Section Cell Biology, Center for Molecular Medicine, University Medical Center Utrecht, Institute of Biomembranes, Utrecht University, Utrecht, the Netherlands.
J Cell Biol. 2022 Jan 3;221(1). doi: 10.1083/jcb.202106044. Epub 2021 Nov 24.
The key endosomal regulators Rab5, EEA1, and APPL1 are frequently applied in fluorescence microscopy to mark early endosomes, whereas Rab7 is used as a marker for late endosomes and lysosomes. However, endogenous levels of these proteins localize poorly in immuno-EM, and systematic studies on their native ultrastructural distributions are lacking. To address this gap, we here present a quantitative, on-section correlative light and electron microscopy (CLEM) approach. Using the sensitivity of fluorescence microscopy, we label hundreds of organelles that are subsequently visualized by EM and classified by ultrastructure. We show that Rab5 predominantly marks small, endocytic vesicles and early endosomes. EEA1 colocalizes with Rab5 on early endosomes, but unexpectedly also labels Rab5-negative late endosomes, which are positive for PI(3)P but lack Rab7. APPL1 is restricted to small Rab5-positive, tubulo-vesicular profiles. Rab7 primarily labels late endosomes and lysosomes. These data increase our understanding of the structural-functional organization of the endosomal system and introduce quantitative CLEM as a sensitive alternative for immuno-EM.
关键的内体调节蛋白 Rab5、EEA1 和 APPL1 常用于荧光显微镜标记早期内体,而 Rab7 则用于标记晚期内体和溶酶体。然而,这些蛋白质的内源性水平在免疫电镜中定位不佳,并且缺乏对其天然超微结构分布的系统研究。为了解决这一差距,我们在这里提出了一种定量的切片相关光镜和电镜(CLEM)方法。利用荧光显微镜的灵敏度,我们标记了数百个细胞器,随后通过 EM 进行可视化,并根据超微结构进行分类。我们发现 Rab5 主要标记小的、内吞的囊泡和早期内体。EEA1 与 Rab5 在早期内体上共定位,但出人意料的是,它也标记了 Rab5 阴性的晚期内体,这些晚期内体对 PI(3)P 呈阳性,但缺乏 Rab7。APPL1 局限于小的 Rab5 阳性管状囊泡。Rab7 主要标记晚期内体和溶酶体。这些数据增加了我们对内体系统结构-功能组织的理解,并引入了定量 CLEM 作为免疫电镜的一种敏感替代方法。