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Six1在哺乳动物听觉系统发育中的作用。

The role of Six1 in mammalian auditory system development.

作者信息

Zheng Weiming, Huang Li, Wei Zhu-Bo, Silvius Derek, Tang Bihui, Xu Pin-Xian

机构信息

McLaughlin Research Institute for Biomedical Sciences, 1520 23rd Street South, Great Falls, MT 59405, USA.

出版信息

Development. 2003 Sep;130(17):3989-4000. doi: 10.1242/dev.00628.

Abstract

The homeobox Six genes, homologues to Drosophila sine oculis (so) gene, are expressed in multiple organs during mammalian development. However, their roles during auditory system development have not been studied. We report that Six1 is required for mouse auditory system development. During inner ear development, Six1 expression was first detected in the ventral region of the otic pit and later is restricted to the middle and ventral otic vesicle within which, respectively, the vestibular and auditory epithelia form. By contrast, Six1 expression is excluded from the dorsal otic vesicle within which the semicircular canals form. Six1 is also expressed in the vestibuloacoustic ganglion. At E15.5, Six1 is expressed in all sensory epithelia of the inner ear. Using recently generated Six1 mutant mice, we found that all Six1(+/-) mice showed some degree of hearing loss because of a failure of sound transmission in the middle ear. By contrast, Six1(-/-) mice displayed malformations of the auditory system involving the outer, middle and inner ears. The inner ear development in Six1(-/-) embryos arrested at the otic vesicle stage and all components of the inner ear failed to form due to increased cell death and reduced cell proliferation in the otic epithelium. Because we previously reported that Six1 expression in the otic vesicle is Eya1 dependent, we first clarified that Eya1 expression was unaffected in Six1(-/-) otic vesicle, further demonstrating that the Drosophila Eya-Six regulatory cassette is evolutionarily conserved during mammalian inner ear development. We also analyzed several other otic markers and found that the expression of Pax2 and Pax8 was unaffected in Six1(-/-) otic vesicle. By contrast, Six1 is required for the activation of Fgf3 expression and the maintenance of Fgf10 and Bmp4 expression in the otic vesicle. Furthermore, loss of Six1 function alters the expression pattern of Nkx5.1 and Gata3, indicating that Six1 is required for regional specification of the otic vesicle. Finally, our data suggest that the interaction between Eya1 and Six1 is crucial for the morphogenesis of the cochlea and the posterior ampulla during inner ear development. These analyses establish a role for Six1 in early growth and patterning of the otic vesicle.

摘要

同源异型盒Six基因是果蝇无眼(so)基因的同源物,在哺乳动物发育过程中在多个器官中表达。然而,它们在听觉系统发育过程中的作用尚未得到研究。我们报告称Six1是小鼠听觉系统发育所必需的。在内耳发育过程中,Six1的表达首先在耳窝的腹侧区域被检测到,随后局限于耳泡的中部和腹侧,前庭和听觉上皮分别在其中形成。相比之下,Six1的表达在形成半规管的背侧耳泡中被排除。Six1也在前庭蜗神经节中表达。在胚胎第15.5天,Six1在内耳的所有感觉上皮中表达。利用最近培育出的Six1突变小鼠,我们发现所有Six1(+/-)小鼠都表现出一定程度的听力损失,这是由于中耳声音传导失败所致。相比之下,Six1(-/-)小鼠表现出涉及外耳、中耳和内耳的听觉系统畸形。Six1(-/-)胚胎的内耳发育停滞在耳泡阶段,由于耳上皮细胞死亡增加和细胞增殖减少,内耳的所有组成部分都未能形成。因为我们之前报道过耳泡中Six1的表达依赖于Eya1,我们首先明确Eya1在Six1(-/-)耳泡中的表达未受影响,这进一步证明了果蝇Eya-Six调控盒在哺乳动物内耳发育过程中是进化保守的。我们还分析了其他几个耳标记物,发现Pax2和Pax8在Six1(-/-)耳泡中的表达未受影响。相比之下,Six1是耳泡中Fgf3表达激活以及Fgf10和Bmp4表达维持所必需的。此外,Six1功能的丧失改变了Nkx5.1和Gata3的表达模式,表明Six1是耳泡区域特化所必需的。最后,我们的数据表明Eya1和Six1之间的相互作用对于内耳发育过程中耳蜗和后半规管的形态发生至关重要。这些分析确定了Six1在耳泡早期生长和模式形成中的作用。

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