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在肢体发育过程中,Cdc42是软骨形成和指间程序性细胞死亡所必需的。

Cdc42 is required for chondrogenesis and interdigital programmed cell death during limb development.

作者信息

Aizawa Ryo, Yamada Atsushi, Suzuki Dai, Iimura Tadahiro, Kassai Hidetoshi, Harada Takeshi, Tsukasaki Masayuki, Yamamoto Gou, Tachikawa Tetsuhiko, Nakao Kazuki, Yamamoto Matsuo, Yamaguchi Akira, Aiba Atsu, Kamijo Ryutaro

机构信息

Department of Biochemistry, School of Dentistry, Showa University, Shinagawa-ku, Tokyo 142-8555, Japan.

出版信息

Mech Dev. 2012 Mar-Jun;129(1-4):38-50. doi: 10.1016/j.mod.2012.02.002. Epub 2012 Feb 25.

Abstract

Cdc42, a member of the Rho subfamily of small GTPases, is known to be a regulator of multiple cellular functions, including cytoskeletal organization, cell migration, proliferation, and apoptosis. However, its tissue-specific roles, especially in mammalian limb development, remain unclear. To investigate the physiological function of Cdc42 during limb development, we generated limb bud mesenchyme-specific inactivated Cdc42 (Cdc42(fl/fl); Prx1-Cre) mice. Cdc42(fl/fl); Prx1-Cre mice demonstrated short limbs and body, abnormal calcification of the cranium, cleft palate, disruption of the xiphoid process, and syndactyly. Severe defects were also found in long bone growth plate cartilage, characterized by loss of columnar organization of chondrocytes, and thickening and massive accumulation of hypertrophic chondrocytes, resulting in delayed endochondral bone formation associated with reduced bone growth. In situ hybridization analysis revealed that expressions of Col10 and Mmp13 were reduced in non-resorbed hypertrophic cartilage, indicating that deletion of Cdc42 inhibited their terminal differentiation. Syndactyly in Cdc42(fl/fl); Prx1-Cre mice was caused by fusion of metacarpals and a failure of interdigital programmed cell death (ID-PCD). Whole mount in situ hybridization analysis of limb buds showed that the expression patterns of Sox9 were ectopic, while those of Bmp2, Msx1, and Msx2, known to promote apoptosis in the interdigital mesenchyme, were down-regulated. These results demonstrate that Cdc42 is essential for chondrogenesis and ID-PCD during limb development.

摘要

Cdc42是小GTP酶Rho亚家族的成员,已知是多种细胞功能的调节因子,包括细胞骨架组织、细胞迁移、增殖和凋亡。然而,其组织特异性作用,尤其是在哺乳动物肢体发育中的作用仍不清楚。为了研究Cdc42在肢体发育过程中的生理功能,我们构建了肢体芽间充质特异性失活的Cdc42(Cdc42(fl/fl); Prx1-Cre)小鼠。Cdc42(fl/fl); Prx1-Cre小鼠表现出四肢和身体短小、颅骨异常钙化、腭裂、剑突发育异常和并指。在长骨生长板软骨中也发现了严重缺陷,其特征是软骨细胞柱状排列丧失,肥大软骨细胞增厚和大量积聚,导致软骨内骨形成延迟并伴有骨生长减少。原位杂交分析显示,在未吸收的肥大软骨中Col10和Mmp13的表达降低,表明Cdc42的缺失抑制了它们的终末分化。Cdc42(fl/fl); Prx1-Cre小鼠的并指是由掌骨融合和指间程序性细胞死亡(ID-PCD)失败引起的。对肢体芽的整体原位杂交分析表明,Sox9的表达模式异位,而已知可促进指间间充质细胞凋亡的Bmp2、Msx1和Msx2的表达下调。这些结果表明,Cdc42在肢体发育过程中对软骨形成和ID-PCD至关重要。

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