Swain S C, Keusekotten K, Baumeister R, Stürzenbaum S R
Cardiff University, School of Biosciences, Wales, UK.
J Mol Biol. 2004 Aug 20;341(4):951-59. doi: 10.1016/j.jmb.2004.06.050.
Metallothioneins are considered to be the primary player in the detoxification of and protection from cadmium, a teratogen, mutagen and potentially lethal heavy metal. The nematode Caenorhabditis elegans has only two metallothioneins, mtl-i and mtIl-2, thus making it an ideal organism to investigate the phenotypic effects of cadmium toxicosis. The functional importance of metallothioneins in cadmium trafficking was highlighted through the generation of viable green fluorescent protein (GFP) expressing transgenes, a metallothionein null allele, as well as RNAi mediated metallothionein knock-downs. A highly sensitive dose and temporal transcriptional response to cadmium, but not copper or zinc, was shown to be equally prevalent in both isoforms. No measurable compensatory up-regulation of mtl-l could be observed in the null allele of mtl-2, suggesting that both isoforms are independent and not synergistic in their mode of action. Exposure to cadmium affected all demographic indices measured, manifested by a reduction in body size, generation time, brood size and lifespan. These effects were magnified in the knock-out or wild-type subjected to a knock down by RNAi, however, only in the presence of cadmium. This substantiates the notion that metallothioneins play a pivotal role in the protection from cadmium toxicosis. Finally, an earthworm metallothionein-GFP construct could be activated in C. elegans upon exposure to cadmium, the results providing further evidence that the transcriptional control of metallothioneins is fundamentally divergent in lower invertebrates and not mediated via MTF-1 as in more complex organisms.
金属硫蛋白被认为是镉解毒和免受其侵害的主要参与者,镉是一种致畸剂、诱变剂和潜在致命重金属。线虫秀丽隐杆线虫只有两种金属硫蛋白,即mtl-i和mtIl-2,因此使其成为研究镉中毒表型效应的理想生物体。通过产生表达绿色荧光蛋白(GFP)的可行转基因、金属硫蛋白无效等位基因以及RNAi介导的金属硫蛋白敲低,突出了金属硫蛋白在镉转运中的功能重要性。结果表明,两种异构体对镉(而非铜或锌)均表现出高度敏感的剂量和时间转录反应。在mtl-2的无效等位基因中未观察到mtl-l的可测量补偿性上调,这表明两种异构体在作用方式上是独立的,而非协同的。接触镉会影响所测量的所有人口统计学指标,表现为体型、世代时间、产卵量和寿命的减少。然而,只有在存在镉的情况下,这些效应在通过RNAi敲除或敲低的野生型中才会放大。这证实了金属硫蛋白在免受镉中毒保护中起关键作用的观点。最后,在秀丽隐杆线虫中,接触镉后蚯蚓金属硫蛋白-GFP构建体可被激活,结果进一步证明,金属硫蛋白的转录调控在低等无脊椎动物中存在根本差异,且不像在更复杂生物体中那样通过MTF-1介导。