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SMF-1 SMF-2 and SMF-3 DMT1 Orthologues Regulate and Are Regulated Differentially by Manganese Levels in C. elegans

机译:SMF-1SMF-2和SMF-3 DMT1直向同源物对秀丽隐杆线虫中锰水平的调节和差异调节

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摘要

Manganese (Mn) is an essential metal that can exert toxic effects at high concentrations, eventually leading to Parkinsonism. A major transporter of Mn in mammals is the divalent-metal transporter (DMT1). We characterize here DMT1-like proteins in the nematode C. elegans, which regulate and are regulated by Mn and iron (Fe) content. We identified three new DMT1-like genes in C. elegans: smf-1, smf-2 and smf-3. All three can functionally substitute for loss of their yeast orthologues in S. cerevisiae. In the worm, deletion of smf-1 or smf-3 led to an increased Mn tolerance, while loss of smf-2 led to increased Mn sensitivity. smf mRNA levels measured by QRT-PCR were up-regulated upon low Mn and down-regulated upon high Mn exposures. Translational GFP-fusions revealed that SMF-1 and SMF-3 strongly localize to partially overlapping apical regions of the gut epithelium, suggesting a differential role for SMF-1 and SMF-3 in Mn nutritional intake. Conversely, SMF-2 was detected in the marginal pharyngeal epithelium, possibly involved in metal-sensing. Analysis of metal content upon Mn exposure in smf mutants revealed that SMF-3 is required for normal Mn uptake, while smf-1 was dispensable. Higher smf-2 mRNA levels correlated with higher Fe content, supporting a role for SMF-2 in Fe uptake. In smf-1 and smf-3 but not in smf-2 mutants, increased Mn exposure led to decreased Fe levels, suggesting that both metals compete for transport by SMF-2. Finally, SMF-3 was post-translationally and reversibly down-regulated following Mn-exposure. In sum, we unraveled a complex interplay of transcriptional and post-translational regulations of 3 DMT1-like transporters in two adjacent tissues, which regulate metal-content in C. elegans.
机译:锰(Mn)是一种必需金属,在高浓度时会产生毒性作用,最终导致帕金森氏症。哺乳动物中Mn的主要转运蛋白是二价金属转运蛋白(DMT1)。我们在这里表征线虫秀丽隐杆线虫中的DMT1样蛋白,该蛋白通过Mn和铁(Fe)含量进行调节和调节。我们在秀丽隐杆线虫中鉴定了三个新的类似于DMT1的基因:smf-1,smf-2和smf-3。这三个都可以在功能上替代酿酒酵母中酵母直向同源物的丢失。在蠕虫中,smf-1或smf-3的缺失导致Mn耐受性增加,而smf-2的缺失导致Mn敏感性增加。通过QRT-PCR测量的smf mRNA水平在低锰时上调,在高锰暴露时下调。翻译GFP融合显示SMF-1和SMF-3强烈定位于肠道上皮的部分重叠的顶端区域,表明SMF-1和SMF-3在锰营养摄入中的作用不同。相反,在边缘咽上皮中检测到SMF-2,可能参与了金属感测。 smf突变体中锰暴露后金属含量的分析表明,正常的锰摄取需要SMF-3,而smf-1是可有可无的。较高的smf-2 mRNA水平与较高的铁含量相关,支持SMF-2在铁吸收中的作用。在smf-1和smf-3中,但在smf-2突变体中则没有,增加的Mn暴露导致Fe含量降低,表明这两种金属都竞争通过SMF-2转运。最后,SMF-3在锰暴露后被翻译后可逆地下调。总而言之,我们揭示了两个相邻组织中3个DMT1样转运蛋白的转录和翻译后调控的复杂相互作用,它们调节 C中的金属含量。线虫

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