Back to Search Start Over

Solution structure of an ultra-stable single-chain insulin analog connects protein dynamics to a novel mechanism of receptor binding.

Authors :
Glidden, Michael D.
Yanwu Yang
Smith, Nicholas A.
Phillips, Nelson B.
Carr, Kelley
Wickramasinghe, Nalinda P.
Ismail-Beigi, Faramarz
Lawrence, Michael C.
Smith, Brian J.
Weiss, Michael A.
Source :
Journal of Biological Chemistry. 1/5/2018, Vol. 293 Issue 1, p69-88. 20p.
Publication Year :
2018

Abstract

Domain-minimized insulin receptors (IRs) have enabled crystallographic analysis of insulin-bound "micro-receptors." In such structures, the C-terminal segment of the insulin B chain inserts between conserved IR domains, unmasking an invariant receptor-binding surface that spans both insulin A and B chains. This "open" conformation not only rationalizes the inactivity of single-chain insulin (SCI) analogs (in which the A and B chains are directly linked), but also suggests that connecting (C) domains of sufficient length will bind the IR. Here, we report the high-resolution solution structure and dynamics of such an active SCI. The hormone's closed-to-open transition is foreshadowed by segmental flexibility in the native state as probed by heteronuclear NMR spectroscopy and multiple conformer simulations of crystallographic protomers as described in the companion article. We propose a model of the SCI's IR-bound state based on molecular-dynamics simulations of a micro-receptor complex. In this model, a loop defined by the SCI's B and C domains encircles the C-terminal segment of the IR α-subunit. This binding mode predicts a conformational transition between an ultra-stable closed state (in the free hormone) and an active open state (on receptor binding). Optimization of this switch within an ultra-stable SCI promises to circumvent insulin's complex global cold chain. The analog's biphasic activity, which serendipitously resembles current premixed formulations of soluble insulin and microcrystalline suspension, may be of particular utility in the developing world. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00219258
Volume :
293
Issue :
1
Database :
Academic Search Index
Journal :
Journal of Biological Chemistry
Publication Type :
Academic Journal
Accession number :
127182929
Full Text :
https://doi.org/10.1074/jbc.M117.808667