Javascript must be enabled to continue!
Extraembryonic but not embryonic SUMO-specific protease 2 is required for heart development
View through CrossRef
AbstractSUMO-specific protease 2 (SENP2) activities to remove SUMO from its substrates is essential for development of trophoblast stem cells, niches and lineages. Global deletion of SENP2 leads to midgestation lethality, and causes severe defects in the placenta which is accompanied by embryonic brain and heart abnormalities. Because of the placental deficiencies, the role of SENP2 in development of the embryonic tissues has not been properly determined. The brain and heart abnormalities may be secondary to placental insufficiency. Here we have created a new mouse strain permitting conditional inactivation of SENP2. Mice homozygous for germline deletion of the conditional allele exhibit trophoblast defects and embryonic abnormalities resembling the global SENP2 knockout. However, tissue-specific disruptions of SENP2 demonstrate its dispensable role in embryogenesis. Placental expression of SENP2 is necessary and sufficient for embryonic heart and brain development. Using a protease deficient model, we further demonstrate the requirement of SENP2-dependent SUMO modification in development of all major trophoblast lineages. SENP2 regulates sumoylation of Mdm2 which controls p53 activities critical for G-S transition of mitotic division and endoreduplication in trophoblast proliferation and differentiation, respectively. The differentiation of trophoblasts is also dependent on SENP2-mediated activation of p57Kip2, a CDK-specific inhibitor required for endoreduplication.
Springer Science and Business Media LLC
Title: Extraembryonic but not embryonic SUMO-specific protease 2 is required for heart development
Description:
AbstractSUMO-specific protease 2 (SENP2) activities to remove SUMO from its substrates is essential for development of trophoblast stem cells, niches and lineages.
Global deletion of SENP2 leads to midgestation lethality, and causes severe defects in the placenta which is accompanied by embryonic brain and heart abnormalities.
Because of the placental deficiencies, the role of SENP2 in development of the embryonic tissues has not been properly determined.
The brain and heart abnormalities may be secondary to placental insufficiency.
Here we have created a new mouse strain permitting conditional inactivation of SENP2.
Mice homozygous for germline deletion of the conditional allele exhibit trophoblast defects and embryonic abnormalities resembling the global SENP2 knockout.
However, tissue-specific disruptions of SENP2 demonstrate its dispensable role in embryogenesis.
Placental expression of SENP2 is necessary and sufficient for embryonic heart and brain development.
Using a protease deficient model, we further demonstrate the requirement of SENP2-dependent SUMO modification in development of all major trophoblast lineages.
SENP2 regulates sumoylation of Mdm2 which controls p53 activities critical for G-S transition of mitotic division and endoreduplication in trophoblast proliferation and differentiation, respectively.
The differentiation of trophoblasts is also dependent on SENP2-mediated activation of p57Kip2, a CDK-specific inhibitor required for endoreduplication.
Related Results
The Hydra small ubiquitin‐like modifier
The Hydra small ubiquitin‐like modifier
SUMO is a protein posttranslational modifier. SUMO cycle components are believed to be conserved in all eukaryotes. Proteomic analyses have lead to the identification a wealth of S...
A conserved SUMO-Ubiquitin pathway directed by RNF4/SLX5-SLX8 and PIAS4/SIZ1 drives proteasomal degradation of topoisomerase DNA-protein crosslinks
A conserved SUMO-Ubiquitin pathway directed by RNF4/SLX5-SLX8 and PIAS4/SIZ1 drives proteasomal degradation of topoisomerase DNA-protein crosslinks
SUMMARY
Topoisomerase cleavage complexes (TOPccs) can be stalled physiologically and by the anticancer drugs camptothecins (TOP1 inhibitors) and etoposide (TOP2 inh...
Therapeutic Potential of Targeting the SUMO Pathway in Cancer
Therapeutic Potential of Targeting the SUMO Pathway in Cancer
SUMOylation is a dynamic and reversible post-translational modification, characterized more than 20 years ago, that regulates protein function at multiple levels. Key oncoproteins ...
Embryonic/Fetal Development, Placentation and Glycosaminoglycans in the Female Reproductive Tract and Placenta
Embryonic/Fetal Development, Placentation and Glycosaminoglycans in the Female Reproductive Tract and Placenta
Background: Fetal attachments, placentation and embryonic development have been widely discussed in rodents such as agoutis and cavies, as well as research on glycosaminoglycans (G...
Effects of Dolutegravir and Protease Inhibitors based Regimen on Renal and Liver Function Markers of HIV Patients Attending Daughters of Charity Hospital Abuja
Effects of Dolutegravir and Protease Inhibitors based Regimen on Renal and Liver Function Markers of HIV Patients Attending Daughters of Charity Hospital Abuja
Human immunodeficiency virus (HIV) is a serious public health that has been managed by different HAART regimen for people infected to live a healthier live and also reduce the risk...
Purification and activity determination of recombinant human sumo protease’s active region fused with thioredoxin
Purification and activity determination of recombinant human sumo protease’s active region fused with thioredoxin
SUMO (Small Ubiquitin-related Modifier) protease is widely used for recombinant protein expression, but obtaining the protein from derivative sources is challenging due to the degr...
Isolation, Screening, Characterization and Identification of Alkaline Protease Producing Bacteria from Leather Industry Effluent
Isolation, Screening, Characterization and Identification of Alkaline Protease Producing Bacteria from Leather Industry Effluent
Abstract
BackgroundA wide variety of Bacterial species produces protease enzyme and the application of same enzyme have been manipulated precisely and used in various biote...
SUMO: getting it on
SUMO: getting it on
Post-translational modification of cellular proteins by the SUMO (small ubiquitin-related modifier) is involved in numerous modes of regulation in widely different biological proce...

