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Paralogs of the C-Terminal Domain of the Cyanobacterial Orange Carotenoid Protein Are Carotenoid Donors to Helical Carotenoid Proteins

机译:蓝藻橙类胡萝卜素蛋白C末端域的旁系同源物是螺旋类胡萝卜素蛋白的类胡萝卜素供体

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摘要

The photoactive Orange Carotenoid Protein (OCP) photoprotects cyanobacteria cells by quenching singlet oxygen and excess excitation energy. Its N-terminal domain is the active part of the protein, and the C-terminal domain regulates the activity. Recently, the characteristics of a family of soluble carotenoid-binding proteins (Helical Carotenoid Proteins [HCPs]), paralogs of the N-terminal domain of OCP, were described. Bioinformatics studies also revealed the existence of genes coding for homologs of CTD. Here, we show that the latter genes encode carotenoid proteins (CTDHs). This family of proteins contains two subgroups with distinct characteristics. One CTDH of each clade was further characterized, and they proved to be very good singlet oxygen quenchers. When synthesized in Escherichia coli or Synechocystis PCC 6803, CTDHs formed dimers that share a carotenoid molecule and are able to transfer their carotenoid to apo-HCPs and apo-OCP. The CTDHs from clade 2 have a cysteine in position 103. A disulfide bond is easily formed between the monomers of the dimer preventing carotenoid transfer. This suggests that the transfer of the carotenoid could be redox regulated in clade 2 CTDH. We also demonstrate here that apo-OCPs and apo-CTDHs are able to take the carotenoid directly from membranes, while HCPs are unable to do so. HCPs need the presence of CTDH to become holo-proteins. We propose that, in cyanobacteria, the CTDHs are carotenoid donors to HCPs.
机译:光敏性橙色类胡萝卜素蛋白(OCP)通过猝灭单线态氧和过量的激发能来保护蓝细菌细胞。它的N末端结构域是蛋白质的活性部分,而C末端结构域调节活性。最近,描述了可溶性类胡萝卜素结合蛋白(螺旋类胡萝卜素蛋白[HCPs])家族的特征,这是OCP N末端结构域的旁系同源物。生物信息学研究还揭示了存在编码CTD同源物的基因。在这里,我们表明,后者的基因编码类胡萝卜素蛋白(CTDHs)。该蛋白家族包含两个具有不同特征的亚组。每个进化枝的一个CTDH被进一步鉴定,并且被证明是非常好的单线态氧猝灭剂。当在大肠杆菌或蓝藻PCC 6803中合成时,CTDHs形成共享一个类胡萝卜素分子的二聚体,并能够将其类胡萝卜素转移至载脂蛋白-HCP和载脂蛋白-OCP。来自进化枝2的CTDH在位置103处具有半胱氨酸。在二聚体的单体之间容易形成二硫键,从而防止类胡萝卜素转移。这表明类胡萝卜素的转移可以在进化枝2 CTDH中被氧化还原调节。我们在这里还证明了apo-OCPs和apo-CTDHs能够直接从膜上摄取类胡萝卜素,而HCPs不能这样做。 HCP需要存在CTDH才能成为完整蛋白。我们建议,在蓝细菌中,CTDH是HCP的类胡萝卜素供体。

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