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首页> 外文期刊>Genetics and molecular biology: publication of the Sociedade Brasileira de Genetica >Connexins in the early development of the African clawed frog Xenopus laevis (Amphibia): The role of the connexin43 carboxyl terminal tail in the establishment of the dorso-ventral axis
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Connexins in the early development of the African clawed frog Xenopus laevis (Amphibia): The role of the connexin43 carboxyl terminal tail in the establishment of the dorso-ventral axis

机译:连接蛋白在非洲爪蛙Xenopus laevis(Amphibia)的早期发育中:connexin43羧基末端尾巴在背腹轴建立中的作用

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Connexins are a family of related proteins identified in vertebrate forming gap junctions, which mediate cell-to-cell communication in early embryos, with an important role in establishing embryonic asymmetry and ‘communication compartments’. By in situ hybridization, immunocytochemistry, reverse transcriptase PCR (RT-PCR) and western blotting we show that a Cx43-like molecule is present in oocytes and embryos of the African clawed frog Xenopus laevis, with specific localization in the animal-vegetal axis. This specific distribution is suggestive for an important role for this protein in the establishment of the dorso-ventral axis. Antisense RNA and antibodies directed against rat carboxyl terminal tail of the Cx43 (CT-Cx43) and injected in 1-cell stage Xenopus embryos, induced pronounced alterations in nervous system development, with a severe ventralization phenotype. Coherently, the overexpression of CT-Cx43 produced a dorsalization of the embryos. In antisense treated embryos, the expression of the beta-catenin gene is eliminated from the Nieuwkoop center, the pattern expression of the Chordin, Xnot and Xbra is modified, with no effect in expression of the Goosecoid gene. In CT-Cx43 mRNA treated embryos the pattern of expression of the beta-catenin, Chordin, Goosecoid, Xnot and engrailed-2 genes is modified. The expression of beta-catenin is increased in the Nieuwkoop center, the expression pattern of Chordin and Goosecoid is expanded to the posterior neural plate and engrailed-2 presents ectopic expression in the ventral region. Taken together our data suggest a role for CT-Cx43 as a maternal determinant with a critical function in the formation of the dorso-ventral axis in Xenopus laevis. The Cx43 may be one of the earliest markers of the dorso-ventral axis in these embryos and could possibly be acting through regionalization of factors responsible for the establishment of this axis.
机译:连接蛋白是在脊椎动物形成的间隙连接中鉴定的相关蛋白家族,其介导早期胚胎中的细胞间通讯,在建立胚胎不对称和“通讯区室”中起重要作用。通过原位杂交,免疫细胞化学,逆转录酶PCR(RT-PCR)和Western印迹,我们表明Cx43样分子存在于非洲爪蛙Xenopus laevis的卵母细胞和胚胎中,并在动物-植物轴上有特定的定位。这种特定的分布暗示了这种蛋白质在背腹轴建立中的重要作用。直接针对大鼠Cx43羧基末端尾巴(CT-Cx43)的反义RNA和抗体,并注入到1细胞阶段的非洲爪蟾胚胎中,诱导了神经系统发育的明显改变,并伴有严重的腹侧表型。一致地,CT-Cx43的过度表达使胚胎背化。在经过反义处理的胚胎中,β-catenin基因的表达从Nieuwkoop中心消除,Chordin,Xnot和Xbra的模式表达被修饰,对Goosecoid基因的表达没有影响。在CT-Cx43 mRNA处理过的胚胎中,β-catenin,Chordin,Goosecoid,Xnot和engrailed-2基因的表达模式被修饰。 β-catenin的表达在Nieuwkoop中心增加,Chordin和Goosecoid的表达模式扩展到后神经板,而enrailed-2在腹侧区域表达异位。综上所述,我们的数据表明CT-Cx43作为母体决定因素在非洲爪蟾背腹轴形成中起关键作用。 Cx43可能是这些胚胎中背腹轴的最早标记之一,可能通过区域化负责建立该轴的因素来发挥作用。

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