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Spare guanylyl cyclase NO receptors ensure high NO sensitivity in the vascular system
Evanthia Mergia, Andreas Friebe, Oliver Dangel, Michael Russwurm, Doris Koesling
Evanthia Mergia, Andreas Friebe, Oliver Dangel, Michael Russwurm, Doris Koesling
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Research Article Vascular biology

Spare guanylyl cyclase NO receptors ensure high NO sensitivity in the vascular system

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Abstract

In the vascular system, the receptor for the signaling molecule NO, guanylyl cyclase (GC), mediates smooth muscle relaxation and inhibition of platelet aggregation by increasing intracellular cyclic GMP (cGMP) concentration. The heterodimeric GC exists in 2 isoforms (α1-GC, α2-GC) with indistinguishable regulatory properties. Here, we used mice deficient in either α1- or α2-GC to dissect their biological functions. In platelets, α1-GC, the only isoform present, was responsible for NO-induced inhibition of aggregation. In aortic tissue, α1-GC, as the major isoform (94%), mediated vasodilation. Unexpectedly, α2-GC, representing only 6% of the total GC content in WT, also completely relaxed α1-deficient vessels albeit higher NO concentrations were needed. The functional impact of the low cGMP levels produced by α2-GC in vivo was underlined by pronounced blood pressure increases upon NO synthase inhibition. As a fractional amount of GC was sufficient to mediate vasorelaxation at higher NO concentrations, we conclude that the majority of NO-sensitive GC is not required for cGMP-forming activity but as NO receptor reserve to increase sensitivity toward the labile messenger NO in vivo.

Authors

Evanthia Mergia, Andreas Friebe, Oliver Dangel, Michael Russwurm, Doris Koesling

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Figure 2

Analysis of GC isoform content in α-KO mice.

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Analysis of GC isoform content in α-KO mice.
(A) GC subunit content in b...
(A) GC subunit content in brain and lung homogenates analyzed with antibodies against the different subunits (α1, α2, and β1) and quantified with respect to the subunit amount in WT lung (100%; n = 4 of each genotype). (B) Cyclic GMP-forming activity in brain and lung homogenates in the presence of DEA-NO (100 μM) was determined as outlined in detail in Methods (n = 5 of each genotype).

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ISSN: 0021-9738 (print), 1558-8238 (online)

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