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Xenopus adenine nucleotide translocase mRNA exhibits specific and dynamic patterns of expression during development.

机译:爪蟾腺嘌呤核苷酸转位酶mRNA在发育过程中表现出特定的动态表达模式。

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摘要

We report the isolation and characterization of the Xenopus homolog to human T1 ANT (adenine nucleotide translocase). The 1290-nucleotide sequence contains initiation and termination signals, and encodes a conceptual protein of 298 amino acids. The sequence shares high amino acid identity with the mammalian adenine translocases. The transcript is present in unfertilized eggs, and it is expressed at higher levels during formation of the antero-posterior dorsal axis in embryos. Although low levels are expressed constitutively except in endodermal cells, adenine nucleotide translocase (ANT) expression is dynamically regulated during neurulation. At this stage, expression in ectoderm rapidly diminishes as the neural folds form, and then ANT expression increases slightly in mesoderm. At the culmination of neurulation, the neural tube briefly expresses ANT, and thereafter its expression predominates in the somitic mesoderm and also the chordoneural hinge. In addition, ANT expression is particularly high in the prosencephalon, the mesencephalon, the branchial arches, eye, and the otic vesicle. Treatment of embryos with retinoic acid has the effect of diminishing constitutive expression of ANT, but microinjection studies demonstrate that immediate and local repression cannot be induced in dorsal structures.
机译:我们报告了非洲人的T1 ANT(腺嘌呤核苷酸translocase)的爪蟾同源物的分离和表征。 1290个核苷酸的序列包含起始和终止信号,并编码298个氨基酸的概念蛋白。该序列与哺乳动物的腺嘌呤转位酶具有高度的氨基酸同一性。转录物存在于未受精卵中,并且在胚胎的前后后轴形成过程中以较高的水平表达。尽管在内胚层细胞中低水平组成型表达,但在神经形成过程中动态调节腺嘌呤核苷酸转位酶(ANT)的表达。在这个阶段,外胚层中的表达随着神经折叠的形成而迅速减少,然后ANT表达在中胚层中略有增加。在神经达到顶点时,神经管会短暂表达ANT,此后其表达在体膜中胚层和弦神经枢纽中占主导地位。另外,在前脑,中脑,the弓,眼和耳囊中,ANT表达特别高。用视黄酸处理胚胎具有减少ANT组成型表达的作用,但显微注射研究表明,不能在背侧结构中诱导立即和局部阻抑。

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