Structure
Volume 20, Issue 11, 7 November 2012, Pages 1929-1939
Journal home page for Structure

Article
The Survival Motor Neuron Protein Forms Soluble Glycine Zipper Oligomers

https://doi.org/10.1016/j.str.2012.08.024Get rights and content
Under an Elsevier user license
open archive

Summary

The survival motor neuron (SMN) protein forms the oligomeric core of a multiprotein complex that functions in spliceosomal snRNP biogenesis. Loss of function mutations in the SMN gene cause spinal muscular atrophy (SMA), a leading genetic cause of infant mortality. Nearly half of the known SMA patient missense mutations map to the SMN YG-box, a highly conserved oligomerization domain of unknown structure that contains a (YxxG)3 motif. Here, we report that the SMN YG-box forms helical oligomers similar to the glycine zippers found in transmembrane channel proteins. A network of tyrosine-glycine packing between helices drives formation of soluble YG-box oligomers, providing a structural basis for understanding SMN oligomerization and for relating defects in oligomerization to the mutations found in SMA patients. These results have important implications for advancing our understanding of SMN function and glycine zipper-mediated helix-helix interactions.

Highlights

► In vitro refolding intermediates are aptly targeted to specific chaperones ► Substrate-chaperone pairing depends on their relative affinity ► Structure of the intermediates play crucial role in precise chaperone targeting ► Substrates may be mistargeted due to large alterations in chaperone molar ratios

Cited by (0)