Journal Article Structural and functional analysis of the Rpf2-Rrs1 complex in ribosome biogenesis

Asano, Nozomi  ,  Kato, Koji  ,  Nakamura, Akiyoshi  ,  Komoda, Keisuke  ,  Tanaka, Isao  ,  Yao, Min

43 ( 9 )  , pp.4746 - 4757 , 2015-05-19 , Oxford University Press
ISSN:0305-1048
Description
Proteins Rpf2 and Rrs1 are required for 60S ribosomal subunit maturation. These proteins are necessary for the recruitment of three ribosomal components (5S ribosomal RNA [rRNA], RpL5 and RpL11) to the 90S ribosome precursor and subsequent 27SB pre-rRNA processing. Here we present the crystal structure of the Aspergillus nidulans (An) Rpf2-Rrs1 core complex. The core complex contains the tightly interlocked N-terminal domains of Rpf2 and Rrs1. The Rpf2 N-terminal domain includes a Brix domain characterized by similar N-and C-terminal architecture. The long alpha-helix of Rrs1 joins the C-terminal half of the Brix domain as if it were part of a single molecule. The conserved proline-rich linker connecting the N- and C-terminal domains of Rrs1 wrap around the side of Rpf2 and anchor the C-terminal domain of Rrs1 to a specific site on Rpf2. In addition, gel shift analysis revealed that the Rpf2-Rrs1 complex binds directly to 5S rRNA. Further analysis of Rpf2-Rrs1 mutants demonstrated that Saccha-romyces cerevisiae Rpf2 R236 (corresponds to R238 of AnRpf2) plays a significant role in this binding. Based on these studies and previous reports, we have proposed a model for ribosomal component recruitment to the 90S ribosome precursor.
Full-Text

http://eprints.lib.hokudai.ac.jp/dspace/bitstream/2115/59772/1/NAR43-9%204746-4757.pdf

Number of accesses :  

Other information