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蝾螈Hoxa13在发育和再生过程中的指(趾)形成中起着至关重要且主要的作用。

Newt Hoxa13 has an essential and predominant role in digit formation during development and regeneration.

作者信息

Takeuchi Takashi, Matsubara Haruka, Minamitani Fumina, Satoh Yukio, Tozawa Sayo, Moriyama Tomoki, Maruyama Kohei, Suzuki Ken-Ichi T, Shigenobu Shuji, Inoue Takeshi, Tamura Koji, Agata Kiyokazu, Hayashi Toshinori

机构信息

Division of Developmental Biology, School of Life Sciences, Faculty of Medicine, Tottori University, 86 Nishi-cho, Yonago, Tottori 683-8503, Japan.

Laboratory of Regeneration Biology, National Institute for Basic Biology, Nishigonaka 38, Myodaiji, Okazaki, Aichi 444-8585, Japan.

出版信息

Development. 2022 Mar 1;149(5). doi: 10.1242/dev.200282. Epub 2022 Mar 11.

Abstract

The 5'Hox genes play crucial roles in limb development and specify regions in the proximal-distal axis of limbs. However, there is no direct genetic evidence that Hox genes are essential for limb development in non-mammalian tetrapods or for limb regeneration. Here, we produced single to quadruple Hox13 paralog mutants using the CRISPR/Cas9 system in newts (Pleurodeles waltl), which have strong regenerative capacities, and also produced germline mutants. We show that Hox13 genes are essential for digit formation in development, as in mice. In addition, Hoxa13 has a predominant role in digit formation, unlike in mice. The predominance is probably due to the restricted expression pattern of Hoxd13 in limb buds and the strong dependence of Hoxd13 expression on Hoxa13. Finally, we demonstrate that Hox13 genes are also necessary for digit formation in limb regeneration. Our findings reveal that the general function of Hox13 genes is conserved between limb development and regeneration, and across taxa. The predominance of Hoxa13 function both in newt limbs and fish fins, but not in mouse limbs, suggests a potential contribution of Hoxa13 function in fin-to-limb transition.

摘要

5'Hox基因在肢体发育中起着关键作用,并确定肢体近端-远端轴上的区域。然而,没有直接的遗传学证据表明Hox基因对于非哺乳类四足动物的肢体发育或肢体再生是必不可少的。在这里,我们使用CRISPR/Cas9系统在具有强大再生能力的蝾螈(Pleurodeles waltl)中产生了单倍体到四倍体的Hox13旁系同源突变体,并且还产生了生殖系突变体。我们发现,与在小鼠中一样,Hox13基因对于发育过程中的指(趾)形成至关重要。此外,与小鼠不同,Hoxa13在指(趾)形成中起主要作用。这种优势可能是由于Hoxd13在肢芽中的表达模式受限以及Hoxd13表达对Hoxa13的强烈依赖性。最后,我们证明Hox13基因对于肢体再生中的指(趾)形成也是必需的。我们的研究结果表明,Hox13基因的一般功能在肢体发育和再生之间以及不同分类群中是保守的。Hoxa13在蝾螈肢体和鱼鳍中的功能优势,但在小鼠肢体中没有,这表明Hoxa13功能在鳍到肢体转变中可能有潜在作用。

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