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哈德腺细胞凋亡、自噬和线粒体在黑线仓鼠衰老过程中的变化

Change on apoptosis, autophagy and mitochondria of the Harderian gland in Cricetulus barabensis during age.

机构信息

College of Life Sciences, Qufu Normal University, 273165 Qufu, Shandong, China.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2021 Apr-May;253:110547. doi: 10.1016/j.cbpb.2020.110547. Epub 2020 Dec 17.

Abstract

Harderian gland (HG) plays an important role in the physiological adaptation to terrestrial life, however, the mechanisms underlying the changes in the structure and function of the HG during aging remain unclear. This study investigated autophagy and apoptosis in the HG of striped dwarf hamsters (Cricetulus barabensis) of different ages (sub-adult, adult and aged groups) in both males and females. The results showed that LC3II/LC3I and puncta of LC3 were significantly higher in adult and aged individuals than sub-adults, whereas P62 decreased with age. Bax/bcl2was the highest in sub-adults of male and female individuals. Caspase3 activity was the highest in sub-adults of male and female individuals, and the citrate synthase activity was highest in sub-adults of females. ATP synthase, citrate synthase, dynamin-related protein 1 and mitochondrial fission factor (Mff) were the highest in sub-adults of females. Peptidylglycine α-amidating monooxygenase were the highest in the aged group, and those of gonadotropin-releasing hormone was the highest in the adult group. LC3II/LC3I, P62, Drp1, Fis, and bax/bcl2 were higher in males than that in females. These results suggest that apoptosis mainly affects growth and development in the HG, whereas autophagy affects aging. The difference of the HG weight and mitochondrial function between sexes is mainly related to the apoptosis.

摘要

哈德腺(HG)在生理适应陆地生活中起着重要作用,然而,HG 结构和功能在衰老过程中变化的机制尚不清楚。本研究调查了不同年龄(亚成年、成年和老年组)雄性和雌性条纹侏儒仓鼠(Cricetulus barabensis)HG 中的自噬和细胞凋亡。结果表明,成年和老年个体的 LC3II/LC3I 和 LC3 斑点明显高于亚成年个体,而 P62 随年龄减少。Bax/bcl2 在雄性和雌性个体的亚成年个体中最高。Caspase3 活性在雄性和雌性个体的亚成年个体中最高,而柠檬酸合酶活性在雌性个体的亚成年个体中最高。ATP 合酶、柠檬酸合酶、动力相关蛋白 1 和线粒体分裂因子(Mff)在雌性亚成年个体中最高。肽基甘氨酸 α-酰胺化单加氧酶在老年组中最高,促性腺激素释放激素在成年组中最高。LC3II/LC3I、P62、Drp1、Fis 和 bax/bcl2 在雄性中高于雌性。这些结果表明,凋亡主要影响 HG 的生长和发育,而自噬影响衰老。雌雄间 HG 重量和线粒体功能的差异主要与凋亡有关。

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