The nanoscale organization of reticulon 4 shapes local endoplasmic reticulum structure in situ

Author:

Fuentes Lukas A.1ORCID,Marin Zach123ORCID,Tyson Jonathan4ORCID,Baddeley David3ORCID,Bewersdorf Joerg125ORCID

Affiliation:

1. Yale University School of Medicine 1 Department of Cell Biology, , New Haven, CT, USA

2. Yale University 2 Department of Biomedical Engineering, , New Haven, CT, USA

3. Auckland Bioengineering Institute, University of Auckland 3 , Auckland, New Zealand

4. Yale University 4 Department of Chemistry, , New Haven, CT, USA

5. Yale University 5 Department of Physics, , New Haven, CT, USA

Abstract

The endoplasmic reticulum’s (ER’s) structure is directly linked to the many functions of the ER, but its formation is not fully understood. We investigate how the ER–membrane curving protein reticulon 4 (Rtn4) localizes to and organizes in the membrane and how that affects the local ER structure. We show a strong correlation between the local Rtn4 density and the local ER membrane curvature. Our data further reveal that the typical ER tubule possesses an elliptical cross-section with Rtn4 enriched at either end of the major axis. Rtn4 oligomers are linear shaped, contain about five copies of the protein, and preferentially orient parallel to the tubule axis. Our observations support a mechanism in which oligomerization leads to an increase of the local Rtn4 concentration with each molecule, increasing membrane curvature through a hairpin wedging mechanism. This quantitative analysis of Rtn4 and its effects on the ER membrane result in a new model of tubule shape as it relates to Rtn4.

Funder

National Institutes of Health

Wellcome Trust

Publisher

Rockefeller University Press

Subject

Cell Biology

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