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1.
Sci Rep ; 7(1): 15353, 2017 11 10.
Article in English | MEDLINE | ID: mdl-29127375

ABSTRACT

The DNA damage response (DDR), comprising distinct repair and signalling pathways, safeguards genomic integrity. Protein ubiquitylation is an important regulatory mechanism of the DDR. To study its role in the UV-induced DDR, we characterized changes in protein ubiquitylation following DNA damage using quantitative di-Gly proteomics. Interestingly, we identified multiple sites of histone H1 that are ubiquitylated upon UV-damage. We show that UV-dependent histone H1 ubiquitylation at multiple lysines is mediated by the E3-ligase HUWE1. Recently, it was shown that poly-ubiquitylated histone H1 is an important signalling intermediate in the double strand break response. This poly-ubiquitylation is dependent on RNF8 and Ubc13 which extend pre-existing ubiquitin modifications to K63-linked chains. Here we demonstrate that HUWE1 depleted cells showed reduced recruitment of RNF168 and 53BP1 to sites of DNA damage, two factors downstream of RNF8 mediated histone H1 poly-ubiquitylation, while recruitment of MDC1, which act upstream of histone H1 ubiquitylation, was not affected. Our data show that histone H1 is a prominent target for ubiquitylation after UV-induced DNA damage. Our data are in line with a model in which HUWE1 primes histone H1 with ubiquitin to allow ubiquitin chain elongation by RNF8, thereby stimulating the RNF8-RNF168 mediated DDR.


Subject(s)
DNA Damage , DNA-Binding Proteins/metabolism , Histones/metabolism , Signal Transduction/radiation effects , Tumor Suppressor Proteins/metabolism , Ubiquitin-Protein Ligases/metabolism , Ubiquitination , Ultraviolet Rays , DNA-Binding Proteins/genetics , HeLa Cells , Histones/genetics , Humans , Tumor Suppressor Proteins/genetics , Ubiquitin-Protein Ligases/genetics
2.
Leukemia ; 23(8): 1480-9, 2009 Aug.
Article in English | MEDLINE | ID: mdl-19340006

ABSTRACT

Ubiquitination plays a major role in many aspects of hematopoiesis. Alterations in ubiquitination have been implicated in hematological cancer. The ubiquitin ligase Triad1 controls the proliferation of myeloid cells. Here, we show that two RING (really interesting new gene) domains in Triad1 differentially bind ubiquitin-conjugating enzymes, UbcH7 and Ubc13. UbcH7 and Ubc13 are known to catalyze the formation of different poly-ubiquitin chains. These chains mark proteins for proteasomal degradation or serve crucial non-proteolytic functions, respectively. In line with the dual Ubc interactions, we observed that Triad1 catalyzes the formation of both types of ubiquitin chains. The biological relevance of this finding was studied by testing Triad1 mutants in myeloid clonogenic assays. Full-length Triad1 and three mutants lacking conserved domains inhibited myeloid colony formation by over 50%. Strikingly, deletion of either RING finger completely abrogated the inhibitory effect of Triad1 in clonogenic growth. We conclude that Triad1 exhibits dual ubiquitin ligase activity and that both of its RING domains are crucial to inhibit myeloid cell proliferation. The differential interaction of the RINGs with Ubcs strongly suggests that the ubiquitination mediated through UbcH7 as well as Ubc13 plays a major role in myelopoiesis.


Subject(s)
Myelopoiesis/physiology , Protein Interaction Mapping , RING Finger Domains , Ubiquitin-Conjugating Enzymes/metabolism , Ubiquitin-Protein Ligases/physiology , Animals , Binding Sites , COS Cells , Cell Line , Chlorocebus aethiops , Humans , Kidney , Mice , NIH 3T3 Cells , Protein Binding , Protein Processing, Post-Translational , Recombinant Fusion Proteins/physiology , Structure-Activity Relationship , Two-Hybrid System Techniques , U937 Cells/metabolism , Ubiquitin-Protein Ligases/chemistry , Ubiquitin-Protein Ligases/genetics , Ubiquitination
3.
Leukemia ; 20(9): 1511-8, 2006 Sep.
Article in English | MEDLINE | ID: mdl-16926849

ABSTRACT

The modification of proteins with ubiquitin is involved in the regulation of various important biological pathways. A crucial step in this process is the modification of specific substrate proteins with ubiquitin by E3 ligases. The ubiquitylation of proteins can result in altered protein function or degradation by the 26S proteasome. Various proteins playing an important role during hematopoiesis are regulated via ubiquitin modification. Recently, alterations in ubiquitylation and proteasomal degradation have been implicated in hematological cancers. Based on these findings, novel therapies that specifically target ubiquitylation or the proteasome are currently being developed. In this review, we will highlight the role of ubiquitylation in normal and malignant hematopoiesis and discuss novel therapeutical approaches that are now tested in various hematological malignancies.


Subject(s)
Hematopoiesis , Ubiquitin/metabolism , Humans , Hydrolysis , NF-kappa B/metabolism , Proteasome Endopeptidase Complex/metabolism , Signal Transduction
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