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揭示潜在的 Rab 蛋白参与调节分泌自噬机制。

Revealing potential Rab proteins participate in regulation of secretory autophagy machinery.

机构信息

Master of Science Program in Tropical Medicine, College of Medicine, Kaohsiung Medical University, Kaohsiung, Taiwan.

Department of Microbiology and Immunology, College of Medicine, National Cheng Kung University, Tainan, Taiwan.

出版信息

Kaohsiung J Med Sci. 2024 Jul;40(7):642-649. doi: 10.1002/kjm2.12848. Epub 2024 May 28.

Abstract

Autophagy can be classified as degradative and secretory based on distinct functions. The small GTPase proteins Rab8a and Rab37 are responsible for secretory autophagy-mediated exocytosis of IL-1β, insulin, and TIMP1 (tissue inhibitor of 54 metalloproteinase 1). Other Rab family members participating in secretory autophagy are poorly understood. Herein, we identified 26 overlapped Rab proteins in purified autophagosomes of mouse pancreatic β-cell "Min-6" and human lung cancer cell "CL1-5-Q89L" with high secretory autophagy tendency by LC-MS/MS proteomics analysis. Six Rab proteins (Rab8a, Rab11b, Rab27a, Rab35, Rab37, and Rab7a) were detected in autophagosomes of four cell lines, associating them with autophagy-related vesicle trafficking. We used CL1-5-Q89L cell line model to evaluate the levels of Rab proteins colocalization with autophagy LC3 proteins and presence in purified autophagosomes. We found five Rab proteins (Rab8a, Rab11b, Rab27a, Rab35, and Rab37) are highly expressed in the autophagosome compared to the normal control by immunoblotting under active secretion conditions. However, only Rab8a, Rab35, and Rab37 showing high colocalization with LC3 protein by cofocal microscopy. Despite the discrepancy between the image and immunoblotting analysis, our data sustains the speculation that Rab8a, Rab11b, Rab27a, Rab35, and Rab37 are possibly associated with the secretory autophagy machinery. In contrast, Rab7a shows low colocalization with LC3 puncta and low level in the autophagosome, suggesting it regulates different vesicle trafficking machineries. Our findings open a new direction toward exploring the role of Rab proteins in secretory autophagy-related cargo exocytosis and identifying the cargoes and effectors regulated by specific Rab proteins.

摘要

自噬可以根据不同的功能分为降解型和分泌型。小 GTP 酶蛋白 Rab8a 和 Rab37 负责分泌型自噬介导的白细胞介素 1β、胰岛素和 TIMP1(组织金属蛋白酶抑制剂 1)的胞吐作用。其他参与分泌型自噬的 Rab 家族成员了解甚少。在此,我们通过 LC-MS/MS 蛋白质组学分析鉴定了在具有高分泌自噬倾向的小鼠胰岛β细胞“Min-6”和人肺癌细胞“CL1-5-Q89L”纯化的自噬体中 26 个重叠的 Rab 蛋白。在四种细胞系的自噬体中检测到 6 种 Rab 蛋白(Rab8a、Rab11b、Rab27a、Rab35、Rab37 和 Rab7a),它们与自噬相关的囊泡运输有关。我们使用 CL1-5-Q89L 细胞系模型来评估 Rab 蛋白与自噬 LC3 蛋白的共定位水平以及在纯化的自噬体中的存在情况。我们发现,在活性分泌条件下,与正常对照相比,五种 Rab 蛋白(Rab8a、Rab11b、Rab27a、Rab35 和 Rab37)在自噬体中的表达水平较高。然而,只有 Rab8a、Rab35 和 Rab37 通过共焦显微镜显示与 LC3 蛋白高度共定位。尽管图像和免疫印迹分析存在差异,但我们的数据支持以下推测:Rab8a、Rab11b、Rab27a、Rab35 和 Rab37 可能与分泌型自噬机制有关。相比之下,Rab7a 与 LC3 斑点的共定位程度较低,在自噬体中的水平较低,表明它调节不同的囊泡运输机制。我们的发现为探索 Rab 蛋白在分泌型自噬相关货物胞吐作用中的作用以及鉴定特定 Rab 蛋白调节的货物和效应物开辟了新的方向。

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