Higher-resolution structure of the human insulin receptor ectodomain: Multi-modal inclusion of the insert domain


Autoria(s): Croll, Tristan I.; Smith, Brian J.; Margetts, Mai B.; Whittaker, Jonathan; Weiss, Michael A.; Ward, Colin W.; Lawrence, Michael C.; ,; ,
Data(s)

01/03/2016

Resumo

Insulin receptor (IR) signaling is critical to controlling nutrient uptake and metabolism. However, only a low-resolution (3.8 Å) structure currently exists for the IR ectodomain, with some segments ill-defined or unmodeled due to disorder. Here, we revise this structure using new diffraction data to 3.3 Å resolution that allow improved modeling of the N-linked glycans, the first and third fibronectin type III domains, and the insert domain. A novel haptic interactive molecular dynamics strategy was used to aid fitting to low-resolution electron density maps. The resulting model provides a foundation for investigation of structural transitions in IR upon ligand binding.

Identificador

http://eprints.qut.edu.au/93678/

Publicador

Elsevier

Relação

DOI:10.1016/j.str.2015.12.014

Croll, Tristan I., Smith, Brian J., Margetts, Mai B., Whittaker, Jonathan, Weiss, Michael A., Ward, Colin W., Lawrence, Michael C., , , & , (2016) Higher-resolution structure of the human insulin receptor ectodomain: Multi-modal inclusion of the insert domain. Structure, 24(3), pp. 469-476.

Fonte

School of Biomedical Sciences; Faculty of Health; Institute of Health and Biomedical Innovation

Tipo

Journal Article