» Articles » PMID: 38279062

HJURP is Recruited to Double-strand Break Sites and Facilitates DNA Repair by Promoting Chromatin Reorganization

Abstract

HJURP is overexpressed in several cancer types and strongly correlates with patient survival. However, the mechanistic basis underlying the association of HJURP with cancer aggressiveness is not well understood. HJURP promotes the loading of the histone H3 variant, CENP-A, at the centromeric chromatin, epigenetically defining the centromeres and supporting proper chromosome segregation. In addition, HJURP is associated with DNA repair but its function in this process is still scarcely explored. Here, we demonstrate that HJURP is recruited to DSBs through a mechanism requiring chromatin PARylation and promotes epigenetic alterations that favor the execution of DNA repair. Incorporation of HJURP at DSBs promotes turnover of H3K9me3 and HP1, facilitating DNA damage signaling and DSB repair. Moreover, HJURP overexpression in glioma cell lines also affected global structure of heterochromatin independently of DNA damage induction, promoting genome-wide reorganization and assisting DNA damage response. HJURP overexpression therefore extensively alters DNA damage signaling and DSB repair, and also increases radioresistance of glioma cells. Importantly, HJURP expression levels in tumors are also associated with poor response of patients to radiation. Thus, our results enlarge the understanding of HJURP involvement in DNA repair and highlight it as a promising target for the development of adjuvant therapies that sensitize tumor cells to irradiation.

Citing Articles

Holliday junction recognition protein (HJURP) could reflect the clinical outcomes of lung adenocarcinoma patients, and impact the choice of precision therapy.

Gao X, Zhang Y, Zhang M, Sun Y Front Genet. 2024; 15:1475511.

PMID: 39649097 PMC: 11621083. DOI: 10.3389/fgene.2024.1475511.


Multifunctional histone variants in genome function.

Wong L, Tremethick D Nat Rev Genet. 2024; 26(2):82-104.

PMID: 39138293 DOI: 10.1038/s41576-024-00759-1.

References
1.
Dunleavy E, Roche D, Tagami H, Lacoste N, Ray-Gallet D, Nakamura Y . HJURP is a cell-cycle-dependent maintenance and deposition factor of CENP-A at centromeres. Cell. 2009; 137(3):485-97. DOI: 10.1016/j.cell.2009.02.040. View

2.
Foltz D, Jansen L, Bailey A, Yates 3rd J, Bassett E, Wood S . Centromere-specific assembly of CENP-a nucleosomes is mediated by HJURP. Cell. 2009; 137(3):472-84. PMC: 2747366. DOI: 10.1016/j.cell.2009.02.039. View

3.
Barnhart M, Kuich P, Stellfox M, Ward J, Bassett E, Black B . HJURP is a CENP-A chromatin assembly factor sufficient to form a functional de novo kinetochore. J Cell Biol. 2011; 194(2):229-43. PMC: 3144403. DOI: 10.1083/jcb.201012017. View

4.
Earnshaw W, Rothfield N . Identification of a family of human centromere proteins using autoimmune sera from patients with scleroderma. Chromosoma. 1985; 91(3-4):313-21. DOI: 10.1007/BF00328227. View

5.
Sullivan K, Hechenberger M, Masri K . Human CENP-A contains a histone H3 related histone fold domain that is required for targeting to the centromere. J Cell Biol. 1994; 127(3):581-92. PMC: 2120219. DOI: 10.1083/jcb.127.3.581. View