BIOPHYSICAL CHARACTERIZATION OF HUMAN GOLGIN-45: INSIGHTS INTO STRUCTURE AND INTERACTION WITH GRASP55

Vol 4, 2026 - 344983
Abstract
Favorite this paper
How to cite this paper?
Abstract

The Golgi Complex is a central organelle in eukaryotic cells, responsible for the trafficking, processing, and sorting of proteins and lipids. The maintenance of its unique structure is crucial for Golgi function and relies on a group of proteins known as Golgi Matrix Proteins, consisting mainly of Golgi Reassembly and Stacking Proteins (GRASPs) and Golgins. Golgins are a family of proteins predicted to be formed by extended coiled coils, with a predicted length between 100-600 nm. They are involved in vesicular traffic, Golgi maintenance, dynamics, and positioning within cells. Golgins associate with the Golgi cisternae via their carboxyl terminus, interacting directly with the membrane surface or through a membrane-associated partner. Despite the importance, there are no studies on the structural and biophysical characterization of members of the Golgin family, even fundamental aspects such as the actual existence of coiled-coil domains have not yet been proven, and are completely based on computational predictions of domains. Considering the gap in knowledge of the structural properties of Golgins, the present study focuses on one of these members, specifically human Golgin-45. A purification protocol for Golgin-45 protein was established, allowing for its structural characterization. Circular Dichroism analysis indicates that Golgin-45 adopts a predominantly α-helix structure, which progressively decreases upon thermal denaturation. Dynamic Light Scattering experiments indicated that Golgin-45 is stable and monodisperse in solution. In addition, this study aims to investigate the molecular interaction between Golgin-45 and its partner GRASP55. Results obtained by SEC-MALS and Mass Photometry confirm the formation of a stable protein complex, with a molecular mass compatible with a heterotetramer, possibly consisting of two subunits of each protein. These data provide novel insights into the conformational dynamics and oligomerization behavior of Golgin-45, as well as its interaction with GRASP55.

 

Share your ideas or questions with the authors!

Did you know that the greatest stimulus in scientific and cultural development is curiosity? Leave your questions or suggestions to the author!

Sign in to interact

Have a question or suggestion? Share your feedback with the authors!

Institutions
  • 1 Instituto de Física de São Carlos, Universidade de São Paulo (IFSC-USP)
  • 2 Universidade de São Paulo
Track
  • 1. Protein Dynamics and Function
Keywords
Protein
Intrinsically Disordered Protein
Golgin
GRASP
Golgi Matrix Proteins