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小鼠Otp同源框基因在发育中的下丘脑神经元细胞谱系特化过程中发挥着至关重要的作用。

The murine Otp homeobox gene plays an essential role in the specification of neuronal cell lineages in the developing hypothalamus.

作者信息

Wang W, Lufkin T

机构信息

Brookdale Center for Developmental and Molecular Biology, Mount Sinai School of Medicine, One Gustave L. Levy Place, New York, New York 10029-6574, USA.

出版信息

Dev Biol. 2000 Nov 15;227(2):432-49. doi: 10.1006/dbio.2000.9902.

Abstract

Hypothalamic nuclei, including the anterior periventricular (aPV), paraventricular (PVN), and supraoptic (SON) nuclei strongly express the homeobox gene Orthopedia (Otp) during embryogenesis. Targeted inactivation of Otp in the mouse results in the loss of these nuclei in the homozygous null neonates. The Otp null hypothalamus fails to secrete neuropeptides somatostatin, arginine vasopressin, oxytocin, corticotropin-releasing hormone, and thyrotropin-releasing hormone in an appropriate spatial and temporal fashion, and leads to the death of Otp null pups shortly after birth. Failure to produce these neuropeptide hormones is evident prior to E15.5, indicating a failure in terminal differentiation of the aPV/PVN/SON neurons. Absence of elevated apoptotic activity, but reduced cell proliferation together with the ectopic activation of Six3 expression in the presumptive PVN, indicates a critical role for Otp in terminal differentiation and maturation of these neuroendocrine cell lineages. Otp employs distinct regulatory mechanisms to modulate the expression of specific molecular markers in the developing hypothalamus. At early embryonic stages, expression of Sim2 is immediately downregulated as a result of the absence of Otp, indicating a potential role for Otp as an upstream regulator of Sim2. In contrast, the regulation of Brn4 which is also expressed in the SON and PVN is independent of Otp function. Hence no strong evidence links Otp and Brn4 in the same regulatory pathway. The involvement of Otp and Sim1 in specifying specific hypothalamic neurosecretory cell lineages is shown to operate via distinct signaling pathways that partially overlap with Brn2.

摘要

下丘脑核团,包括室周前核(aPV)、室旁核(PVN)和视上核(SON),在胚胎发育过程中强烈表达同源框基因正位蛋白(Otp)。在小鼠中靶向敲除Otp会导致纯合缺失新生小鼠这些核团的缺失。Otp缺失的下丘脑无法以适当的时空方式分泌神经肽生长抑素、精氨酸加压素、催产素、促肾上腺皮质激素释放激素和促甲状腺激素释放激素,并导致Otp缺失幼崽在出生后不久死亡。在胚胎第15.5天之前就明显无法产生这些神经肽激素,这表明aPV/PVN/SON神经元的终末分化失败。凋亡活性没有升高,但细胞增殖减少,同时假定的PVN中Six3表达异位激活,这表明Otp在这些神经内分泌细胞谱系的终末分化和成熟中起关键作用。Otp采用不同的调节机制来调节发育中的下丘脑中特定分子标记的表达。在胚胎早期阶段,由于Otp缺失,Sim2的表达立即下调,这表明Otp可能作为Sim2的上游调节因子。相比之下,同样在SON和PVN中表达的Brn4的调节独立于Otp功能。因此,没有强有力的证据表明Otp和Brn4在同一调节途径中。研究表明,Otp和Sim1参与指定特定的下丘脑神经分泌细胞谱系是通过与Brn2部分重叠的不同信号通路进行的。

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