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藻红蛋白可避免真核生物在氧化应激下细胞内活性氧的产生和生理功能衰退。

Phycoerythrin averts intracellular ROS generation and physiological functional decline in eukaryotes under oxidative stress.

作者信息

Sonani Ravi R, Rastogi Rajesh P, Singh Niraj K, Thadani Jaymesh, Patel Puja J, Kumar Jitendra, Tiwari Anand K, Devkar Ranjitsinh V, Madamwar Datta

机构信息

Post-Graduate Department of Biosciences, UGC-Centre of Advanced Study, Sardar Patel University, Vadtal Road, Satellite Campus, Bakrol, Anand, Gujarat, 388 315, India.

Commission of Atomic and Alternative Energy, Institute of Biology and Technology of Saclay, 91191, Gif/Yvette, France.

出版信息

Protoplasma. 2017 Mar;254(2):849-862. doi: 10.1007/s00709-016-0996-5. Epub 2016 Jun 22.

Abstract

In vitro antioxidant virtue and life-prolonging effect of phycoerythrin (PE; a pigment protein isolated from Phormidium sp. A09DM) have been revealed in our previous reports (Sonani et al. in Age 36:9717, 2014a; Sonani et al. in Process Biochem 49:1757-1766, 2014b). It has been hypothesized that the PE expands life span of Caenorhabditis elegans (bears large resemblance with human aging pathways) due to its antioxidant virtue. This hypothesis is tested in present study by checking the effect of PE on intracellular reactive oxygen species (ROS) generation and associated physiological deformities using mouse and human skin fibroblasts, C. elegans, and Drosophila melanogaster Oregon R and by divulging PE's structural attributes responsible for its antioxidant asset. PE treatment displayed noteworthy decrease of 67, 48, and 77 % in ROS level in mouse fibroblast (3T3-L1), human fibroblast, and C. elegans N2, respectively, arisen under chemical-induced oxidative stress. PE treatment delayed the development of paraquat-induced Alzheimer phenotype by 14.5 % in C. elegans CL4176. Furthermore, PE improved the locomotion of D. melanogaster Oregon R under oxidative stress with simultaneous up-regulation in super-oxide dismutase and catalase activities. The existence of 52 Glu + Asp + His + Thr residues (having metal ion sequestration capacity), 5 phycoerythrobilin chromophores (potential electron exchangers) in PE's primary structure, and significant hydrophobic patches on the surface of its α- and β-subunits are supposed to collectively contribute in the antioxidant virtues of PE. Altogether, results support the hypothesis that it is the PE's antioxidant asset, which is responsible for its life-prolonging effect and thus could be exploited in the therapeutics of ROS-associated abnormalities including aging and neurodegeneration in eukaryotes.

摘要

我们之前的报告(索纳尼等人,《衰老》,2014年,第36卷,第9717页;索纳尼等人,《生物化学过程》,2014年,第49卷,第1757 - 1766页)已揭示了藻红蛋白(PE;一种从席藻属A09DM分离出的色素蛋白)的体外抗氧化特性和延长寿命的作用。据推测,由于其抗氧化特性,PE可延长秀丽隐杆线虫的寿命(该线虫与人类衰老途径极为相似)。在本研究中,通过检测PE对小鼠和人类皮肤成纤维细胞、秀丽隐杆线虫以及黑腹果蝇俄勒冈R品系细胞内活性氧(ROS)生成及相关生理畸形的影响,并揭示PE具有抗氧化特性的结构属性,对这一假设进行了验证。在化学诱导的氧化应激条件下,PE处理使小鼠成纤维细胞(3T3 - L1)、人类成纤维细胞和秀丽隐杆线虫N2中的ROS水平分别显著降低了67%、48%和77%。在秀丽隐杆线虫CL4176中,PE处理使百草枯诱导的阿尔茨海默病表型的发展延迟了14.5%。此外,在氧化应激条件下,PE改善了黑腹果蝇俄勒冈R品系的运动能力,同时超氧化物歧化酶和过氧化氢酶的活性上调。PE一级结构中存在52个具有金属离子螯合能力的Glu + Asp + His + Thr残基、5个藻红胆素发色团(潜在的电子交换体),以及其α和β亚基表面显著的疏水区域,这些因素共同促成了PE的抗氧化特性。总之,研究结果支持了以下假设:正是PE的抗氧化特性导致了其延长寿命的作用,因此可用于治疗包括真核生物衰老和神经退行性变在内的与ROS相关的异常病症。

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