The tetraspanin family plays key roles in many physiological processes, such as, tumour invasion, cell motility, virus infection, cell attachment and entry. Tetraspanins function as molecular scaffolds organized in microdomains with interesting downstream cellular consequences. However, despite their relevance in human physiology, the precise mechanisms of their various functions remain elusive. In particular, the full-length CD81 tetraspanin has interesting cholesterol-related properties that modulate its activity in cells. In this work, we study the opening transition of CD81 under different conditions. We propose that such conformational change is a collaborative process enhanced by simultaneous interactions between multiple identical CD...
The spatial organization of membrane proteins in the plasma membrane is critical for signal transduc...
AbstractTetraspanins are a superfamily of transmembrane proteins implicated in cellular development,...
Lipidation of transmembrane proteins regulates many cellular activities, including signal transducti...
Tetraspanins are a family of transmembrane proteins that form a network of protein–protein interacti...
Tetraspanins constitute a family of widely expressed integral membrane proteins that associate exten...
Tetraspanin CD82 suppresses cell migration, tumor invasion, and tumor metastasis. To determine the m...
AbstractCD81 is a ubiquitously expressed member of the tetraspanin family. It forms large molecular ...
Tetraspanins exert a wide range of cellular functions of broad medical importance. Despite this, the...
This thesis focuses on a family of membrane proteins, called tetraspanins. As molecular facilitators...
To facilitate the myriad of different (signaling) processes that take place at the plasma membrane, ...
Tetraspanins are ubiquitous membrane proteins that induce local membrane curvature and hence co-ordi...
Tetraspanins are four-span membrane proteins that are widely distributed in multi-cellular organisms...
Contains fulltext : 154262.pdf (publisher's version ) (Open Access)The spatial org...
CD81 plays a role in a variety of physiological and pathological processes. Recent structural analys...
The spatial organization of membrane proteins in the plasma membrane is critical for signal transduc...
AbstractTetraspanins are a superfamily of transmembrane proteins implicated in cellular development,...
Lipidation of transmembrane proteins regulates many cellular activities, including signal transducti...
Tetraspanins are a family of transmembrane proteins that form a network of protein–protein interacti...
Tetraspanins constitute a family of widely expressed integral membrane proteins that associate exten...
Tetraspanin CD82 suppresses cell migration, tumor invasion, and tumor metastasis. To determine the m...
AbstractCD81 is a ubiquitously expressed member of the tetraspanin family. It forms large molecular ...
Tetraspanins exert a wide range of cellular functions of broad medical importance. Despite this, the...
This thesis focuses on a family of membrane proteins, called tetraspanins. As molecular facilitators...
To facilitate the myriad of different (signaling) processes that take place at the plasma membrane, ...
Tetraspanins are ubiquitous membrane proteins that induce local membrane curvature and hence co-ordi...
Tetraspanins are four-span membrane proteins that are widely distributed in multi-cellular organisms...
Contains fulltext : 154262.pdf (publisher's version ) (Open Access)The spatial org...
CD81 plays a role in a variety of physiological and pathological processes. Recent structural analys...
The spatial organization of membrane proteins in the plasma membrane is critical for signal transduc...
AbstractTetraspanins are a superfamily of transmembrane proteins implicated in cellular development,...
Lipidation of transmembrane proteins regulates many cellular activities, including signal transducti...