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Specific and redundant functions of Gli2 and Gli3 zinc finger genes in skeletal patterning and development

胶质2 生物 胶质3 刺猬 脊索 音猬因子 印度刺猬 刺猬信号通路 修补 细胞生物学 软骨发生 软骨内骨化 体节 解剖 转录因子 遗传学 信号转导 抑制因子 基因 胚胎发生 软骨 胚胎 干细胞
作者
Rong Mo,Anne Marie Freer,Dawn Zinyk,Michael A. Crackower,Jacques L. Michaud,Henry H. Heng,Ki Wai Chik,Xiaomei Shi,Lap‐Chee Tsui,Shuk Han Cheng,Alexandra L. Joyner,Chi‐Chung Hui
出处
期刊:Development [The Company of Biologists]
卷期号:124 (1): 113-123 被引量:609
标识
DOI:10.1242/dev.124.1.113
摘要

The correct patterning of vertebrate skeletal elements is controlled by inductive interactions. Two vertebrate hedgehog proteins, Sonic hedgehog and Indian hedgehog, have been implicated in skeletal development. During somite differentiation and limb development, Sonic hedgehog functions as an inductive signal from the notochord, floor plate and zone of polarizing activity. Later in skeletogenesis, Indian hedgehog functions as a regulator of chondrogenesis during endochondral ossification. The vertebrate Gli zinc finger proteins are putative transcription factors that respond to Hedgehog signaling. In Drosophila, the Gli homolog cubitus interruptus is required for the activation of hedgehog targets and also functions as a repressor of hedgehog expression. We show here that Gli2 mutant mice exhibit severe skeletal abnormalities including cleft palate, tooth defects, absence of vertebral body and intervertebral discs, and shortened limbs and sternum. Interestingly, Gli2 and Gli3 (C.-c. Hui and A. L. Joyner (1993). Nature Genet. 3, 241-246) mutant mice exhibit different subsets of skeletal defects indicating that they implement specific functions in the development of the neural crest, somite and lateral plate mesoderm derivatives. Although Gli2 and Gli3 are not functionally equivalent, double mutant analysis indicates that, in addition to their specific roles, they also serve redundant functions during skeletal development. The role of Gli2 and Gli3 in Hedgehog signaling during skeletal development is discussed.
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