Scudiero Rosaria, Verderame Mariailaria, Motta Chiara Maria, Simoniello Palma
Department of Biology, University Federico II, Via Mezzocannone 8, 80134 Napoli, Italy.
Department of Sciences and Technology, University Parthenope, Centro Direzionale, Isola C4, 80143 Napoli, Italy.
Int J Mol Sci. 2017 Jul 19;18(7):1569. doi: 10.3390/ijms18071569.
Metallothioneins (MTs) are an evolutionary conserved multigene family of proteins whose role was initially identified in binding essential metals. The physiological role of MT, however, has been revealed to be more complex than expected, since not only are MTs able to bind to toxic heavy metals, but many isoforms have shown specialized and alternative functions. Within this uncertainty, the information available on MTs in non-mammalian vertebrates, particularly in neglected tetrapods such as the reptiles, is even more scant. In this review, we provide a summary of the current understanding on metallothionein presence and function in the oviparous lizard , highlighting the results obtained by studying gene expression in most representative adult and embryonic tissues. The results demonstrate that in adults, cadmium induces MT transcription in a dose- and tissue-specific manner. Thus, the MT mRNAs appear, at least in some cases, to be an unsuitable tool for detecting environmental ion contamination. In early embryos, maternal RNAs sustain developmental needs for MT protein until organogenesis is well on its way. At this time, transcription starts, but again in a tissue- and organ-specific manner, suggesting an involvement in alternative roles. In conclusion, the spatiotemporal distribution of transcripts in adults and embryos definitively confirms that MT has deserved the title of elusive protein.
金属硫蛋白(MTs)是一类在进化过程中保守的多基因家族蛋白质,其最初的作用是结合必需金属。然而,MT的生理作用已被证明比预期的更为复杂,因为MTs不仅能够结合有毒重金属,而且许多异构体还表现出特殊的和替代的功能。在这种不确定性之下,关于非哺乳动物脊椎动物,特别是像爬行动物这种被忽视的四足动物中MTs的可用信息更加匮乏。在这篇综述中,我们总结了目前对卵生蜥蜴中金属硫蛋白的存在情况和功能的理解,重点介绍了通过研究大多数具有代表性的成年和胚胎组织中的基因表达所获得的结果。结果表明,在成年蜥蜴中,镉以剂量和组织特异性的方式诱导MT转录。因此,至少在某些情况下,MT mRNA似乎不是检测环境离子污染的合适工具。在早期胚胎中,母体RNA维持MT蛋白的发育需求,直到器官发生顺利进行。此时,转录开始,但同样是以组织和器官特异性的方式,这表明MT参与了其他作用。总之,转录本在成年和胚胎中的时空分布明确证实了MT当之无愧地获得了难以捉摸的蛋白质这一称号。