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植入前小鼠胚胎发育过程中的金属硫蛋白基因表达与金属调控(早期发育过程中的MT mRNA)

Metallothionein gene expression and metal regulation during preimplantation mouse embryo development (MT mRNA during early development).

作者信息

Andrews G K, Huet-Hudson Y M, Paria B C, McMaster M T, De S K, Dey S K

机构信息

Department of Biochemistry and Molecular Biology, Ralph L. Smith Research Center, University of Kansas Medical Center, Kansas City 66103.

出版信息

Dev Biol. 1991 May;145(1):13-27. doi: 10.1016/0012-1606(91)90209-l.

Abstract

In order to provide information concerning gene expression and regulation in the preimplantation mammalian embryo, and to explore the roles of metallothionein (MT) during this period of development, the constitutive and metal-induced MT mRNA levels in mouse ova, preimplantation embryos, and oviducts were determined. These results were correlated with the effects of transient exposure to high levels of metals (zinc (Zn) or cadmium (Cd] on the continued development of preimplantation embryos into blastocysts in culture. RNA from preimplantation mouse embryos at different stages of development (Days 1 through 4 of gestation; D1 = vaginal plug) was analyzed using the reverse transcriptase-polymerase chain reaction (RT-PCR) to specifically amplify MT-I and MT-II mRNA transcripts. MT-I mRNA in ova, preimplantation embryos, and oviducts was detected using in situ hybridization. This mRNA in the oviduct was also analyzed by Northern blotting. The results establish that the mouse MT genes are coordinately and constitutively expressed at low basal levels in ova and preimplantation mouse embryos. In unfertilized (ova), fertilized (one-cell) eggs, and two-cell embryos, the MT-I gene was not detectably responsive to metal ions, whereas in later cleavage stage embryos (four- and eight-cell) the MT-I gene was detectably responsive to metals in some blastomeres of some of the embryos. In contrast, after the third cleavage this gene was highly metal-inducible in essentially all cells of the embryo (morula/blastocyst). Surprisingly, the appearance of metal responsiveness of the MT genes during development correlated with decreased Zn toxicity and increased Cd toxicity; two-cell embryos were Zn-sensitive and Cd-resistant, whereas eight-cell and older embryos were Zn-resistant and Cd-sensitive. In the oviduct, MT-I mRNA was not abundant in total RNA, but was detected specifically in the epithelial cells of the isthmus region and was elevated in these cells on D3 and D4 of gestation. In the oviduct, only isthmus epithelial cells responded to metals (Zn or Cd) by increased accumulation of this mRNA. These studies suggest that preimplantation mouse embryo develops the capacity to respond to metals in the environmental milieu by induction of MT gene expression at about the third cleavage. Whether the lack of responsiveness of these genes before this stage reflects transcriptional repression or attenuated metal ion influx and/or enhanced efflux remains to be determined. Sensitivity and resistance of preimplantation embryos to acute metal toxicity involve mechanisms other than MT gene expression in preimplantation mouse embryos.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

为了提供有关哺乳动物植入前胚胎中基因表达和调控的信息,并探索金属硫蛋白(MT)在此发育阶段的作用,我们测定了小鼠卵子、植入前胚胎和输卵管中组成型和金属诱导型MT mRNA的水平。这些结果与短暂暴露于高水平金属(锌(Zn)或镉(Cd))对植入前胚胎在培养中继续发育成囊胚的影响相关。使用逆转录聚合酶链反应(RT-PCR)分析来自不同发育阶段(妊娠第1天至第4天;D1 = 阴栓)的植入前小鼠胚胎的RNA,以特异性扩增MT-I和MT-II mRNA转录本。使用原位杂交检测卵子、植入前胚胎和输卵管中的MT-I mRNA。输卵管中的这种mRNA也通过Northern印迹法进行分析。结果表明,小鼠MT基因在卵子和植入前小鼠胚胎中以低基础水平协调且组成型表达。在未受精的(卵子)、受精的(单细胞)卵和二细胞胚胎中,MT-I基因对金属离子无明显反应,而在后期卵裂阶段胚胎(四细胞和八细胞)中,MT-I基因在一些胚胎的一些卵裂球中对金属有明显反应。相比之下,在第三次卵裂后,该基因在胚胎(桑椹胚/囊胚)的基本上所有细胞中都具有高度金属诱导性。令人惊讶的是,MT基因在发育过程中金属反应性的出现与锌毒性降低和镉毒性增加相关;二细胞胚胎对锌敏感且对镉有抗性,而八细胞及更老的胚胎对锌有抗性且对镉敏感。在输卵管中,MT-I mRNA在总RNA中不丰富,但在峡部区域的上皮细胞中特异性检测到,并且在妊娠第D3和D4天这些细胞中升高。在输卵管中,只有峡部上皮细胞通过增加这种mRNA的积累对金属(锌或镉)作出反应。这些研究表明,植入前小鼠胚胎在大约第三次卵裂时通过诱导MT基因表达而发展出对环境中的金属作出反应的能力。在此阶段之前这些基因缺乏反应性是反映转录抑制还是减弱的金属离子内流和/或增强的外流仍有待确定。植入前胚胎对急性金属毒性的敏感性和抗性涉及植入前小鼠胚胎中MT基因表达以外的机制。(摘要截短至400字)

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