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PMID: 41942428 Published · epublish English

Structural insights into single-pass transmembrane receptor GC-A activation by distinct antihypertensive antibodies.

Nature communications ·Vol. 17 ·No. 1 ·2026-04-06

Liu S, Manzo O, Wang J, Zhu L, Xiao F, Su YC, Kurre D, Liu W, Miao Y, Di Lorenzo A, Huang XY

Abstract

The single-pass transmembrane receptor guanylyl cyclase A (GC-A), also known as natriuretic peptide receptor A (NPR-A) or NPR1, regulates blood pressure through vasodilation and natriuresis, making it a promising therapeutic target for hypertension and heart failure. We describe two monoclonal antibodies, XX16 and REGN5308, that differentially activate GC-A. Using cryo-electron microscopy and molecular dynamics simulations, we reveal that XX16 stabilizes GC-A in an active conformation even without its ligand ANP, whereas REGN5308 requires ANP to fully promote receptor activation. Both antibodies increase ANP binding affinity to GC-A and enhance GC-A-mediated cGMP signaling, although XX16 exerts a stronger stabilizing influence on ATP and GTP binding. In a mouse model of obesity-induced hypertension, XX16 treatment significantly reduces blood pressure, underscoring its therapeutic potential. These findings outline the structural and functional basis of GC-A activation by antibody positive allosteric modulators, offering strategies for durable antihypertensive therapies and improved management of cardiovascular diseases.

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Article Info
Journal
Nature communications
Abbr.
Nat Commun
ISSN
2041-1723
Published
2026-04-06
Language
English
Region
England
NLM ID
101528555
PMCID
PMC13230927
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