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Detoxification and sensing mechanisms are of similar importance for Cd resistance in Caenorhabditis elegans

机译:秀丽隐杆线虫的Cd抵抗力与排毒和传感机制具有相似的重要性

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摘要

The present study employed mass spectrometry (ICP-MS) to measure the internal cadmium concentrations (Cdint) in Caenorhabditis elegans to determine Cd uptake from a Cd-containing environment as well as Cd release under Cd-free conditions. To analyze the functional role of several ATP binding cassette (ABC) transporters (e.g., HMT-1 and MRP-1) and phytochelatin synthase (PCS), we compared wild-type (WT) and different mutant strains of C. elegans. As a pre-test on selected mutant strains, several time-resolved experiments were performed to determine the survival rate and avoidance behavior of C. elegans under Cd stress, which confirmed the already known Cd sensitivity of the deletion mutants mrp-1Δ, pcs-1Δ, and hmt-1Δ. In addition, these experiments revealed flight reactions under Cd stress to be almost completely absent in mrp-1Δ mutants. The ICP-MS studies showed Cd uptake to be significantly higher in mrp-1Δ and WT than in hmt-1Δ. As Cd is ingested with food, food refusal due to very early Cd stress and its perception was likely the reason for the reduced Cd uptake of hmt-1Δ. Cd release (detoxification) was found to be maximal in mrp-1Δ, minimal in hmt-1Δ, and intermediate in WT. High mortality under Cd stress, food refusal, and minimal Cd release in the case of hmt-1Δ suggest a vital importance of the HMT-1/PCS-1 detoxification system for the survival of C. elegans under Cd stress. High mortality under Cd stress, absence of an avoidance behavior, missing food refusal, and maximal Cd release in the case of mrp-1Δ indicate that MRP-1 is less important for Cd detoxification under severe stress, but is probably important for Cd perception. Accordingly, our results suggest that the survival of WT under Cd stress (or possibly other forms of metal stress) primarily depends on the function of the HMT-1/PCS-1 detoxification system and the presence of a sensing mechanism to control the uptake of Cd (or other metals), which keeps internal Cd (or metal) concentrations under control, to some extent, for the timely mobilization of protection and repair systems.
机译:本研究采用质谱(ICP-MS)测量秀丽隐杆线虫中的内部镉浓度(Cdint),以确定从含Cd的环境中吸收Cd以及在无Cd的条件下释放Cd。为了分析几种ATP结合盒(ABC)转运蛋白(例如HMT-1和MRP-1)和植物螯合素合酶(PCS)的功能作用,我们比较了野生型(WT)和秀丽隐杆线虫的不同突变株。作为对所选突变菌株的预测试,进行了一些时间分辨实验以确定秀丽隐杆线虫在Cd胁迫下的存活率和回避行为,这证实了缺失突变体mrp-1Δ,pcs-的已知Cd敏感性。 1Δ和hmt-1Δ。此外,这些实验表明在mrp-1Δ突变体中几乎没有Cd胁迫下的飞行反应。 ICP-MS研究表明,mrp-1Δ和WT中的Cd吸收显着高于hmt-1Δ中的Cd吸收。由于食物中摄入Cd,由于非常早的Cd胁迫和对Cd的感知导致食物拒绝,这可能是hmt-1ΔCd吸收减少的原因。发现镉释放(解毒)在mrp-1Δ中最大,在hmt-1Δ中最小,在WT中中等。在hmt-1Δ的情况下,镉胁迫下的高死亡率,拒食和最小的镉释放表明HMT-1 / PCS-1解毒系统对于秀丽线虫在镉胁迫下的生存至关重要。在Cd胁迫下的高死亡率,缺乏回避行为,缺少食物拒绝以及在mrp-1Δ情况下最大的Cd释放表明,MRP-1在严重胁迫下对Cd排毒不太重要,但可能对Cd感知很重要。因此,我们的结果表明,WT在Cd胁迫(或可能的其他形式的金属胁迫)下的存活主要取决于HMT-1 / PCS-1排毒系统的功能以及是否存在能够控制Cd吸收的传感机制。 Cd(或其他金属),可在一定程度上控制内部Cd(或金属)的浓度,以便及时动员保护和修复系统。

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