外部刺激诱导B细胞分泌自噬体样囊泡

Autophagy reports Pub Date : 2023-02-21 eCollection Date: 2023-01-01 DOI:10.1080/27694127.2023.2179287
Yu-Diao Kuan, Chao-Yuan Tsai, Shuhei Sakakibara, Daron M Standley, Hitoshi Kikutani
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引用次数: 0

摘要

巨噬/自噬是一种支持细胞稳态的细胞降解和再循环过程。由于自噬体标志物微管相关蛋白1A/ 1b -轻链3 (LC3)-II在细胞源性细胞外囊泡(EV)中被发现,自噬可能与EV分泌途径协同控制细胞内分子的非常规分泌。一些研究表明,药物抑制自噬转换和病原体诱导的内溶酶体功能障碍可增强自噬体样ev (ALVs)的分泌。然而,外界刺激是否诱导ALV分泌尚不清楚。在B细胞中,与IL-4和脂多糖(IL-4:LPS)或IL-4和抗igm抗体共刺激相比,IL-4和抗CD40抗体(IL-4:CD40)共刺激能增强LC3-II+ALVs的分泌。虽然IL-4:LPS刺激加速了自噬通量,但IL-4:CD40刺激减少了自噬体与溶酶体的融合,但不影响溶酶体的功能。尽管IL-4:LPS和IL-4:CD40都诱导了参与囊泡融合或运输的类似基因的表达,但与IL-4:LPS相比,IL-4:CD40优先增强了小GTPase RAB27a的表达。CRISPR-Cas9系统的遗传破坏表明,RAB27a膜结合能力的丧失会损害b -淋巴瘤A20细胞中LC3-II+ALV的分泌,但不会损害ALIX+EV的分泌。此外,在RAB27A突变体A20细胞中重组人野生型RAB27A恢复了LC3-II+ALV的分泌,表明RAB27A控制自噬体的分泌。此外,LC3-II+ALVs在荷瘤小鼠血清和健康人供体血浆中均有发现。我们的研究结果可能提供了b细胞分泌性自噬在多种生理条件下(如接种疫苗、病原体感染和b细胞淋巴瘤进展)调节细胞间通讯的作用。ALVs:自噬体样囊泡;ATG: autophagy-related;Baf A1:巴霉素A1;CNX: calnexin;EVs:细胞外囊泡;搞笑:免疫球蛋白;IL:白介素;LC3:微管相关蛋白1A/1B-light;有限合伙人:脂多糖;MVs:微泡;RAB: RAS癌基因家族成员;TLR: toll样受体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
External stimulation induces the secretion of autophagosome-like vesicles by B cells.

Macroautophagy/autophagy is a cellular degradation and recycling process that supports cellular homeostasis. Since an autophagosome marker, microtubule-associated protein 1A/1B-light chain 3 (LC3)-II, was found in cell-derived extracellular vesicles (EVs), autophagy may cooperate with EV secretion pathways to control unconventional secretion of intracellular molecules. Several studies have demonstrated that pharmacological inhibition of autophagic turnover and pathogen-induced endolysosomal dysfunction enhanced the secretion of autophagosome-like EVs (ALVs). However, whether external stimulation induces ALV secretion is unclear. Here we showed that co-stimulation with IL-4 and anti-CD40 antibody (IL-4:CD40) enhanced the secretion of LC3-II+ALVs compared to co-stimulation by IL-4 and lipopolysaccharide (IL-4:LPS) or by IL4 and anti-IgM antibody in B cells. While IL-4:LPS stimulation accelerated autophagic flux, IL-4:CD40 stimulation reduced autophagosome-lysosome fusion without affecting lysosomal function. Although both IL-4:LPS and IL-4:CD40 induced the expression of similar genes involved in vesicle fusion or transportation, IL-4:CD40 preferentially enhanced the expression of the small GTPase RAB27a compared to IL-4:LPS. Genetic disruption by the CRISPR-Cas9 system revealed that loss of RAB27a membrane-binding ability impaired LC3-II+ALV secretion but not ALIX+EV secretion in B-lymphoma A20 cells. Additionally, reconstitution of human wild-type RAB27A in RAB27a mutant A20 cells restored LC3-II+ALV secretion, indicating that RAB27a controls autophagosome secretion. Furthermore, LC3-II+ALVs were found in the sera of tumor-bearing mice and the plasma of healthy human donors. Our findings may provide a role for B-cell secretory autophagy in regulating intercellular communication under various physiological conditions, such as vaccination, pathogen infection, and B-cell lymphoma progression. Abbreviations: ALVs: autophagosome-like vesicles; ATG: autophagy-related; Baf A1: bafilomycin A1; CNX: calnexin; EVs: extracellular vesicles; Ig: immunoglobulin; IL: Interleukin; LC3: microtubule-associated protein 1A/1B-light; LPS: Lipopolysaccharides; MVs: microvesicles; RAB: member RAS oncogene family; TLR: toll-like receptor.

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