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1.
Biochem J ; 401(3): 667-77, 2007 Feb 01.
Article in English | MEDLINE | ID: mdl-17009962

ABSTRACT

Dystrophin forms part of a vital link between actin cytoskeleton and extracellular matrix via the transmembrane adhesion receptor dystroglycan. Dystrophin and its autosomal homologue utrophin interact with beta-dystroglycan via their highly conserved C-terminal cysteine-rich regions, comprising the WW domain (protein-protein interaction domain containing two conserved tryptophan residues), EF hand and ZZ domains. The EF hand region stabilizes the WW domain providing the main interaction site between dystrophin or utrophin and dystroglycan. The ZZ domain, containing a predicted zinc finger motif, stabilizes the WW and EF hand domains and strengthens the overall interaction between dystrophin or utrophin and beta-dystroglycan. Using bacterially expressed ZZ domain, we demonstrate a conformational effect of zinc binding to the ZZ domain, and identify two zinc-binding regions within the ZZ domain by SPOTs overlay assays. Epitope mapping of the dystrophin ZZ domain was carried out with new monoclonal antibodies by ELISA, overlay assay and immunohistochemistry. One monoclonal antibody defined a discrete region of the ZZ domain that interacts with beta-dystroglycan. The epitope was localized to the conformationally sensitive second zinc-binding site in the ZZ domain. Our results suggest that residues 3326-3332 of dystrophin form a crucial part of the contact region between dystrophin and beta-dystroglycan and provide new insight into ZZ domain organization and function.


Subject(s)
Dystroglycans/chemistry , Dystrophin/chemistry , Dystrophin/metabolism , Utrophin/chemistry , Amino Acid Sequence , Binding Sites , Dystroglycans/metabolism , Dystrophin/genetics , Molecular Sequence Data , Mutation, Missense , Protein Binding , Protein Structure, Tertiary , Utrophin/metabolism , Zinc/chemistry , Zinc/metabolism
2.
RNA ; 9(1): 138-50, 2003 Jan.
Article in English | MEDLINE | ID: mdl-12554883

ABSTRACT

Through exhaustive two-hybrid screens using a budding yeast genomic library, and starting with the splicing factor and DEAH-box RNA helicase Prp22p as bait, we identified yeast Prp45p and Prp46p. We show that as well as interacting in two-hybrid screens, Prp45p and Prp46p interact with each other in vitro. We demonstrate that Prp45p and Prp46p are spliceosome associated throughout the splicing process and both are essential for pre-mRNA splicing. Under nonsplicing conditions they also associate in coprecipitation assays with low levels of the U2, U5, and U6 snRNAs that may indicate their presence in endogenous activated spliceosomes or in a postsplicing snRNP complex.


Subject(s)
RNA Splicing , Saccharomyces cerevisiae Proteins/metabolism , Base Sequence , Blotting, Northern , Blotting, Western , DNA Primers , Precipitin Tests , Protein Binding , Saccharomyces cerevisiae/genetics , Two-Hybrid System Techniques
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