Logo image
A clamp-like orientation of basic residues set in a parallelogram is essential for heparin binding
Letter/Communication   Peer reviewed

A clamp-like orientation of basic residues set in a parallelogram is essential for heparin binding

Yi-Yun Cheng, Chao-Sheng Cheng, Tian-Ren Lee, Wun-Shaing Wayne Chang and Ping-Chiang Lyu
FEBS Letters, Vol.590(18), pp.3089-3097
01/09/2016

Abstract

GB1 heparin binding protein modeling
While the majority of studies have focused on the biological roles of heparin-binding proteins, relatively little is known about their key residues and structural elements responsible for heparin interaction. In this study, we employed the IgG-binding domain B1 of Streptococcal protein G as a miniature scaffold to investigate how certain positively charged residues within the ?-sheet conformation become favorable for heparin binding. By performing a series of arginine substitution mutations followed by gain-of-heparin-binding analysis, we deduced that a clamp-like orientation with discontinuous basic residues separated by ~ 5 Å with ~ 100° interior angle is advantageous for high heparin affinity.

Metrics

1 Record Views

Details

Logo image