Cilia have high cAMP levels that are inhibited by Sonic Hedgehog-regulated calcium dynamics.

Moore, Bryn S; Stepanchick, Ann N; Tewson, Paul H; Hartle, Cassandra M; Zhang, Jin; Quinn, Anne Marie; Hughes, Thomas E; Mirshahi, Tooraj · Proc Natl Acad Sci U S A · 2016

basic_science · Level V

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Abstract

Protein kinase A (PKA) phosphorylates Gli proteins, acting as a negative regulator of the Hedgehog pathway. PKA was recently detected within the cilium, and PKA activity specifically in cilia regulates Gli processing. Using a cilia-targeted genetically encoded sensor, we found significant basal PKA activity. Using another targeted sensor, we measured basal ciliary cAMP that is fivefold higher than whole-cell cAMP. The elevated basal ciliary cAMP level is a result of adenylyl cyclase 5 and 6 activity that depends on ciliary phosphatidylinositol (3,4,5)-trisphosphate (PIP<sub>3</sub>), not stimulatory G protein (Gα<sub>s</sub>), signaling. Sonic Hedgehog (SHH) reduces ciliary cAMP levels, inhibits ciliary PKA activity, and increases Gli1. Remarkably, SHH regulation of ciliary cAMP and downstream signals is not dependent on inhibitory G protein (Gα<sub>i/o</sub>) signaling but rather Ca<sup>2+</sup> entry through a Gd<sup>3+</sup>-sensitive channel. Therefore, PIP<sub>3</sub> sustains high basal cAMP that maintains PKA activity in cilia and Gli repression. SHH activates Gli by inhibiting cAMP through a G protein-independent mechanism that requires extracellular Ca<sup>2+</sup> entry.

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