Article

  • The EMBO Journal (1998) 17, 2938 - 2946
  • doi:10.1093/emboj/17.10.2938

Progression through the spliceosome cycle requires Prp38p function for U4/U6 snRNA dissociation

Jian Xie1, Kristopher Beickman1, Elizabeth Otte1 and Brian C. Rymond1

  1. T.H.Morgan School of Biological Sciences and the Markey Cancer Center, University of Kentucky, Lexington, KY 40506-0225, USA

Correspondence to:

Brian C. Rymond, E-mail: rymond@pop.uky.edu

Received 15 January 1998; Accepted 23 March 1998; Revised 23 March 1998


The elaborate and energy-intensive spliceosome assembly pathway belies the seemingly simple chemistry of pre-mRNA splicing. Prp38p was previously identified as a protein required in vivo and in vitro for the first pre-mRNA cleavage reaction catalyzed by the spliceosome. Here we show that Prp38p is a unique component of the U4/U6.U5 tri-small nuclear ribonucleoprotein (snRNP) particle and is necessary for an essential step late in spliceosome maturation. Without Prp38p activity spliceosomes form, but arrest in a catalytically impaired state. Functional spliceosomes shed U4 snRNA before 5' splice-site cleavage. In contrast, Prp38p-defective spliceosomes retain U4 snRNA bound to its U6 snRNA base-pairing partner. Prp38p is the first tri-snRNP-specific protein shown to be dispensable for assembly, but required for conformational changes which lead to catalytic activation of the spliceosome.

  • Keywords:

    • pre-mRNA,
    • snRNP,
    • spliceosome,
    • splicing,
    • yeast