Shi H, Zhang C, Zhao J, Li Y, Li Y, Li J, Zeng Z, Gao L
School of Traditional Chinese Medicine, Southern Medical University, Guangzhou 510515, China.
Department of Biochemistry, School of Basic Medical Sciences, Southern Medical University, Guangzhou 510515, China.
Nan Fang Yi Ke Da Xue Xue Bao. 2022 Aug 20;42(8):1159-1165. doi: 10.12122/j.issn.1673-4254.2022.08.07.
To investigate the changes of lipid metabolism and stress response of adult exposed to non-freezing low temperature and explore the possible mechanism.
The survival rate and activity of adult cultured at 20℃ or 4℃ were observed.Lipid metabolism of the cultured adult was evaluated using oil red O staining and by detecting the expressions of the genes related with lipid metabolism.The effects of low temperature exposure on stress level of adult were evaluated using mitochondrial fluorescence staining and by detecting the expression levels of stress-related genes and antioxidant genes at both the mRNA and protein levels.
The lifespan and activity of adult exposed to low temperature were significantly reduced with decreased lipid accumulation ( < 0.05) and decreased expressions of genes related with fatty acid synthesis and metabolism (-5, -6, -7, -1, -49, -2 and -1; < 0.01).Cold stress significantly increased the expressions of heat shock proteins hsp-70 and hsp16.2( < 0.05) but lowered the number of mitochondria ( < 0.0001) and the expressions of -1, -2, 3 and -1( < 0.05).Knockout of -5, -49 or both -5 and -6 obviously enhanced the sensitivity of to cold stress as shown by further reduced activity ( < 0.05) and reduced survival rate at 24 h ( < 0.0001) under cold stress.
Exposure to a low temperature at 4℃ results in lowered lipid metabolism of adult accompanied by a decreased mitochondrial number and quality control ability, which triggers high expressions of stress-related genes and causes reduction of antioxidant capacity, thus callsing lowered activity and reduced lifespan of .
研究成年个体暴露于非冷冻低温下脂质代谢和应激反应的变化,并探讨其可能机制。
观察在20℃或4℃培养的成年个体的存活率和活性。使用油红O染色并检测与脂质代谢相关基因的表达来评估培养的成年个体的脂质代谢。使用线粒体荧光染色并在mRNA和蛋白质水平检测应激相关基因和抗氧化基因的表达水平来评估低温暴露对成年个体应激水平的影响。
暴露于低温下的成年个体的寿命和活性显著降低,脂质积累减少(P<0.05),脂肪酸合成和代谢相关基因的表达降低(-5、-6、-7、-1、-49、-2和-1;P<0.01)。冷应激显著增加热休克蛋白hsp-70和hsp16.2的表达(P<0.05),但降低线粒体数量(P<0.0001)以及-1、-2、3和-1的表达(P<0.05)。敲除-5、-49或同时敲除-5和-6明显增强了个体对冷应激的敏感性,表现为冷应激下活性进一步降低(P<0.05)和24小时存活率降低(P<0.0001)。
暴露于4℃低温会导致成年个体脂质代谢降低,同时线粒体数量和质量控制能力下降,这会触发应激相关基因的高表达并导致抗氧化能力降低,从而导致个体活性降低和寿命缩短。