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Tbx4-Fgf10系统在鸡胚胎发育过程中控制肺芽形成。

Tbx4-Fgf10 system controls lung bud formation during chicken embryonic development.

作者信息

Sakiyama Jun-Ichi, Yamagishi Atsushi, Kuroiwa Atsushi

机构信息

Division of Biological Science, Graduate School of Science, Nagoya University, Furo-cho, Chikusa-ku, Nagoya, 464-8602 Japan.

出版信息

Development. 2003 Apr;130(7):1225-34. doi: 10.1242/dev.00345.

Abstract

The respiratory primordium is positioned and its territory is defined in the foregut. The visceral mesoderm of the respiratory primordium acquires the inducing potential that is necessary for endodermal budding morphogenesis and respiratory endoderm formation. Tbx4, a member of the T-box transcription factor gene family, was specifically expressed in the visceral mesoderm of the lung primordium. To analyze the function of Tbx4, we ectopically expressed Tbx4 in the visceral mesoderm of the foregut using in ovo electroporation. Ectopic Tbx4 induced ectopic bud formation in the esophagus by activating the expression of Fgf10. Conversely, interference of Tbx4 function resulted in repression of Fgf10 expression and in failure of lung bud formation. In addition, ectopic Tbx4 or Fgf10 also induced ectopic expression of Nkx2.1, a marker gene specific for the respiratory endoderm, in the underlying esophagus endoderm. When the border of the Tbx4 expression domain, which demarcates the respiratory tract and the esophagus, was disturbed by misexpression of Tbx4, formation of the tracheo-esophageal septum failed. These results suggested that Tbx4 governs multiple processes during respiratory tract development; i.e. the initial endodermal bud formation, respiratory endoderm formation, and septation of the respiratory tract and the esophagus.

摘要

呼吸原基在前肠中定位,其区域也在前肠中确定。呼吸原基的脏壁中胚层获得了内胚层出芽形态发生和呼吸内胚层形成所必需的诱导潜能。Tbx4是T盒转录因子基因家族的成员之一,在肺原基的脏壁中胚层中特异性表达。为了分析Tbx4的功能,我们通过鸡胚体内电穿孔在前肠的脏壁中胚层中异位表达Tbx4。异位表达的Tbx4通过激活Fgf10的表达诱导食管中出现异位芽。相反,干扰Tbx4的功能会导致Fgf10表达受抑制,肺芽形成失败。此外,异位表达的Tbx4或Fgf10还会诱导其下方食管内胚层中Nkx2.1(一种呼吸内胚层特异性标记基因)的异位表达。当Tbx4的表达域边界(该边界划分呼吸道和食管)因Tbx4的错误表达而受到干扰时,气管食管隔的形成失败。这些结果表明,Tbx4在呼吸道发育过程中调控多个过程,即初始内胚层芽的形成、呼吸内胚层的形成以及呼吸道和食管的分隔。

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