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果蝇胚层早期发育过程中蜗牛、扭曲蛋白和胡克贝因的相互作用功能。

Interacting functions of snail, twist and huckebein during the early development of germ layers in Drosophila.

作者信息

Reuter R, Leptin M

机构信息

Max-Planck-Institut für Entwicklungsbiologie, Abteilung V, Tübingen, FR Germany.

出版信息

Development. 1994 May;120(5):1137-50. doi: 10.1242/dev.120.5.1137.

Abstract

Two zygotic genes, snail (sna) and twist (twi), are required for mesoderm development, which begins with the formation of the ventral furrow. Both twi and sna are expressed ventrally in the blastoderm, encode transcription factors and promote the invagination of the ventral furrow by activating or repressing appropriate target genes. However, sna and twi alone do not define the position of the ventral furrow, since they are also expressed in ventral cells that do not invaginate. We show that huckebein (hkb) sets the anterior and the posterior borders of the ventral furrow, but acts by different modes of regulation. In the posterior part of the blastoderm, hkb represses the expression of sna in the endodermal primordium (which we suggest to be adjacent to the mesodermal primordium). In the anterior part, hkb antagonizes the activation of target genes by twi and sna. Here, bicoid permits the co-expression of hkb, sna and twi, which are all required for the development of the anterior digestive tract. We suggest that mesodermal fate is determined where sna and twi but not hkb are expressed. Anteriorly hkb together with sna determines endodermal fate, and hkb together with sna and twi are required for foregut development.

摘要

两个合子基因,蜗牛基因(sna)和扭曲基因(twi),是中胚层发育所必需的,中胚层发育始于腹沟的形成。twi和sna在胚盘的腹侧均有表达,编码转录因子,并通过激活或抑制适当的靶基因来促进腹沟的内陷。然而,单独的sna和twi并不能确定腹沟的位置,因为它们也在不发生内陷的腹侧细胞中表达。我们发现,哈克贝因基因(hkb)设定了腹沟的前后边界,但其作用方式不同。在胚盘的后部,hkb抑制内胚层原基(我们认为其与中胚层原基相邻)中sna的表达。在胚盘前部,hkb拮抗twi和sna对靶基因的激活作用。在这里,双尾基因允许hkb、sna和twi共同表达,这三者都是前消化道发育所必需的。我们认为,中胚层命运是在表达sna和twi但不表达hkb的地方决定的。在胚盘前部,hkb与sna共同决定内胚层命运,而hkb与sna和twi共同参与前肠发育。

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