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首页> 外文期刊>Frontiers in Endocrinology >The Steroid Hormone 20-Hydroxyecdysone Regulates the Conjugation of Autophagy-Related Proteins 12 and 5 in a Concentration and Time-Dependent Manner to Promote Insect Midgut Programmed Cell Death
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The Steroid Hormone 20-Hydroxyecdysone Regulates the Conjugation of Autophagy-Related Proteins 12 and 5 in a Concentration and Time-Dependent Manner to Promote Insect Midgut Programmed Cell Death

机译:类固醇激素20羟蜕皮激素以浓度和时间依赖性方式调节自噬相关蛋白12和5的结合,从而促进昆虫中肠程序性细胞死亡。

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Autophagy requires the conjugation of autophagy-related protein 12 (ATG12) to autophagy-related protein 5 (ATG5) through covalent attachment. However, the signals regulating ATG12–ATG5 conjugation are unclear. The larval midgut of lepidopteran insects performs autophagy and apoptosis sequentially during the transition of larvae to pupae under regulation by the steroid hormone 20-hydroxyecdysone (20E), thus representing a model to study steroid hormone regulation of ATG12–ATG5 conjugation. In the present study, using the lepidopteran insect Helicoverpa armigera as a model, we report that 20E regulates the conjugation of ATG12–ATG5 in a concentration and time-dependent manner. The ATG12–ATG5 conjugate was abundant in the epidermis, midgut, and fat body during metamorphosis from the larvae to the pupae; however, the ATG12–ATG5 conjugate level decreased at the time of pupation. At low concentrations (2–5?μM) over a short time course (1–48?h), 20E promoted the conjugation of ATG12–ATG5; however, at 10?μM and 72?h, 20E repressed the conjugation of ATG12–ATG5. ATG12 was localized in the larval midgut during metamorphosis. Knockdown of ATG12 in larvae caused death with delayed pupation, postponed the process of midgut programmed cell death (PCD), and repressed ATG8 (also called LC3-I) transformation to LC3-II and the cleavage of caspase-3; therefore, knockdown of ATG12 in larvae blocked both autophagy and apoptosis. Knockdown of ATG12 in H. armigera epidermis cell line cells also repressed 20E-induced autophagosome formation and caspase-3 activation. The results suggested that 20E plays key role in the regulation of ATG12–ATG5 conjugation in a concentration and time-dependent manner for autophagy or apoptosis, and that ATG12 is necessary by both autophagy and apoptosis during insect midgut PCD.
机译:自噬需要通过共价连接将自噬相关蛋白12(ATG12)与自噬相关蛋白5(ATG5)结合。但是,调节ATG12-ATG5共轭的信号尚不清楚。鳞翅目昆虫的幼虫中肠在类固醇激素20-羟基蜕皮激素(20E)的调节下,在幼虫向p过渡期间依次执行自噬和凋亡,因此代表了研究ATG12-ATG5缀合的类固醇激素调节的模型。在本研究中,使用鳞翅目昆虫棉铃虫(Helicoverpa armigera)作为模型,我们报道20E以浓度和时间依赖性方式调节ATG12–ATG5的结合。从幼虫到the的变态过程中,ATG12–ATG5结合物在表皮,中肠和脂肪体中含量丰富。然而,化脓时,ATG12–ATG5的结合水平下降了。在短时间内(1–48?h)以低浓度(2–5?μM),20E促进了ATG12–ATG5的结合。然而,在10?μM和72?h,20E抑制了ATG12–ATG5的结合。在变态过程中,ATG12位于幼虫中肠。击倒幼虫中的ATG12会导致死亡并延迟化脓,延缓中肠程序性细胞死亡(PCD)的过程,并抑制ATG8(也称为LC3-I)转化为LC3-II和裂解caspase-3。因此,敲除幼虫中的ATG12可阻断自噬和凋亡。敲除棉铃虫表皮细胞系细胞中的ATG12也抑制20E诱导的自噬体形成和caspase-3活化。结果表明20E在自噬或凋亡中以浓度和时间依赖性的方式在ATG12-ATG5结合的调节中起着关键作用,而ATG12在昆虫中肠PCD的自噬和凋亡中都是必需的。

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