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Gene Expression

Interactions within the Yeast Sm Core Complex: from Proteins to Amino Acids

, , , &
Pages 1956-1966 | Received 22 Aug 1997, Accepted 21 Jan 1998, Published online: 27 Mar 2023
 

ABSTRACT

Sm core proteins play an essential role in the formation of small nuclear ribonucleoprotein particles (snRNPs) by binding to small nuclear RNAs and participating in a network of protein interactions. The two-hybrid system was used to identify SmE interacting proteins and to test for interactions between all pairwise combinations of yeast Sm proteins. We observed interactions between SmB and SmD3, SmE and SmF, and SmE and SmG. For these interactions, a direct biochemical assay confirmed the validity of the results obtained in vivo. To map the protein-protein interaction surface of Sm proteins, we generated a library of SmE mutants and investigated their ability to interact with SmF and/or SmG proteins in the two-hybrid system. Several classes of mutants were observed: some mutants are unable to interact with either SmF or SmG proteins, some interact with SmG but not with SmF, while others interact moderately with SmF but not with SmG. Our mutational analysis of yeast SmE protein shows that conserved hydrophobic residues are essential for interactions with SmF and SmG as well as for viability. Surprisingly, we observed that other evolutionarily conserved positions are tolerant to mutations, with substitutions affecting binding to SmF and SmG only mildly and conferring a wild-type growth phenotype.

ACKNOWLEDGMENTS

We thank R. Walczak, P. Legrain, R. Lührmann, I. Mattaj, I. Palacios, and members of our groups for valuable discussions and/or comments on the manuscript. We appreciate the gift of anti-TMG antibodies from R. Lührmann. We also thank the reviewers for helpful suggestions. We are grateful for the excellent technical assistance of L. Brubacher, C. Burgard, and S. Kandels-Lewis.

This work was supported by the Centre National de la Recherche Scientifique (CNRS) and EMBL. B.S. is on leave from CNRS.

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