衣藻 CTRA-CTR 转运体在铜同化和细胞内动员中的不同功能

IF 2.9 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Metallomics Pub Date : 2024-03-12 DOI:10.1093/mtomcs/mfae013
Daniela Strenkert, Stefan Schmollinger, Srinand Paruthiyil, Bonnie C Brown, Sydnee Green, Catherine M Shafer, Patrice Salomé, Hosea Nelson, Crysten E Blaby-Haas, Jeffrey L Moseley, Sabeeha S Merchant
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引用次数: 0

摘要

成功适应铜(Cu)缺乏症需要在铜的输入和输出之间取得微妙的平衡。在绿藻莱茵衣藻中,铜的输入依赖于一种转录因子--铜响应调节因子 1(CRR1),它负责激活缺铜细胞中的基因。CRR1 的目标基因包括两个属于 CTR/COPT 基因家族的铜转运体(CTR1 和 CTR2)以及一个相关的可溶性蛋白(CTR3)。这些绿藻蛋白的祖先很可能是从一种古老的糜烂藻中获得的,并含有富含半胱氨酸的保守结构域(被命名为 CTR 相关结构域,CTRA),据预测这些结构域参与了铜的获取。我们通过反向遗传学研究发现,衣藻的 CTR1 和 CTR2 是典型的铜导入器,但亲和力不同,而 CTR3 的缺失在测试条件下不会导致可观察到的表型。CTR1 而非 CTR2 的突变再现了 crr1 在缺铜培养基中的不良生长,这与 CTR1 在高亲和力 Cu(I)吸收中的主导作用是一致的。另一方面,锌(Zn)缺乏时 Cu(I)的过度积累(配额的 20 倍)取决于 CRR1 以及 CTR1 和 CTR2。在生长培养基中提供过量的 Cu,可以绕过 Cu 过度积累所需的 CTR 基因表达的 CRR1 依赖性激活。过度积累的 Cu 被螯合到酸钙体中,但通过恢复 Zn 营养可以重新动员。这种动员也依赖于 CRR1,并且需要激活 CTR2 的表达,这再次将 CTR2 与 CTR1 区分开来,并与 CTR2 较低的底物亲和力相一致。
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Distinct function of Chlamydomonas CTRA-CTR transporters in Cu assimilation and intracellular mobilization.

Successful acclimation to copper (Cu) deficiency involves a fine balance between Cu import and export. In the green alga Chlamydomonas reinhardtii, Cu import is dependent on a transcription factor, Copper Response Regulator 1 (CRR1), responsible for activating genes in Cu-deficient cells. Among CRR1 target genes are two Cu transporters belonging to the CTR/COPT gene family (CTR1 and CTR2) and a related soluble protein (CTR3). The ancestor of these green algal proteins was likely acquired from an ancient chytrid and contained conserved cysteine-rich domains (named the CTR-associated domains, CTRA) that are predicted to be involved in Cu acquisition. We show by reverse genetics that Chlamydomonas CTR1 and CTR2 are canonical Cu importers albeit with distinct affinities, while loss of CTR3 did not result in an observable phenotype under the conditions tested. Mutation of CTR1, but not CTR2, recapitulates the poor growth of crr1 in Cu-deficient medium, consistent with a dominant role for CTR1 in high-affinity Cu(I) uptake. On the other hand, the overaccumulation of Cu(I) (20 times the quota) in zinc (Zn) deficiency depends on CRR1 and both CTR1 and CTR2. CRR1-dependent activation of CTR gene expression needed for Cu over-accumulation can be bypassed by the provision of excess Cu in the growth medium. Over-accumulated Cu is sequestered into the acidocalcisome but can become remobilized by restoring Zn nutrition. This mobilization is also CRR1-dependent, and requires activation of CTR2 expression, again distinguishing CTR2 from CTR1 and consistent with the lower substrate affinity of CTR2.

One sentence summary: Regulation of Cu uptake and sequestration by members of the CTR family of proteins in Chlamydomonas.

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来源期刊
Metallomics
Metallomics 生物-生化与分子生物学
CiteScore
7.00
自引率
5.90%
发文量
87
审稿时长
1 months
期刊介绍: Global approaches to metals in the biosciences
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