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Crucial role for autophagy in degranulation of mast cells.

机译:自噬在肥大细胞脱粒中的关键作用。

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BACKGROUND: Autophagy plays a crucial role in controlling various biological responses including starvation, homeostatic turnover of long-lived proteins, and invasion of bacteria. However, a role for autophagy in development and/or function of mast cells is unknown. OBJECTIVE: To investigate a role for autophagy in mast cells, we generated bone marrow-derived mast cells (BMMCs) from mice lacking autophagy related gene (Atg) 7, an essential enzyme for autophagy induction. METHODS: Bone marrow-derived mast cells were generated from bone marrow cells of control and IFN-inducible Atg7-deficient mice, and morphologic and functional analyses were performed. RESULTS: We found that conversion of type I to type II light chain (LC3)-II, a hallmark of autophagy, was constitutively induced in mast cells under full nutrient conditions, and LC3-II localized in secretory granules of mast cells. Although deletion of Atg7 did not impair the development of BMMCs, Atg7(-/-) BMMCs showed severe impairment of degranulation, but not cytokine production on FcepsilonRI cross-linking. Intriguingly, LC3-II but not LC3-I was co-localized with CD63, a secretory lysosomal marker, and was released extracellularly along with degranulation in Atg7(+/+) but not Atg7(-/-) BMMCs. Moreover, passive cutaneous anaphylaxis reactions were severely impaired in mast cell-deficient WBB6F1-W/W(V) mice reconstituted with Atg7(-/-) BMMCs compared with Atg7(+/+) BMMCs. CONCLUSION: These results suggest that autophagy is not essential for the development but plays a crucial role in degranulation of mast cells. Thus, autophagy might be a potential target to treat allergic diseases in which mast cells are critically involved.
机译:背景:自噬在控制各种生物反应中起着至关重要的作用,包括饥饿,长寿蛋白的体内稳态转换以及细菌的入侵。然而,自噬在肥大细胞的发育和/或功能中的作用尚不清楚。目的:为了研究自噬在肥大细胞中的作用,我们从缺乏自噬相关基因(Atg)7的小鼠产生了骨髓衍生的肥大细胞(BMMC),该基因是自噬诱导的必需酶。方法:从对照组和干扰素诱导的Atg7缺陷型小鼠的骨髓细胞中产生骨髓源的肥大细胞,并进行形态学和功能分析。结果:我们发现,在完全营养的条件下,肥大细胞组成性地诱导了I型到II型轻链(LC3)-II的自噬转变,LC3-II定位于肥大细胞的分泌颗粒中。尽管删除Atg7不会损害BMMC的发展,但Atg7(-/-)BMMC却显示出严重的脱粒损伤,但FcepsilonRI交联时却没有细胞因子的产生。有趣的是,LC3-II但不是LC3-I与CD63(一种分泌型溶酶体标记物)共定位,并且在Atg7(+ / +)而非Atg7(-/-)BMMC中与脱粒一起释放到细胞外。此外,与Atg7(+ / +)BMMC相比,用Atg7(-/-)BMMC重组的肥大细胞缺陷WBB6F1-W / W(V)小鼠严重损害了被动性皮肤过敏反应。结论:这些结果表明自噬不是发育所必需的,但在肥大细胞脱粒中起关键作用。因此,自噬可能是治疗肥大细胞严重涉及的过敏性疾病的潜在目标。

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