An amphipathic helix in Brl1 is required for nuclear pore complex biogenesis in S. cerevisiae

Author:

Kralt Annemarie1ORCID,Wojtynek Matthias12ORCID,Fischer Jonas S1ORCID,Agote-Aran Arantxa1,Mancini Roberta1,Dultz Elisa1ORCID,Noor Elad3ORCID,Uliana Federico1,Tatarek-Nossol Marianna4,Antonin Wolfram4,Onischenko Evgeny5,Medalia Ohad2ORCID,Weis Karsten1ORCID

Affiliation:

1. Institute of Biochemistry, Department of Biology, ETH Zurich

2. Department of Biochemistry, University of Zurich

3. Department of Plant and Environmental Sciences, Weizmann Institute of Science

4. Institute of Biochemistry and Molecular Cell Biology, Medical School, RWTH Aachen University

5. Department of Biological Sciences, University of Bergen

Abstract

The nuclear pore complex (NPC) is the central portal for macromolecular exchange between the nucleus and cytoplasm. In all eukaryotes, NPCs assemble into an intact nuclear envelope (NE) during interphase, but the process of NPC biogenesis remains poorly characterized. Furthermore, little is known about how NPC assembly leads to the fusion of the outer and inner NE, and no factors have been identified that could trigger this event. Here, we characterize the transmembrane protein Brl1 as an NPC assembly factor required for NE fusion in budding yeast. Brl1 preferentially associates with NPC assembly intermediates and its depletion halts NPC biogenesis, leading to NE herniations that contain inner and outer ring nucleoporins but lack the cytoplasmic export platform. Furthermore, we identify an essential amphipathic helix in the luminal domain of Brl1 that mediates interactions with lipid bilayers. Mutations in this amphipathic helix lead to NPC assembly defects, and cryo-electron tomography analyses reveal multilayered herniations of the inner nuclear membrane with NPC-like structures at the neck, indicating a failure in NE fusion. Taken together, our results identify a role for Brl1 in NPC assembly and suggest a function of its amphipathic helix in mediating the fusion of the inner and outer nuclear membranes.

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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