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Myristoylated GRASP55 dimerizes in the presence of model membranes

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journal contribution
posted on 2024-02-16, 05:40 authored by Emanuel Kava, Carolina V. Garbelotti, José Luiz S. Lopes, Antonio J. Costa-Filho

The Golgi Reassembly and Stacking Proteins (GRASPs) are engaged in various functions within the cell, both in unconventional secretion mechanisms and structuring and organizing the Golgi apparatus. Understanding their specific role in each situation still requires more structural and functional data at the molecular level. GRASP55 is one of the GRASP members in mammals, anchored to the membrane via the myristoylation of a Gly residue at its N-terminus. Therefore, co-translational modifications, such as myristoylation, are fundamental when considering a strategy to obtain detailed information on the interactions between GRASP55 and membranes. Despite its functional relevance, the N-terminal myristoylation has been underappreciated in the studies reported to date, compromising the previously proposed models for GRASP-membrane interactions. Here, we investigated the synergy between the presence of the membrane and the formation of oligomeric structures of myristoylated GRASP55, using a series of biophysical techniques to perform the structural characterization of the lipidated GRASP55 and its interaction with biological lipid model membranes. Our data fulfill an unexplored gap: the adequate evaluation of the presence of lipidations and lipid membranes on the structure-function dyad of GRASPs.

Communicated by Ramaswamy H. Sarma

Funding

The authors acknowledge Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP) for the financial support (Grant nos. 2015/50366-7, 2022/01951-8, and 2020/15542-7). EK and CVG thank FAPESP for their fellowships (Grant nos. 2021/10795-7 and 2023/03700-5). AJCF thanks Conselho Nacional de Desenvolvimento Científico e Tecnlógico (CNPq) for the partial financial support (Grant no. 306682/2018-4).

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