Novel functions of LHX2 and PAX6 in the developing telencephalon revealed upon combined loss of both genes.

IF 4 3区 生物学 Q1 DEVELOPMENTAL BIOLOGY
Geeta Godbole, Achira Roy, Ashwin S Shetty, Shubha Tole
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Abstract

Patterning of the telencephalic neuroepithelium is a tightly regulated process controlled by transcription factors and signalling molecules. The cortical primordium is flanked by two signalling centres, the hem medially, and the antihem laterally. The hem induces the formation of the hippocampus in adjacent neuroepithelium. Therefore, the position of the hem defines the position of the hippocampus in the brain. The antihem is positioned at the boundary between the dorsal and ventral telencephalon and proposed to provide patterning cues during development. LIM-homeodomain (LIM-HD) transcription factor LHX2 suppresses both hem and antihem fate in the cortical neuroepithelium. Upon loss of Lhx2, medial cortical neuroepithelium is transformed into hem, whereas lateral cortical neuroepithelium is transformed into antihem. Here, we show that transcription factor PAX6, known to regulate patterning of the lateral telencephalon, restricts this tissue from transforming into hem upon loss of Lhx2. When Lhx2 and Pax6 are both deleted, the cortical hem expands to occupy almost the complete extent of the cortical primordium, indicating that both factors act to suppress hem fate in the lateral telencephalon. Furthermore, the shift in the pallial-subpallial boundary and absence of the antihem, observed in the Pax6 mutant, are both restored in the Lhx2; Pax6 double mutant. Together, these results not only reveal a novel function for LHX2 in regulating dorsoventral patterning in the telencephalon, but also identify PAX6 as a fundamental regulator of where the hem can form, and therefore implicate this molecule as a determinant of hippocampal positioning.

Abstract Image

Abstract Image

Abstract Image

LHX2和PAX6基因的缺失揭示了它们在发育中的端脑中的新功能。
端脑神经上皮的形成是一个受转录因子和信号分子严格调控的过程。皮质原基两侧有两个信号中心,中间是边缘,外侧是反边缘。下摆诱导相邻神经上皮海马的形成。因此,下摆的位置决定了海马体在大脑中的位置。反边位于端脑背侧和腹侧之间的边界,在发育过程中提供图案提示。lim同源结构域(LIM-HD)转录因子LHX2抑制皮层神经上皮的hem和antihem命运。失去Lhx2后,内侧皮质神经上皮转化为hem,而外侧皮质神经上皮转化为antihem。在这里,我们发现转录因子PAX6,已知调节外侧端脑的模式,限制该组织在Lhx2丢失时转化为hem。当Lhx2和Pax6同时缺失时,皮质褶边扩大到几乎占据皮质原基的全部范围,这表明这两个因素在侧端脑中抑制了褶边的命运。此外,在Pax6突变体中观察到的白质-白质下边界的移动和抗体的缺失在Lhx2中都得到了恢复;Pax6双突变体。总之,这些结果不仅揭示了LHX2在调节端脑背腹侧模式中的新功能,而且还确定了PAX6是边缘形成的基本调节剂,因此暗示该分子是海马定位的决定因素。
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来源期刊
Neural Development
Neural Development 生物-发育生物学
CiteScore
6.60
自引率
0.00%
发文量
11
审稿时长
>12 weeks
期刊介绍: Neural Development is a peer-reviewed open access, online journal, which features studies that use molecular, cellular, physiological or behavioral methods to provide novel insights into the mechanisms that underlie the formation of the nervous system. Neural Development aims to discover how the nervous system arises and acquires the abilities to sense the world and control adaptive motor output. The field includes analysis of how progenitor cells form a nervous system during embryogenesis, and how the initially formed neural circuits are shaped by experience during early postnatal life. Some studies use well-established, genetically accessible model systems, but valuable insights are also obtained from less traditional models that provide behavioral or evolutionary insights.
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