1, P2Y2, P2Y4, P2Y6, and P2Y11 receptors form a cluster of preferentially Gq-coup...
The potency of nucleotide antagonists at P2Y1 receptors was enhanced by replacing the ribose moiety ...
The potency of nucleotide antagonists at P2Y1 receptors was enhanced by replacing the ribose moiety ...
P2 purinoceptors are divided into two families, ionotropic receptors (P2X) and metabotropic receptor...
Nucleotides and their hydrolytic products act through specific nucleotide receptors which are divide...
Nucleotides and their hydrolytic products act through specific nucleotide receptors which are divide...
Nucleotides and their hydrolytic products act through specific nucleotide receptors which are divide...
Nucleotides and their hydrolytic products act through specific nucleotide receptors which are divide...
Nucleotides and their hydrolytic products act through specific nucleotide receptors which are divide...
Background. To investigate the effect of conformational factors of the ribose-modified moiety in ATP...
Background. To investigate the effect of conformational factors of the ribose-modified moiety in ATP...
Background. To investigate the effect of conformational factors of the ribose-modified moiety in ATP...
Background. To investigate the effect of conformational factors of the ribose-modified moiety in ATP...
The P2 purinergic receptors are a major class of receptors in the human body activated by nucleotide...
The P2 purinergic receptors are a major class of receptors in the human body activated by nucleotide...
The P2 purinergic receptors are a major class of receptors in the human body activated by nucleotide...
The potency of nucleotide antagonists at P2Y1 receptors was enhanced by replacing the ribose moiety ...
The potency of nucleotide antagonists at P2Y1 receptors was enhanced by replacing the ribose moiety ...
P2 purinoceptors are divided into two families, ionotropic receptors (P2X) and metabotropic receptor...
Nucleotides and their hydrolytic products act through specific nucleotide receptors which are divide...
Nucleotides and their hydrolytic products act through specific nucleotide receptors which are divide...
Nucleotides and their hydrolytic products act through specific nucleotide receptors which are divide...
Nucleotides and their hydrolytic products act through specific nucleotide receptors which are divide...
Nucleotides and their hydrolytic products act through specific nucleotide receptors which are divide...
Background. To investigate the effect of conformational factors of the ribose-modified moiety in ATP...
Background. To investigate the effect of conformational factors of the ribose-modified moiety in ATP...
Background. To investigate the effect of conformational factors of the ribose-modified moiety in ATP...
Background. To investigate the effect of conformational factors of the ribose-modified moiety in ATP...
The P2 purinergic receptors are a major class of receptors in the human body activated by nucleotide...
The P2 purinergic receptors are a major class of receptors in the human body activated by nucleotide...
The P2 purinergic receptors are a major class of receptors in the human body activated by nucleotide...
The potency of nucleotide antagonists at P2Y1 receptors was enhanced by replacing the ribose moiety ...
The potency of nucleotide antagonists at P2Y1 receptors was enhanced by replacing the ribose moiety ...
P2 purinoceptors are divided into two families, ionotropic receptors (P2X) and metabotropic receptor...