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Guanylyl cyclases, catalyzing the production of cGMP from GTP, are classified as soluble and membrane forms . The membrane guanylyl cyclases, often termed guanylyl cyclases A through F, form a family of cell-surface receptors with a similar topographic structure: an extracellular ligand-binding domain, a single membrane-spanning domain, and an intracellular region that contains a protein kinase-like domain and a cyclase catalytic domain. GC-A and GC-B function as receptors for natriuretic peptides, they are also referred to as atrial natriuretic peptide receptor A (NPR1) and type B (NPR2, MIM 108961). Also see NPR3 (MIM 108962), which encodes a protein with only the ligand-binding transmembrane and 37-amino acid cytoplasmic domains. NPR1 is a membrane-bound guanylate cyclase that serves as the receptor for both atrial and brain natriuretic peptides (ANP (MIM 108780) and BNP (MIM 600295), respectively). Protein function: Receptor for the atrial natriuretic peptide NPPA/ANP and the brain natriuretic peptide NPPB/BNP which are potent vasoactive hormones playing a key role in cardiovascular homeostasis. Has guanylate cyclase activity upon binding of the ligand. [The UniProt Consortium]
Keywords:
Anti-GC-A, Anti-NPR1, Anti-ANPRA, Anti-NPR-A, Anti-ANP-A, Anti-ANPR-A, EC=4.6.1.2, Anti-Guanylate cyclase A, Anti-Atrial natriuretic peptide receptor 1, Anti-Atrial natriuretic peptide receptor type A, NPR1 Polyclonal Antibody
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