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重金属暴露可以改变秀丽线虫的脂肪积累(英文)被引量:2
2010年
目的:研究重金属暴露对秀丽线虫脂肪积累的急性中毒效应,鉴定重金属暴露秀丽线虫中发生表达模式改变的与脂肪酸代谢相关的基因。方法:银、镉、铬、铜、汞、锰和锌作为测试重金属,Nile Red荧光探针染色分析重金属暴露线虫肠道的脂肪酸含量变化,并测定重金属暴露线虫中脂肪酸代谢相关基因的转录水平变化。结果:在所分析重金属中,高浓度银、铬和铜暴露可以显著诱导线虫肠道脂肪积累的增加,而高浓度镉暴露可以显著降低线虫肠道脂肪的积累。而且,与对照组相比,高浓度的银和铬暴露不明显影响基因pod-2、gei-7、lbp-8、gpd-3、W05G11.6、C03H5.4和C07E3.9的表达水平,而在暴露的线虫动物中,基因fat-5、fat-6和fat-7的表达水平显著升高,lbp-1、acs-2和ech-1的表达水平显著降低。结论:高浓度银、铬、铜和镉暴露可以导致异常的秀丽线虫肠道的脂肪积累变化,其中高浓度银和铬暴露导致线虫脂肪积累增加的主要原因可能归因于暴露动物体内脂肪酸去饱和与线粒体β-氧化代谢途径以及脂肪酸结合能力的异常。
武秋立杜敏王大勇
关键词:代谢途径NILE秀丽线虫
Genes required for the functions of olfactory AWA neuron regulate the longevity of Caenorhabditis elegans in an insulin/IGF signaling-dependent fashion
2010年
Objective To investigate the interaction between the genes required for the functions of AWA olfactory neuron and insulin/IGF signaling in regulating the longevity of nematode Caenorhabditis elegans (C. elegans). Methods The mutants that had loss-of-function mutation of the genes required for AWA, AWC, ASE, and AFD sensory neurons were employed. Lifespan, the speed of pharynx pumping, the intestinal autofluorescence, the dauer formation, and the brood size were examined. Rescue experiments were performed to confrm the role of the genes required for the functions of AWA neuron in regulating lifespan. Moreover, genetic interactions between genes required for the functions of AWA neuron and insulin/ IGF signaling were investigated. Results Mutations of odr-7, odr-2, and odr-3 genes required for the functions of AWA neuron significantly increased the mean lifespan of nematodes and slowed the accumulation of intestinal autofluorescence. Besides, these mutations were closely associated with higher pumping rates during aging. However, mutation of odr-7, odr- 2, or odr-3 did not obviously affect the brood size or the dauer formation, and the regulation of longevity by odr-7, odr-2, and odr-3 was temperature-independent. In contrast, mutations of genes required for the functions of ASE, AWC, and AFD sensory neurons did not infuence the nematode lifespan. Moreover, expression of odr-7, odr-2 and odr-3 in AWA neuron could completely or largely restore the altered lifespan in odr-7, odr-2 and odr-3 mutants. Furthermore, genetic interaction assay demonstrated that the extended lifespan in odr-7 mutant could be suppressed by daf-16 mutation and enhanced by daf- 2 or age-1 mutation, whereas mev-1 and pha-4 were not required for the long lifespan of odr-7 mutant. Conclusion The genes required for the function of AWA sensory neuron could regulate the nematode longevity in an insulin/IGF signaling-dependent fashion in C. elegans.
沈露露杜敏林兴凤蔡婷王大勇
关键词:LONGEVITY
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