Department of Chemistry, Howard University, Washington, DC.
Laboratory of Molecular Biophysics, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD.
J Gen Physiol. 2019 Dec 2;151(12):1386-1403. doi: 10.1085/jgp.201812299. Epub 2019 Nov 1.
Altered regulation of exocytosis is an important mechanism controlling many diseases, including cancer. Defects in exocytosis have been implicated in many cancer cell types and are generally attributed to mutations in cellular transport, trafficking, and assembly of machinery necessary for exocytosis of secretory vesicle cargo. In these cancers, up-regulation of trafficking and secretion of matrix metalloproteinase-9 (MMP-9), a proteolytic enzyme, is responsible for degrading the extracellular matrix, a necessary step in tumor progression. Using TIRF microscopy, we identified proteins associated with secretory vesicles containing MMP-9 and imaged the local dynamics of these proteins at fusion sites during regulated exocytosis of MMP-9 from MCF-7 breast cancer cells. We found that many regulators of exocytosis, including several Rab GTPases, Rab effector proteins, and SNARE/SNARE modulator proteins, are stably assembled on docked secretory vesicles before exocytosis. At the moment of fusion, many of these components are quickly lost from the vesicle, while several endocytic proteins and lipids are simultaneously recruited to exocytic sites at precisely that moment. Our findings provide insight into the dynamic behavior of key core exocytic proteins, accessory proteins, lipids, and some endocytic proteins at single sites of secretory vesicle fusion in breast cancer cells.
胞吐作用的调节异常是控制许多疾病(包括癌症)的重要机制。胞吐作用缺陷与许多癌细胞类型有关,通常归因于细胞运输、运输和用于分泌囊泡货物胞吐作用的机器组装的突变。在这些癌症中,基质金属蛋白酶-9(MMP-9)的运输和分泌的上调负责降解细胞外基质,这是肿瘤进展的必要步骤。使用 TIRF 显微镜,我们鉴定了与含有 MMP-9 的分泌囊泡相关的蛋白质,并在 MCF-7 乳腺癌细胞中 MMP-9 的受调控胞吐作用期间,在融合部位对这些蛋白质的局部动力学进行了成像。我们发现,许多胞吐作用调节剂,包括几种 Rab GTPases、Rab 效应蛋白和 SNARE/SNARE 调节剂蛋白,在胞吐作用之前稳定地组装在停靠的分泌囊泡上。在融合的那一刻,许多这些组件从囊泡中迅速丢失,而同时几个内吞作用蛋白和脂质也在那一刻被募集到胞吐作用部位。我们的研究结果提供了对乳腺癌细胞中分泌囊泡融合的单个部位的关键核心胞吐作用蛋白、辅助蛋白、脂质和一些内吞作用蛋白的动态行为的深入了解。