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Lhx2将控制视杯形成的内在和外在因素联系起来。

Lhx2 links the intrinsic and extrinsic factors that control optic cup formation.

作者信息

Yun Sanghee, Saijoh Yukio, Hirokawa Karla E, Kopinke Daniel, Murtaugh L Charles, Monuki Edwin S, Levine Edward M

机构信息

Department of Ophthalmology and Visual Sciences, John A. Moran Eye Center, University of Utah, Salt Lake City, UT 84132, USA.

出版信息

Development. 2009 Dec;136(23):3895-906. doi: 10.1242/dev.041202.

Abstract

A crucial step in eye organogenesis is the transition of the optic vesicle into the optic cup. Several transcription factors and extracellular signals mediate this transition, but whether a single factor links them into a common genetic network is unclear. Here, we provide evidence that the LIM homeobox gene Lhx2, which is expressed in the optic neuroepithelium, fulfils such a role. In Lhx2(-/-) mouse embryos, eye field specification and optic vesicle morphogenesis occur, but development arrests prior to optic cup formation in both the optic neuroepithelium and lens ectoderm. This is accompanied by failure to maintain or initiate the expression patterns of optic-vesicle-patterning and lens-inducing determinants. Of the signaling pathways examined, only BMP signaling is noticeably altered and Bmp4 and Bmp7 mRNAs are undetectable. Lhx2(-/-) optic vesicles and lens ectoderm upregulate Pax2, Fgf15 and Sox2 in response to BMP treatments, and Lhx2 genetic mosaics reveal that transcription factors, including Vsx2 and Mitf, require Lhx2 cell-autonomously for their expression. Our data indicate that Lhx2 is required for optic vesicle patterning and lens formation in part by regulating BMP signaling in an autocrine manner in the optic neuroepithelium and in a paracrine manner in the lens ectoderm. We propose a model in which Lhx2 is a central link in a genetic network that coordinates the multiple pathways leading to optic cup formation.

摘要

眼器官发生过程中的一个关键步骤是视泡向视杯的转变。几种转录因子和细胞外信号介导了这一转变,但尚不清楚是否有单一因子将它们连接成一个共同的遗传网络。在这里,我们提供证据表明,在视神经上皮中表达的LIM同源框基因Lhx2发挥了这样的作用。在Lhx2基因敲除的小鼠胚胎中,眼场特化和视泡形态发生能够发生,但在视杯形成之前,视神经上皮和晶状体外胚层的发育均停滞。这伴随着无法维持或启动视泡模式形成和晶状体诱导决定因素的表达模式。在所检测的信号通路中,只有BMP信号通路明显改变,且未检测到Bmp4和Bmp7的mRNA。Lhx2基因敲除的视泡和晶状体外胚层在接受BMP处理后会上调Pax2、Fgf15和Sox2,Lhx2基因镶嵌实验表明,包括Vsx2和Mitf在内的转录因子在细胞自主表达方面需要Lhx2。我们的数据表明,Lhx2对视泡模式形成和晶状体形成是必需的,部分原因是它以自分泌方式调节视神经上皮中的BMP信号通路,并以旁分泌方式调节晶状体外胚层中的BMP信号通路。我们提出了一个模型,其中Lhx2是一个遗传网络中的核心环节,该网络协调导致视杯形成的多条途径。

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