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小鼠Cdx-4在其同源结构域序列和早期表达模式上与果蝇的尾基因有显著相似性。

Murine Cdx-4 bears striking similarities to the Drosophila caudal gene in its homeodomain sequence and early expression pattern.

作者信息

Gamer L W, Wright C V

机构信息

Department of Cell Biology, Vanderbilt University Medical School, Nashville, TN 37232-2175.

出版信息

Mech Dev. 1993 Sep;43(1):71-81. doi: 10.1016/0925-4773(93)90024-r.

Abstract

A third member of the murine caudal-like gene family, Cdx-4, has been isolated. In situ hybridization and immunohistochemistry have been used to study the localization of mRNA and protein during murine embryogenesis. Cdx-4 is expressed transiently from 7.0 d.p.c. (days post coitum) until 10 d.p.c., starting at the beginning of gastrulation (7.0-7.5 d.p.c.) in the allantois and posterior tip of the primitive streak. At the mid-streak stage, Cdx-4 expression moves rostrally, and protein and mRNA are detected in all cells over the posterior half of the primitive streak. As development proceeds, Cdx-4 gene products continue to be restricted to the posterior of the embryo, including the remnants of the primitive streak. Cdx-4 is expressed in neurectoderm, presomitic and lateral plate mesoderm, and hindgut endoderm, but the anterior boundary in the paraxial mesoderm is staggered with respect to the other germ layers. At all stages analyzed, Cdx-4 exhibits a graded expression pattern with a posterior maximum, a distribution highly reminiscent of the Drosophila caudal gene. These data add to the recently described distributions of other vertebrate caudal-like genes, and further support the idea that members of this homeobox gene subfamily have regulatory roles in the specification of anteroposterior axial polarity in early embryos.

摘要

小鼠尾样基因家族的第三个成员Cdx - 4已被分离出来。原位杂交和免疫组织化学已被用于研究小鼠胚胎发育过程中mRNA和蛋白质的定位。Cdx - 4从胚胎龄7.0天(合子后天数)开始短暂表达,一直持续到10天,起始于原肠胚形成初期(7.0 - 7.5天),在尿囊和原条的后端表达。在原条中期阶段,Cdx - 4的表达向前移动,在原条后半部的所有细胞中都能检测到蛋白质和mRNA。随着发育的进行,Cdx - 4基因产物继续局限于胚胎的后部,包括原条的残余部分。Cdx - 4在神经外胚层、体节形成前和侧板中胚层以及后肠内胚层中表达,但在轴旁中胚层的前部边界相对于其他胚层是交错的。在所有分析阶段,Cdx - 4都呈现出一种梯度表达模式,在后部表达量最高,这种分布与果蝇的尾基因高度相似。这些数据补充了最近描述的其他脊椎动物尾样基因的分布情况,并进一步支持了这一观点,即这个同源框基因亚家族的成员在早期胚胎前后轴极性的特化中具有调节作用。

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