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  • Pituitary Adenylate Cyclase Activating Polypeptide (PACAP) Pathway Is Induced by Mechanical Load and Reduces the Activity of Hedgehog Signaling in Chondrogenic Micromass Cell Cultures.

Pituitary Adenylate Cyclase Activating Polypeptide (PACAP) Pathway Is Induced by Mechanical Load and Reduces the Activity of Hedgehog Signaling in Chondrogenic Micromass Cell Cultures.

International journal of molecular sciences (2015-08-01)
Tamás Juhász, Eszter Szentléleky, Csilla Szűcs Somogyi, Roland Takács, Nóra Dobrosi, Máté Engler, Andrea Tamás, Dóra Reglődi, Róza Zákány
要旨

Pituitary adenylate cyclase activating polypeptide (PACAP) is a neurohormone exerting protective function during various stress conditions either in mature or developing tissues. Previously we proved the presence of PACAP signaling elements in chicken limb bud-derived chondrogenic cells in micromass cell cultures. Since no data can be found if PACAP signaling is playing any role during mechanical stress in any tissues, we aimed to investigate its contribution in mechanotransduction during chondrogenesis. Expressions of the mRNAs of PACAP and its major receptor, PAC1 increased, while that of other receptors, VPAC1, VPAC2 decreased upon mechanical stimulus. Mechanical load enhanced the expression of collagen type X, a marker of hypertrophic differentiation of chondrocytes and PACAP addition attenuated this elevation. Moreover, exogenous PACAP also prevented the mechanical load evoked activation of hedgehog signaling: protein levels of Sonic and Indian Hedgehogs and Gli1 transcription factor were lowered while expressions of Gli2 and Gli3 were elevated by PACAP application during mechanical load. Our results suggest that mechanical load activates PACAP signaling and exogenous PACAP acts against the hypertrophy inducing effect of mechanical load.

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Sigma-Aldrich
モノクロナール抗β-アクチン マウス宿主抗体, clone AC-15, ascites fluid
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1,9-ジメチル-メチレンブルー 塩化亜鉛複塩, Dye content 80 %
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モノクロナール抗コラーゲン, X型 マウス宿主抗体, clone COL-10, ascites fluid
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Anti-GLI2 antibody produced in rabbit, affinity isolated antibody, buffered aqueous solution
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ANTI-SMO antibody produced in mouse, clone 2D10, purified immunoglobulin, buffered aqueous solution