Tozawa Sayo, Matsubara Haruka, Minamitani Fumina, Kamei Yasuhiro, Saida Misako, Asao Momoko, Suzuki Ken-Ichi T, Matsunami Masatoshi, Shigenobu Shuji, Hayashi Toshinori, Abe Gembu, Takeuchi Takashi
Graduate School of Medical Sciences, Tottori University Yonago, Tottori, Japan.
Division of Developmental Biology, School of Life Sciences, Faculty of Medicine, Tottori University Yonago, Tottori, Japan.
Dev Growth Differ. 2025 Jan;67(1):10-22. doi: 10.1111/dgd.12952. Epub 2024 Dec 26.
5'Hox genes regulate pattern formation along the axes of the limb. Previously, we showed that Hoxa13/Hoxd13 double-mutant newts lacked all digits of the forelimbs during development and regeneration, showing that newt Hox13 is necessary for digit formation in development and regeneration. In addition, we found another unique phenotype. Some of the Hox13 crispant newts showed hindlimb defects, in which whole or almost whole hindlimbs were lost, suggesting a novel function of Hox13 in limb development. Using germline mutants, we showed that mutation in Hox13 led to hindlimb defects. The limb buds of Hox13 crispants formed, however, did not show outgrowth. Expression of Fgf10 and Tbx4, which are involved in limb outgrowth, decreased in the hindlimb buds of Hox13 crispants. In addition, hindlimb defects were observed in both Fgf10 and Tbx4 crispant newts. Finally, Fgf10 and Tbx4 interacted with Hox13 genetically. Our results revealed a novel function of Hox13 in regulating the outgrowth of the newt hindlimb bud through interaction with Fgf10 and Tbx4.
5'Hox基因调控肢体沿轴的模式形成。此前,我们发现Hoxa13/Hoxd13双突变蝾螈在发育和再生过程中前肢的所有指均缺失,这表明蝾螈Hox13对于发育和再生过程中的指形成是必需的。此外,我们还发现了另一种独特的表型。一些Hox13基因敲降的蝾螈表现出后肢缺陷,其中整个或几乎整个后肢缺失,这表明Hox13在肢体发育中具有新功能。利用生殖系突变体,我们发现Hox13突变会导致后肢缺陷。然而,Hox13基因敲降的蝾螈形成的肢体芽并未表现出生长。参与肢体生长的Fgf10和Tbx4在Hox13基因敲降的蝾螈后肢芽中的表达降低。此外,在Fgf10和Tbx4基因敲降的蝾螈中也观察到了后肢缺陷。最后,Fgf10和Tbx4与Hox13存在遗传相互作用。我们的结果揭示了Hox13通过与Fgf10和Tbx4相互作用在调控蝾螈后肢芽生长方面的新功能。