bioRxiv · 10.1101/2023.11.04.565648
RudLOV-a new optically synchronized cargo transport method reveals unexpected effect of dynasore
Abstract
Live imaging of secretory cargoes is a powerful method for understanding the mechanisms of membrane trafficking. Inducing the synchronous release of cargoes from an organelle is a key for enhancing microscopic observation. We developed an optical cargo-releasing method named as retention using dark state of LOV2 (RudLOV), which enables exceptional spatial, temporal, and quantity control during cargo release. A limited amount of cargo-release using RudLOV successfully visualized cargo cisternal-movement and cargo-specific exit sites on the Golgi/trans-Golgi network. Moreover, by controlling the timing of cargo-release using RudLOV, we revealed the canonical and non-canonical effects of the well-known dynamin inhibitor dynasore, which inhibits early-Golgi but not late-Golgi transport and exit from the trans-Golgi network where dynamin-2 is active. Accumulation of COPI vesicles at the cis-side of the Golgi stacks in dynasore-treated cells suggests that dynasore targets COPI-uncoating/tethering/fusion machinery in the early-Golgi cisternae or endoplasmic reticulum but not in the late-Golgi cisternae. These results provide insight into the cisternal maturation of Golgi stacks.
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Tago, T., Ogawa, T., Goto, Y., Toyooka, K., Tojima, T., Nakano, A., Satoh, T., Satoh, A. K.. 2023-11-05. RudLOV-a new optically synchronized cargo transport method reveals unexpected effect of dynasore. https://doi.org/10.1101/2023.11.04.565648
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