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一种海鞘T盒基因As-T2与Tbx6亚家族相关,并与胚胎肌肉细胞分化有关。

An ascidian T-box gene As-T2 is related to the Tbx6 subfamily and is associated with embryonic muscle cell differentiation.

作者信息

Mitani Y, Takahashi H, Satoh N

机构信息

Department of Zoology, Graduate School of Science, Kyoto University, Japan.

出版信息

Dev Dyn. 1999 May;215(1):62-8. doi: 10.1002/(SICI)1097-0177(199905)215:1<62::AID-DVDY7>3.0.CO;2-X.

Abstract

The T-box genes, including Brachyury, encode a novel family of transcription factors that play critical roles in various processes of development, in particular, mesoderm formation in chordate embryos. In the case of the ascidian Halocynthia roretzi, the Brachyury (As-T) is expressed exclusively in notochord cells, whereas another T-box gene (As-T2) is expressed in the muscle cells and in the tip of the tail of tailbud embryos. In a previous study, we suggested that the combined pattern of the spatial expressions of As-T and As-T2 appears to correspond to that of a single vertebrate Brachyury gene (Yasuo et al., Dev Biol 1996;180:773-779). The present molecular phylogenetic analysis suggested that As-T2 is a divergent member of the T-box family with a similarity to the Tbx6 subfamily. Vertebrate members of this subfamily are expressed in the posterior paraxial mesoderm, and the mouse Tbx6 is essential for the specification of posterior somite. To investigate the function of As-T2, we examined an ectopic- and/or overexpression of this gene by injecting synthetic mRNA into fertilized eggs. The results showed that the injection of As-T2 mRNA induced an ectopic expression of muscle-specific myosin heavy-chain gene and actin gene, especially in presumptive epidermal cells. This ectopic muscle-specific expression was accompanied by the partial suppression of an epidermis-specific gene expression. The overexpression of As-T2, however, rarely affected the expression of As-T (Brachyury) and genes that are expressed in the tailbud.

摘要

包括短尾型基因(Brachyury)在内的T-盒基因编码了一类新型转录因子家族,这些转录因子在各种发育过程中发挥关键作用,特别是在脊索动物胚胎的中胚层形成过程中。就海鞘柄海鞘(Halocynthia roretzi)而言,短尾型基因(As-T)仅在脊索细胞中表达,而另一个T-盒基因(As-T2)则在肌肉细胞和尾芽胚胎的尾部顶端表达。在之前的一项研究中,我们提出As-T和As-T2的空间表达组合模式似乎与单个脊椎动物短尾型基因的模式相对应(安雄等,《发育生物学》1996年;180:773 - 779)。目前的分子系统发育分析表明,As-T2是T-盒家族中一个与Tbx6亚家族相似的分化成员。该亚家族的脊椎动物成员在后轴旁中胚层中表达,小鼠Tbx6对于后体节的特化至关重要。为了研究As-T2的功能,我们通过向受精卵中注射合成mRNA来检测该基因的异位和/或过表达情况。结果表明,注射As-T2 mRNA会诱导肌肉特异性肌球蛋白重链基因和肌动蛋白基因的异位表达,尤其是在假定的表皮细胞中。这种异位的肌肉特异性表达伴随着表皮特异性基因表达的部分抑制。然而,As-T2的过表达很少影响As-T(短尾型基因)和在尾芽中表达的基因的表达。

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