跳转至内容
Merck
CN
  • SMO-M2 mutation does not support cell-autonomous Hedgehog activity in cerebellar granule cell precursors.

SMO-M2 mutation does not support cell-autonomous Hedgehog activity in cerebellar granule cell precursors.

Scientific reports (2019-12-25)
Marialaura Petroni, Maria Sahùn Roncero, Valentina Ramponi, Francesca Fabretti, Vittoria Nicolis Di Robilant, Marta Moretti, Vincenzo Alfano, Alessandro Corsi, Simone De Panfilis, Maria Giubettini, Stefano Di Giulio, Carlo Capalbo, Francesca Belardinilli, Anna Coppa, Francesca Sardina, Valeria Colicchia, Flaminia Pedretti, Paola Infante, Beatrice Cardinali, Alessandra Tessitore, Gianluca Canettieri, Enrico De Smaele, Giuseppe Giannini
摘要

Growth and patterning of the cerebellum is compromised if granule cell precursors do not properly expand and migrate. During embryonic and postnatal cerebellar development, the Hedgehog pathway tightly regulates granule cell progenitors to coordinate appropriate foliation and lobule formation. Indeed, granule cells impairment or defects in the Hedgehog signaling are associated with developmental, neurodegenerative and neoplastic disorders. So far, scant and inefficient cellular models have been available to study granule cell progenitors, in vitro. Here, we validated a new culture method to grow postnatal granule cell progenitors as hedgehog-dependent neurospheres with prolonged self-renewal and ability to differentiate into granule cells, under appropriate conditions. Taking advantage of this cellular model, we provide evidence that Ptch1-KO, but not the SMO-M2 mutation, supports constitutive and cell-autonomous activity of the hedgehog pathway.

材料
产品编号
品牌
产品描述

Sigma-Aldrich
L -谷氨酰胺 溶液, 200 mM, solution, sterile-filtered, BioXtra, suitable for cell culture
Sigma-Aldrich
抗-c-Myc 兔抗, ~0.5 mg/mL, affinity isolated antibody, buffered aqueous solution
Sigma-Aldrich
抗微管蛋白抗体,βIII亚型,计算机X线体层,克隆TU-20(类似于TUJ1), ascites fluid, clone TU-20 (Similar to TUJ1), Chemicon®