Wang B, Fallon J F, Beachy P A
Howard Hughes Medical Institute, Department of Molecular Biology and Genetics, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
Cell. 2000 Feb 18;100(4):423-34. doi: 10.1016/s0092-8674(00)80678-9.
Ci/Gli zinc finger proteins mediate the transcriptional effects of Hedgehog protein signals. In Drosophila, Ci action as transcriptional repressor or activator is contingent upon Hedgehog-regulated, PKA-dependent proteolytic processing. We demonstrate that PKA-dependent processing of vertebrate Gli3 in developing limb similarly generates a potent repressor in a manner antagonized by apparent long-range signaling from posteriorly localized Sonic hedgehog protein. The resulting anterior/posterior Gli3 repressor gradient can be perturbed by mutations of Gli3 in human genetic syndromes or by misregulation of Gli3 processing in the chicken mutant talpid2, producing a range of limb patterning malformations. The high relative abundance and potency of Gli3 repressor suggest specialization of Gli3 and its products for negative Hedgehog pathway regulation.
Ci/Gli锌指蛋白介导刺猬蛋白信号的转录效应。在果蝇中,Ci作为转录抑制因子或激活因子的作用取决于刺猬蛋白调节的、蛋白激酶A(PKA)依赖性的蛋白水解加工过程。我们证明,在发育中的肢体中,脊椎动物Gli3的PKA依赖性加工过程同样以一种方式产生一种有效的抑制因子,这种方式受到来自后定位的音猬因子蛋白的明显远程信号的拮抗。由此产生的前后Gli3抑制因子梯度可因人类遗传综合征中Gli3的突变或鸡突变体talpid2中Gli3加工的失调而受到干扰,从而产生一系列肢体模式畸形。Gli3抑制因子的高相对丰度和效力表明Gli3及其产物在刺猬蛋白信号通路负调控方面具有特异性。