Ubiquitination regulates numerous cellular processes by generating a versatile communication system based on eight structurally and functionally different chains linked through distinct residues. Except for K48 and K63, the biological relevance of different linkages is largely unclear. Here, we show that RNF168 ubiquitin ligase promotes noncanonical K27-linked ubiquitination both in vivo and in vitro. We demonstrate that residue K27 of ubiquitin (UbK27) is required for RNF168-dependent chromatin ubiquitination, by targeting histones H2A/H2A.X, and that it is the major ubiquitin-based modification marking chromatin upon DNA damage. Indeed, UbK27 is strictly required for the proper activation of the DNA damage response (DDR) and is directly r...
Ubiquitin signals emanating from DNA double-strand breaks (DSBs) trigger the ordered assembly of DNA...
Histone ubiquitination participates in multiple cellular processes, including the DNA damage respons...
Ubiquitylation at DNA double-strand breaks (DSBs) plays a critical role in the orchestration of DNA ...
SummaryUbiquitination regulates numerous cellular processes by generating a versatile communication ...
Ubiquitination regulates numerous cellular processes by generating a versatile communication system ...
SummaryUbiquitin-dependent signaling during the DNA damage response (DDR) to double-strand breaks (D...
BACKGROUND Modulation of chromatin structure has emerged as a critical molecular device to contro...
Ubiquitination of histones plays a critical role in the regulation of several processes within the n...
DNA double-strand breaks (DSBs) not only interrupt the genetic information, but also disrupt the chr...
SummaryDNA double-strand breaks (DSBs) not only interrupt the genetic information, but also disrupt ...
DNA double-strand breaks (DSBs) are highly cytolethal DNA lesions. In response to DSBs, cells initia...
DNA damage response (DDR) is essential for maintaining genome stability and protecting cells from tu...
DNA double-strand breaks (DSBs) are highly cytolethal DNA lesions. To protect genomic integrity and ...
The ubiquitin system regulates the DNA damage response (DDR) by modifying histone H2A at Lys15 (H2AK...
Histone ubiquitination participates in multiple cellular processes including the DNA damage response...
Ubiquitin signals emanating from DNA double-strand breaks (DSBs) trigger the ordered assembly of DNA...
Histone ubiquitination participates in multiple cellular processes, including the DNA damage respons...
Ubiquitylation at DNA double-strand breaks (DSBs) plays a critical role in the orchestration of DNA ...
SummaryUbiquitination regulates numerous cellular processes by generating a versatile communication ...
Ubiquitination regulates numerous cellular processes by generating a versatile communication system ...
SummaryUbiquitin-dependent signaling during the DNA damage response (DDR) to double-strand breaks (D...
BACKGROUND Modulation of chromatin structure has emerged as a critical molecular device to contro...
Ubiquitination of histones plays a critical role in the regulation of several processes within the n...
DNA double-strand breaks (DSBs) not only interrupt the genetic information, but also disrupt the chr...
SummaryDNA double-strand breaks (DSBs) not only interrupt the genetic information, but also disrupt ...
DNA double-strand breaks (DSBs) are highly cytolethal DNA lesions. In response to DSBs, cells initia...
DNA damage response (DDR) is essential for maintaining genome stability and protecting cells from tu...
DNA double-strand breaks (DSBs) are highly cytolethal DNA lesions. To protect genomic integrity and ...
The ubiquitin system regulates the DNA damage response (DDR) by modifying histone H2A at Lys15 (H2AK...
Histone ubiquitination participates in multiple cellular processes including the DNA damage response...
Ubiquitin signals emanating from DNA double-strand breaks (DSBs) trigger the ordered assembly of DNA...
Histone ubiquitination participates in multiple cellular processes, including the DNA damage respons...
Ubiquitylation at DNA double-strand breaks (DSBs) plays a critical role in the orchestration of DNA ...