Structural highlights
Function
G0S1D3_CHATD
Publication Abstract from PubMed
The spliceosomal B complex-specific protein Prp38 forms a complex with the intrinsically unstructured proteins MFAP1 and Snu23. Our binding and crystal structure analyses show that MFAP1 and Snu23 contact Prp38 via ER/K motif-stabilized single alpha helices, which have previously been recognized only as rigid connectors or force springs between protein domains. A variant of the Prp38-binding single alpha helix of MFAP1, in which ER/K motifs not involved in Prp38 binding were mutated, was less alpha-helical in isolation and showed a reduced Prp38 affinity, with opposing tendencies in interaction enthalpy and entropy. Our results indicate that the strengths of single alpha helix-based interactions can be tuned by the degree of helix stabilization in the unbound state. MFAP1, Snu23, and several other spliceosomal proteins contain multiple regions that likely form single alpha helices via which they might tether several binding partners and act as intermittent scaffolds that facilitate remodeling steps during assembly of an active spliceosome.
Scaffolding in the Spliceosome via Single alpha Helices.,Ulrich AKC, Seeger M, Schutze T, Bartlick N, Wahl MC Structure. 2016 Nov 1;24(11):1972-1983. doi: 10.1016/j.str.2016.09.007. Epub 2016, Oct 20. PMID:27773687[1]
From MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine.
References
- ↑ Ulrich AKC, Seeger M, Schutze T, Bartlick N, Wahl MC. Scaffolding in the Spliceosome via Single alpha Helices. Structure. 2016 Nov 1;24(11):1972-1983. doi: 10.1016/j.str.2016.09.007. Epub 2016, Oct 20. PMID:27773687 doi:http://dx.doi.org/10.1016/j.str.2016.09.007