Secretory vesicle polar sorting, endosome recycling and cytoskeleton organization require the AP-1 complex in aspergillus nidulans

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Abstract

The AP-1 complex is essential for membrane protein traffic via its role in the pinching-off and sorting of secretory vesicles (SVs) from the trans-Golgi and/or endosomes. While its essentiality is undisputed in metazoa, its role in simpler eukaryotes seems less clear. Here, we dissect the role of AP-1 in the filamentous fungus Aspergillus nidulans and show that it is absolutely essential for growth due to its role in clathrin-dependent maintenance of polar traffic of specific membrane cargoes toward the apex of growing hyphae. We provide evidence that AP-1 is involved in both anterograde sorting of RabERab11-labeled SVs and RabA/BRab5-dependent endosome recycling. Additionally, AP-1 is shown to be critical for microtubule and septin organization, further rationalizing its essentiality in cells that face the challenge of cytoskeleton-dependent polarized cargo traffic. This work also opens a novel issue on how nonpolar cargoes, such as transporters, are sorted to the eukaryotic plasma membrane.

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Martzoukou, O., Diallinas, G., & Amillis, S. (2018). Secretory vesicle polar sorting, endosome recycling and cytoskeleton organization require the AP-1 complex in aspergillus nidulans. Genetics, 209(4), 1121–1138. https://doi.org/10.1534/genetics.118.301240

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