School of Biological Sciences, Nanyang Technological University, Singapore, Singapore.
J Cell Biol. 2022 Jun 6;221(6). doi: 10.1083/jcb.202109114. Epub 2022 Apr 25.
The mammalian Golgi comprises tightly adjacent and flattened membrane sacs called cisternae. We still do not understand the molecular organization of the Golgi and intra-Golgi transport of cargos. One of the most significant challenges to studying the Golgi is resolving Golgi proteins at the cisternal level under light microscopy. We have developed a side-averaging approach to visualize the cisternal organization and intra-Golgi transport in nocodazole-induced Golgi ministacks. Side-view images of ministacks acquired from Airyscan microscopy are transformed and aligned before intensity normalization and averaging. From side-average images of >30 Golgi proteins, we uncovered the organization of the pre-Golgi, cis, medial, trans, and trans-Golgi network membrane with an unprecedented spatial resolution. We observed the progressive transition of a synchronized cargo wave from the cis to the trans-side of the Golgi. Our data support our previous finding, in which constitutive cargos exit at the trans-Golgi while the secretory targeting to the trans-Golgi network is signal dependent.
哺乳动物高尔基体由紧密相邻的扁平膜囊组成,称为潴泡。我们仍然不了解高尔基体的分子结构和货物在高尔基体内部的运输。研究高尔基体的最大挑战之一是在光镜下解析高尔基体蛋白在潴泡水平的结构。我们开发了一种侧面平均方法来可视化紫杉醇诱导的高尔基体微堆栈中的潴泡结构和高尔基体内部运输。在进行强度归一化和平滑之前,对来自 Airyscan 显微镜的微堆栈的侧视图图像进行转换和对齐。从 >30 种高尔基体蛋白的侧平均图像中,我们以空前的空间分辨率揭示了前高尔基体、顺面、中间、反面和反式高尔基体网络膜的结构。我们观察到同步货物波从顺面到高尔基体反面的逐渐转移。我们的数据支持了我们之前的发现,即组成性货物在反式高尔基体中输出,而分泌靶向到反式高尔基体网络是信号依赖的。