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Identification of Rpl29 as a major substrate of the lysine methyltransferase Set7/9.

Authors :
Hamidi T
Singh AK
Veland N
Vemulapalli V
Chen J
Hardikar S
Bao J
Fry CJ
Yang V
Lee KA
Guo A
Arrowsmith CH
Bedford MT
Chen T
Source :
The Journal of biological chemistry [J Biol Chem] 2018 Aug 17; Vol. 293 (33), pp. 12770-12780. Date of Electronic Publication: 2018 Jun 29.
Publication Year :
2018

Abstract

Set7/9 (also known as Set7, Set9, Setd7, and Kmt7) is a lysine methyltransferase that catalyzes the methylation of multiple substrates, including histone H3 and non-histone proteins. Although not essential for normal development and physiology, Set7/9-mediated methylation events play important roles in regulating cellular pathways involved in various human diseases, making Set7/9 a promising therapeutic target. Multiple Set7/9 inhibitors have been developed, which exhibit varying degrees of potency and selectivity in vitro However, validation of these compounds in vivo has been hampered by the lack of a reliable cellular biomarker for Set7/9 activity. Here, we report the identification of Rpl29, a ribosomal protein abundantly expressed in all cell types, as a major substrate of Set7/9. We show that Rpl29 lysine 5 (Rpl29K5) is methylated exclusively by Set7/9 and can be demethylated by Lsd1 (also known as Kdm1a). Rpl29 is not a core component of the ribosome translational machinery and plays a regulatory role in translation efficiency. Our results indicate that Rpl29 methylation has no effect on global protein synthesis but affects Rpl29 subcellular localization. Using an Rpl29 methylation-specific antibody, we demonstrate that Rpl29K5 methylation is present ubiquitously and validate that ( R )-PFI-2, a Set7/9 inhibitor, efficiently reduces Rpl29K5 methylation in cell lines. Thus, Rpl29 methylation can serve as a specific cellular biomarker for measuring Set7/9 activity.<br /> (© 2018 Hamidi et al.)

Details

Language :
English
ISSN :
1083-351X
Volume :
293
Issue :
33
Database :
MEDLINE
Journal :
The Journal of biological chemistry
Publication Type :
Academic Journal
Accession number :
29959229
Full Text :
https://doi.org/10.1074/jbc.RA118.002890