GPKOW is essential for pre- mRNA splicing in vitro and suppresses splicing defect caused by dominant-negative DHX16 mutation in vivo
Resource
Biosci. Rep., 34, 841-850
Journal
Biosci. Rep.
Journal Issue
34
Pages
841-850
Date Issued
2014
Date
2014
Author(s)
Zang, Shengbing
Lin, Ting-Yu
Chen, Xinji
Gencheva, Marieta
Newo, Alain N. S.
Yang, Lixin
Rossi, Daniel
Hu, Jianda
Lin, Shwu-Bin
Huang, Aimin
Lin, Ren-Jang
Abstract
Human GPKOW [G-patch (glycine-rich) domain and KOW (Kyrpides, Ouzounis and Woese) domain] protein contains a G-patch domain and two KOW domains, and is a homologue of Arabidopsis MOS2 and Saccharomyces Spp2 protein. GPKOW is found in the human spliceosome, but its role in pre-mRNA splicing remains to be elucidated. In this report, we showed that GPKOW interacted directly with the DHX16/hPRP2 and with RNA. Immuno-depletion of GPKOW from HeLa nuclear extracts resulted in an inactive spliceosome that still bound DHX16. Adding back recombinant GPKOW restored splicing to the depleted extract. In vivo, overexpression of GPKOW partially suppressed the splicing defect observed in dominant-negative DHX16 mutant expressing cells. Mutations at the G-patch domain greatly diminished the GPKOW-DHX16 interaction; however, the mutant was active in splicing and was able to suppress splicing defect. Mutations at the KOW1 domain slightly altered the GPKOW-RNA interaction, but the mutant was less functional in vitro and in vivo. Our results indicated that GPKOW can functionally impact DHX16 but that interaction between the proteins is not required for this activity.
Subjects
DExD/H-box protein
G-patch domain
KOW domain
RNA helicase
spliceosome
splicing factor