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Opl:一种调节非洲爪蟾神经决定和模式形成的锌指蛋白。

Opl: a zinc finger protein that regulates neural determination and patterning in Xenopus.

作者信息

Kuo J S, Patel M, Gamse J, Merzdorf C, Liu X, Apekin V, Sive H

机构信息

Whitehead Institute for Biomedical Research and Massachusetts Institute of Technology, Nine Cambridge Center, Cambridge MA 02142, USA.

出版信息

Development. 1998 Aug;125(15):2867-82. doi: 10.1242/dev.125.15.2867.

Abstract

In order to study the mechanism of neural patterning in Xenopus, we used subtractive cloning to isolate genes activated early during this process. One gene isolated was opl, (odd-paired-like) that resembles the Drosophila pair-rule gene odd-paired and encodes a zinc finger protein that is a member of the Zic gene family. At the onset of gastrulation, opl is expressed throughout the presumptive neural plate, indicating that neural determination has begun at this stage while, by neurula, opl expression is restricted to the dorsal neural tube and neural crest. opl encodes a transcriptional activator, with a carboxy terminal regulatory domain, which when removed increases opl activity. opl both sensitizes animal cap ectoderm to the neural inducer noggin and alters the spectrum of genes induced by noggin, allowing activation of the midbrain marker engrailed. Consistent with the later dorsal neural expression of opl, the activated form of opl is able to induce neural crest and dorsal neural tube markers both in animal caps and whole embryos. In ventral ectoderm, opl induces formation of loose cell aggregates that may indicate neural crest precursor cells. Aggregates do not express an epidermal marker, indicating that opl suppresses ventral fates. Together, these data suggest that opl may mediate neural competence and may be involved in activation of midbrain, dorsal neural and neural crest fates.

摘要

为了研究非洲爪蟾神经模式形成的机制,我们采用消减克隆技术来分离在此过程早期被激活的基因。分离出的一个基因是opl(类odd-paired),它类似于果蝇的成对规则基因odd-paired,并编码一种锌指蛋白,该蛋白是Zic基因家族的成员。在原肠胚形成开始时,opl在整个预定神经板中表达,这表明神经决定在这个阶段已经开始,而到神经胚期时,opl的表达局限于背侧神经管和神经嵴。opl编码一种转录激活因子,其具有一个羧基末端调节结构域,去除该结构域会增加opl的活性。opl既能使动物帽外胚层对神经诱导因子头蛋白敏感,又能改变头蛋白诱导的基因谱,从而激活中脑标记基因engrailed。与opl后期在背侧神经的表达一致,opl的激活形式能够在动物帽和整个胚胎中诱导神经嵴和背侧神经管标记物。在腹侧外胚层中,opl诱导形成松散的细胞聚集体,这可能表明是神经嵴前体细胞。聚集体不表达表皮标记物,这表明opl抑制腹侧命运。总之,这些数据表明opl可能介导神经感受态,并可能参与中脑、背侧神经和神经嵴命运的激活。

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