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青霉 GXCR 铜转运 P 型 ATP 酶基因的功能鉴定。

Functional characterization of the copper-transporting P-type ATPase gene of Penicillium janthinellum strain GXCR.

机构信息

Guangxi Key Laboratory of Subtropical Bioresource Conservation and Utilization, Guangxi University, Nanning, Guangxi 530005, PR China.

出版信息

J Microbiol. 2009 Dec;47(6):736-45. doi: 10.1007/s12275-009-0074-1. Epub 2010 Feb 4.

Abstract

Copper (Cu)-transporting P-type ATPase (CTPA) genes have been documented to play an important role in resistance to heavy metals. However, our understanding of roles of CTPA genes of the filamentous fungi was based only on sequence similarity prediction before. In a previous study, we isolated a Penicillum janthinellum strain GXCR of higher tolerance to Cu (200 mM). In this study, we cloned the partial cDNA of CTPA gene, named PcpA, from the strain GXCR. Sequence alignment indicated that the cloned cDNA sequence has the highest identity (94.4%) with a predictive CTPA gene of Aspergillus clavatus. The PcpA-encoded protein, termed PcpA, has classical functional domains of CTPAs, and shows differences from reported CTPAs in some specific sequence motifs and transmembrane regions. Expression of the PcpA was induced by extracellular Cu, cadmium (Cd), and silver (Ag). PcpA RNA interference (RNAi) mutants with a reduced level of PcpA mRNA were more sensitive to Cu, iron, Cd, and Ag than the wild-type (WT) strain GXCR. When grown in the presence of Cu, iron, and Cd, intracellular Cu and iron contents in the PcpA RNAi mutant were significantly (P<0.05) lower than those in the WT; However, intracellular Cd content in the mutant was significantly (P<0.05) higher than that in the WT. Taken together, it can be concluded that the PcpA functions in Cu uptake and homeostasis, iron uptake, and Cd export from the cytosol to the extracytosol.

摘要

铜(Cu)转运 P 型 ATP 酶(CTPA)基因在重金属抗性中起着重要作用。然而,我们对丝状真菌 CTPA 基因的作用的理解仅基于序列相似性预测。在之前的一项研究中,我们分离到一株对 Cu(200mM)具有更高耐受性的青霉 janthinellum 菌株 GXCR。在这项研究中,我们从菌株 GXCR 中克隆了 CTPA 基因的部分 cDNA,命名为 PcpA。序列比对表明,克隆的 cDNA 序列与 Aspergillus clavatus 的预测 CTPA 基因具有最高的同源性(94.4%)。PcpA 编码的蛋白,称为 PcpA,具有 CTPAs 的经典功能结构域,并且在一些特定的序列基序和跨膜区域与报道的 CTPAs 存在差异。PcpA 的表达受细胞外 Cu、镉(Cd)和银(Ag)的诱导。与野生型(WT)菌株 GXCR 相比,PcpA RNA 干扰(RNAi)突变体中 PcpA mRNA 水平降低,对 Cu、铁、Cd 和 Ag 更为敏感。当在 Cu、铁和 Cd 存在的情况下生长时,PcpA RNAi 突变体中的细胞内 Cu 和铁含量明显(P<0.05)低于 WT;然而,突变体中的细胞内 Cd 含量明显(P<0.05)高于 WT。综上所述,可以得出结论,PcpA 参与 Cu 的摄取和稳态、铁的摄取以及 Cd 从细胞质向细胞外的输出。

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