Mannan oligosaccharide requires functional ETC and TLR for biological radiation protection to normal cells.

Q1 Biochemistry, Genetics and Molecular Biology BMC Cell Biology Pub Date : 2018-06-27 DOI:10.1186/s12860-018-0161-4
Sweta Sanguri, Damodar Gupta
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引用次数: 9

Abstract

Background: Low LET Ionizing radiation is known to alter intracellular redox balance by inducing free radical generation, which may cause oxidative modification of various cellular biomolecules. The extent of biomolecule-modifications/ damages and changes in vital processes (viz. cellular homeostasis, inter-/intra-cellular signaling, mitochondrial physiology/dynamics antioxidant defence systems) are crucial which in turn determine fate of cells.

Results: In the present study, we expended TLR expressing (normal/ transformed) and TLR null cells; and we have shown that mannan pretreatment in TLR expressing normal cells offers survival advantage against lethal doses of ionizing radiation. On the contrary, mannan pretreatment does not offer any protection against radiation to TLR null cells, NKE ρ° cells and transformed cells. In normal cells, abrupt decrease in mitochondrial membrane potential and endogenous ROS levels occurs following treatment with mannan. We intend to irradiate mannan-pretreated cells at a specific stage of perturbed mitochondrial functioning and ROS levels to comprehend if mannan pretreatment offers any survival advantage against radiation exposure to cells. Interestingly, pre-irradiation treatment of cells with mannan activates NFκB, p38 and JNK, alters mitochondrial physiology, increases expression of Cu/ZnSOD and MnSOD, minimizes oxidation of mitochondrial phospholipids and offers survival advantage in comparison to irradiated group, in TLR expressing normal cells.

Conclusion: The study demonstrates that TLR and mitochondrial ETC functions are inevitable in radio-protective efficacy exhibited by mannan.

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甘露寡糖需要功能性ETC和TLR对正常细胞进行生物辐射保护。
背景:已知低LET电离辐射通过诱导自由基的产生来改变细胞内的氧化还原平衡,这可能导致各种细胞生物分子的氧化修饰。生物分子修饰/损伤的程度和生命过程的变化(即细胞内稳态、细胞间/细胞内信号传导、线粒体生理学/动力学抗氧化防御系统)至关重要,这反过来又决定了细胞的命运。结果:在本研究中,我们扩增了表达TLR(正常/转化)和TLR缺失的细胞;并且我们已经表明,表达TLR的正常细胞中的甘露聚糖预处理提供了对抗致命剂量的电离辐射的生存优势。相反,甘露聚糖预处理对TLR无效细胞、NKEρ°细胞和转化细胞没有任何抗辐射保护作用。在正常细胞中,用甘露聚糖处理后,线粒体膜电位和内源性ROS水平突然下降。我们打算在线粒体功能和ROS水平紊乱的特定阶段照射甘露聚糖预处理的细胞,以了解甘露聚糖预治疗是否对细胞的辐射暴露具有任何生存优势。有趣的是,在表达TLR的正常细胞中,用甘露聚糖预辐照处理细胞可激活NFκB、p38和JNK,改变线粒体生理,增加Cu/ZnSOD和MnSOD的表达,最大限度地减少线粒体磷脂的氧化,并与辐照组相比提供生存优势。结论:研究表明,甘露聚糖的放射保护作用中,TLR和线粒体ETC功能是不可避免的。
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来源期刊
BMC Cell Biology
BMC Cell Biology 生物-细胞生物学
CiteScore
7.30
自引率
0.00%
发文量
0
审稿时长
12 months
期刊介绍: BMC Molecular and Cell Biology, formerly known as BMC Cell Biology, is an open access journal that considers articles on all aspects of both eukaryotic and prokaryotic cell and molecular biology, including structural and functional cell biology, DNA and RNA in a cellular context and biochemistry, as well as research using both the experimental and theoretical aspects of physics to study biological processes and investigations into the structure of biological macromolecules.
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