The molecular basis of the genesis of basal tone in internal anal sphincter

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Abstract

Smooth muscle sphincters exhibit basal tone and control passage of contents through organs such as the gastrointestinal tract; loss of this tone leads to disorders such as faecal incontinence. However, the molecular mechanisms underlying this tone remain unknown. Here, we show that deletion of myosin light-chain kinases (MLCK) in the smooth muscle cells from internal anal sphincter (IAS-SMCs) abolishes basal tone, impairing defecation. Pharmacological regulation of ryanodine receptors (RyRs), L-type voltage-dependent Ca 2+ channels (VDCCs) or TMEM16A Ca 2+ -activated Cl - channels significantly changes global cytosolic Ca 2+ concentration ([Ca 2+ ] i) and the tone. TMEM16A deletion in IAS-SMCs abolishes the effects of modulators for TMEM16A or VDCCs on a RyR-mediated rise in global [Ca 2+ ] i and impairs the tone and defecation. Hence, MLCK activation in IAS-SMCs caused by a global rise in [Ca 2+ ] i via a RyR-TMEM16A-VDCC signalling module sets the basal tone. Targeting this module may lead to new treatments for diseases like faecal incontinence.

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APA

Zhang, C. H., Wang, P., Liu, D. H., Chen, C. P., Zhao, W., Chen, X., … Zhu, M. S. (2016). The molecular basis of the genesis of basal tone in internal anal sphincter. Nature Communications, 7. https://doi.org/10.1038/ncomms11358

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