Pluripotent stem cells represent a powerful system to identify the mechanisms governing cell fate decisions during early mammalian development. Covalent attachment of the Small Ubiquitin Like Modifier (SUMO) to proteins has emerged as an important factor in stem cell maintenance. Here we show that SUMO is required to maintain stem cells in their pluripotent state and identify many chromatin-associated proteins as bona fide SUMO substrates in human induced pluripotent stem cells (hiPSCs). Loss of SUMO increases chromatin accessibility and expression of long non-coding RNAs and human endogenous retroviral elements, indicating a role for the SUMO modification of SETDB1 and a large TRIM28 centric network of zinc finger proteins in silencing of ...
International audienceDespite numerous studies on specific sumoylated transcriptional regulators, th...
International audienceDespite numerous studies on specific sumoylated transcriptional regulators, th...
The post-translational modification of proteins by SUMO (sumoylation) is an essential regulatory mec...
To investigate the role of SUMO modification in the maintenance of pluripotent stem cells, we used M...
To investigate the role of SUMO modification in the maintenance of pluripotent stem cells, we used M...
To investigate the role of SUMO modification in the maintenance of pluripotent stem cells, we used M...
To investigate the role of SUMO modification in the maintenance of pluripotent stem cells, we used M...
To investigate the role of SUMO modification in the maintenance of pluripotent stem cells, we used M...
To investigate the role of SUMO modification in the maintenance of pluripotent stem cells, we used M...
To investigate the role of SUMO modification in the maintenance of pluripotent stem cells, we used M...
To investigate the role of SUMO modification in the maintenance of pluripotent stem cells, we used M...
Understanding general principles that safeguard cellular identity should reveal critical insights in...
International audiencePost-translational modification by SUMO is a key regulator of cell identity. I...
International audienceDespite numerous studies on specific sumoylated transcriptional regulators, th...
International audienceDespite numerous studies on specific sumoylated transcriptional regulators, th...
International audienceDespite numerous studies on specific sumoylated transcriptional regulators, th...
International audienceDespite numerous studies on specific sumoylated transcriptional regulators, th...
The post-translational modification of proteins by SUMO (sumoylation) is an essential regulatory mec...
To investigate the role of SUMO modification in the maintenance of pluripotent stem cells, we used M...
To investigate the role of SUMO modification in the maintenance of pluripotent stem cells, we used M...
To investigate the role of SUMO modification in the maintenance of pluripotent stem cells, we used M...
To investigate the role of SUMO modification in the maintenance of pluripotent stem cells, we used M...
To investigate the role of SUMO modification in the maintenance of pluripotent stem cells, we used M...
To investigate the role of SUMO modification in the maintenance of pluripotent stem cells, we used M...
To investigate the role of SUMO modification in the maintenance of pluripotent stem cells, we used M...
To investigate the role of SUMO modification in the maintenance of pluripotent stem cells, we used M...
Understanding general principles that safeguard cellular identity should reveal critical insights in...
International audiencePost-translational modification by SUMO is a key regulator of cell identity. I...
International audienceDespite numerous studies on specific sumoylated transcriptional regulators, th...
International audienceDespite numerous studies on specific sumoylated transcriptional regulators, th...
International audienceDespite numerous studies on specific sumoylated transcriptional regulators, th...
International audienceDespite numerous studies on specific sumoylated transcriptional regulators, th...
The post-translational modification of proteins by SUMO (sumoylation) is an essential regulatory mec...