Expression patterns of CYP26A1, FGF8, CDKN1A, and NPVF in the developing rhesus monkey retina

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Miranda R. Krueger , Elizabeth Fishman-Williams , Sergi Simó , Alice F. Tarantal , Anna La Torre
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Abstract

The fovea centralis (fovea) is a specialized region of the primate retina that plays crucial roles in high-resolution visual acuity and color perception. The fovea is characterized by a high density of cone photoreceptors and no rods, and unique anatomical properties that contribute to its remarkable visual capabilities. Early histological analyses identified some of the key events that contribute to foveal development, but the mechanisms that direct the specification of this area are not understood. Recently, the expression of the retinoic acid-metabolizing enzyme CYP26A1 has become a hallmark of some of the retinal specializations found in vertebrates, including the primate fovea and the high-acuity area in avian species. In chickens, the retinoic acid pathway regulates the expression of FGF8 to then direct the development of a rod-free area. Similarly, high levels of CYP26A1, CDKN1A, and NPVF expression have been observed in the primate macula using transcriptomic approaches. However, which retinal cells express these genes and their expression dynamics in the developing primate eye remain unknown. Here, we systematically characterize the expression patterns of CYP26A1, FGF8, CDKN1A, and NPVF during the development of the rhesus monkey retina, from early stages of development in the first trimester until the third trimester (near term). Our data suggest that some of the markers previously proposed to be fovea-specific are not enriched in the progenitors of the rhesus monkey fovea. In contrast, CYP26A1 is expressed at high levels in the progenitors of the fovea, while it localizes in a subpopulation of macular Müller glia cells later in development. Together these data provide invaluable insights into the expression dynamics of several molecules in the nonhuman primate retina and highlight the developmental advancement of the foveal region.

CYP26A1、FGF8、CDKN1A 和 NPVF 在发育中恒河猴视网膜中的表达模式
中央凹(fovea centralis)是灵长类视网膜的一个特殊区域,在高分辨率视觉敏锐度和色彩感知方面起着至关重要的作用。眼窝的特点是锥体光感受器密度高,没有视杆细胞,其独特的解剖学特性造就了它非凡的视觉能力。早期的组织学分析确定了促进眼窝发育的一些关键事件,但指导该区域规格化的机制尚不清楚。最近,视黄酸代谢酶 CYP26A1 的表达已成为脊椎动物视网膜特化的标志,包括灵长类动物的眼窝和鸟类的高敏锐区。在鸡体内,视黄酸途径调节 FGF8 的表达,进而引导无杆区的发育。同样,利用转录组学方法在灵长类黄斑中也观察到高水平的 CYP26A1、CDKN1A 和 NPVF 表达。然而,在发育中的灵长类眼睛中,哪些视网膜细胞表达这些基因及其表达动态仍是未知数。在这里,我们系统地描述了 CYP26A1、FGF8、CDKN1A 和 NPVF 在猕猴视网膜发育过程中的表达模式,包括从妊娠头三个月的早期发育阶段到妊娠三个月(近妊娠期)。我们的数据表明,以前提出的一些具有眼窝特异性的标记物在恒河猴眼窝的祖细胞中并不富集。相反,CYP26A1在眼窝祖细胞中高水平表达,而在发育后期则定位于黄斑Müller胶质细胞亚群中。这些数据为了解非人灵长类视网膜中几种分子的表达动态提供了宝贵的信息,并突显了眼窝区域的发育进程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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