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表达和铜结合研究具有 Cox19 铜结合基序的恶性疟原虫蛋白。

Expression and copper binding studies of a Plasmodium falciparum protein with Cox19 copper binding motifs.

机构信息

Biochemistry, University of KwaZulu-Natal, Pietermaritzburg, 3201, South Africa.

Biochemistry, University of KwaZulu-Natal, Pietermaritzburg, 3201, South Africa.

出版信息

Exp Parasitol. 2023 Aug;251:108572. doi: 10.1016/j.exppara.2023.108572. Epub 2023 Jun 20.

DOI:10.1016/j.exppara.2023.108572
PMID:37348640
Abstract

Copper can exist in an oxidized and a reduced form, which enables the metal to play essential roles as a catalytic co-factor in redox reactions in many organisms. Copper confers redox activity to the terminal electron transport chain cytochrome c oxidase protein. Cytochrome c oxidase in yeast obtains copper for the Cu site in the Cox1 subunit from Cox11 in association with Cox19. When copper is chelated in growth medium, Plasmodium falciparum parasite development in infected red blood cells is inhibited and excess copper is toxic for the parasite. The gene of a 26 kDa Plasmodium falciparum PfCox19 protein with two CxC Cox19 copper binding motifs, was cloned and expressed as a 66 kDa fusion protein with maltose binding protein and affinity purified (rMBP-PfCox19). rMBP-PfCox19 bound copper measured by: a bicinchoninic acid release assay; an in vivo bacterial host growth inhibition assay; ascorbate oxidation inhibition and differential scanning fluorimetry. The native protein was detected by antibodies raised against rMBP-PfCox19. PfCox19 binds copper and is predicted to associate with PfCox11 in the insertion of copper into the Cu site of Plasmodium cytochrome c oxidase. Characterisation of the proteins involved in Plasmodium spp. copper metabolism will help us understand the role of cytochrome c oxidase and this essential metal in Plasmodium homeostasis.

摘要

铜可以以氧化态和还原态存在,这使金属能够在许多生物体的氧化还原反应中作为催化辅助因子发挥重要作用。铜赋予细胞色素 c 氧化酶蛋白末端电子传递链的氧化还原活性。酵母中的细胞色素 c 氧化酶从 Cox11 与 Cox19 相关联的 Cox1 亚基中获取 Cu 位点的铜。当在生长培养基中螯合铜时,寄生虫疟原虫在感染的红细胞中的发育受到抑制,过量的铜对寄生虫有毒。克隆并表达了疟原虫 PfCox19 蛋白的一个 26 kDa 的基因,该蛋白具有两个 CxC Cox19 铜结合基序,作为与麦芽糖结合蛋白融合的 66 kDa 融合蛋白进行亲和纯化(rMBP-PfCox19)。rMBP-PfCox19 通过以下方法结合铜:双缩脲酸释放测定;体内细菌宿主生长抑制测定;抗坏血酸氧化抑制和差示扫描荧光法。通过针对 rMBP-PfCox19 产生的抗体检测到天然蛋白。PfCox19 结合铜,并预测在将铜插入疟原虫细胞色素 c 氧化酶的 Cu 位点中与 PfCox11 相关联。参与疟原虫属铜代谢的蛋白质的特征将帮助我们了解细胞色素 c 氧化酶和这种必需金属在疟原虫体内平衡中的作用。

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