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Functional CTR-type Cu(I) transporters in an oceanic diatom

机译:功能性CTR型CU(I)海洋硅藻的转运蛋白

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Copper concentration is so low in some remote parts of the sea it limits phytoplankton growth, but may be high enough in coastal and estuarine regions to be toxic. Acclimation to variations in Cu concentration thus requires a tightly regulated Cu transport system to help maintain Cu homeostasis. In marine species, the molecular mechanisms of Cu transport are not known. We studied Cu-responsive genes and uptake in Thalassiosira oceanica at environmentally relevant Cu concentrations varying between 0.012 and 12 900 pmol Cu ' l(-1). Copper uptake rate assessed at high Cu concentration was three-fold faster in Cu-limited than in Cu-replete cells, confirming the existence of an inducible uptake pathway in this diatom. Four putative CTR-type Cu transporters (ToCTR1, ToCTR2, ToCTR3a and ToCTR3b) identified in the transcriptome shared conserved features with known high-affinity Cu(I) transporters. Expression of the CTR genes was upregulated as Cu concentration declined and cells maintained maximum rates of growth. Further decreases in Cu led to decreased growth rate and increased abundance of ToCTR3a/b. Both ToCTR3a and 3b restored growth of a Cu transport mutant, Saccharomyces cerevisiae ctr1 Delta ctr3 Delta, in Cu-deficient medium and increased the uptake rates of Cu(I) and Cu(II). Thus, ToCTR3a/3b is a high-affinity Cu(I) transporter that, in conjunction with the other ToCTRs, may enable T. oceanica to survive in Cu-deplete ocean environments and respond to natural variation in Cu availability.
机译:铜浓度在海洋的一些偏远地区非常低,它限制了浮游植物的生长,但可能在沿海和河口地区的含量高,以毒性。因此,对Cu浓度的变化的适应需要紧密调节的Cu运输系统,以帮助维持Cu稳态。在海洋物种中,Cu运输的分子机制尚不清楚。在环境相关的Cu浓度在0.012和12 900pmol -1(-1)之间的环境相关的Cu浓度下,我们研究了Cu-encightive基因和摄取。在高Cu浓度下评估的铜吸收率在Cu-Limited中比在Cu-Replete细胞中快三倍,确认在该硅藻中存在诱导型摄取途径。在具有已知的高亲和力Cu(I)转运蛋白的转录组共同保守特征中鉴定了四种推定的Ctr型Cu转运蛋白(TOCTR1,TOCTR2,TOCTR3A和TOCTR3B)。随着Cu浓度下降和细胞保持最大生长速率,Ctr基因的表达上调。 Cu的进一步降低导致降低的生长速率和增加的TOCTR3A / B的丰度。 TOCTR3A和3B恢复在Cu缺陷介质中恢复Cu转运突变体,Cucharomyces Cerevisiae Ctr3 Delta的生长,并增加了Cu(I)和Cu(II)的摄取速率。因此,TOCTR3A / 3B是一种高亲和力Cu(I)转运蛋白,与其他TOCTRS结合,可以使Oceanica能够在Cu-Feplete海洋环境中存活,并响应Cu可用性的自然变化。

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