Desert hedgehog-primary cilia cross talk shapes mitral valve tissue by organizing smooth muscle actin

沙漠刺猬蛋白-初级纤毛相互作用通过组织平滑肌肌动蛋白来塑造二尖瓣组织。

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作者:Diana Fulmer ,Katelynn A Toomer ,Janiece Glover ,Lilong Guo ,Kelsey Moore ,Reece Moore ,Rebecca Stairley ,Cortney Gensemer ,Sameer Abrol ,Mary Kate Rumph ,Faith Emetu ,Joshua H Lipschutz ,Colin McDowell ,Justin Bian ,Christina Wang ,Tyler Beck ,Andy Wessels ,Marie-Ange Renault ,Russell A Norris

Abstract

Non-syndromic mitral valve prolapse (MVP) is the most common heart valve disease affecting 2.4% of the population. Recent studies have identified genetic defects in primary cilia as causative to MVP, although the mechanism of their action is currently unknown. Using a series of gene inactivation approaches, we define a paracrine mechanism by which endocardially-expressed Desert Hedgehog (DHH) activates primary cilia signaling on neighboring valve interstitial cells. High-resolution imaging and functional assays show that DHH de-represses smoothened at the primary cilia, resulting in kinase activation of RAC1 through the RAC1-GEF, TIAM1. Activation of this non-canonical hedgehog pathway stimulates α-smooth actin organization and ECM remodeling. Genetic or pharmacological perturbation of this pathway results in enlarged valves that progress to a myxomatous phenotype, similar to valves seen in MVP patients. These data identify a potential molecular origin for MVP as well as establish a paracrine DHH-primary cilium cross-talk mechanism that is likely applicable across developmental tissue types. Keywords: Desert hedgehog signaling; Myxomatous degeneration; Primary cilia; Valve development.

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