Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Cleavage of Notch1 by granzyme B disables its transcriptional activity

View through CrossRef
Granzyme-mediated cell death is the main pathway for cytotoxic lymphocytes to kill virus-infected and tumour cells. A major player in this process is GrB (granzyme B), which triggers apoptosis in both caspase-dependent and caspase-independent pathways. A caspase-independent substrate of GrB is the highly conserved transmembrane receptor Notch1. The GrB cleavage sites in Notch1 and functional consequences of Notch1 cleavage by GrB were unknown. In the present study, we confirmed that Notch1 is a direct and caspase-independent substrate of GrB. We demonstrate that GrB cleaved the intracellular Notch1 domain at least twice at two distinct aspartic acids, Asp1860 and Asp1961. GrB cleavage of Notch1 can occur in all subcellular compartments, during maturation of the receptor, at the membrane, and in the nucleus. GrB also displayed perforin-independent functions by cleaving the extracellular domain of Notch1. Overall, cleavage of Notch1 by GrB resulted in a loss of transcriptional activity, independent of Notch1 activation. We conclude that GrB disables Notch1 function, probably resulting in anti-cellular proliferation and cell death signals.
Title: Cleavage of Notch1 by granzyme B disables its transcriptional activity
Description:
Granzyme-mediated cell death is the main pathway for cytotoxic lymphocytes to kill virus-infected and tumour cells.
A major player in this process is GrB (granzyme B), which triggers apoptosis in both caspase-dependent and caspase-independent pathways.
A caspase-independent substrate of GrB is the highly conserved transmembrane receptor Notch1.
The GrB cleavage sites in Notch1 and functional consequences of Notch1 cleavage by GrB were unknown.
In the present study, we confirmed that Notch1 is a direct and caspase-independent substrate of GrB.
We demonstrate that GrB cleaved the intracellular Notch1 domain at least twice at two distinct aspartic acids, Asp1860 and Asp1961.
GrB cleavage of Notch1 can occur in all subcellular compartments, during maturation of the receptor, at the membrane, and in the nucleus.
GrB also displayed perforin-independent functions by cleaving the extracellular domain of Notch1.
Overall, cleavage of Notch1 by GrB resulted in a loss of transcriptional activity, independent of Notch1 activation.
We conclude that GrB disables Notch1 function, probably resulting in anti-cellular proliferation and cell death signals.

Related Results

Shikonin supresses hepatocellular carcinoma by inhibiting JAG1/Notch1/uPA Signaling
Shikonin supresses hepatocellular carcinoma by inhibiting JAG1/Notch1/uPA Signaling
BackgroundShikonin, a bioactive naphthoquinone from Arnebiae Radix, exhibits hepatoprotective properties and anti-coagulation effects via inhibiting urokinase-type plasminogen acti...
Small Subclones Harboring NOTCH1, SF3B1 or BIRC3 Mutations Are Clinically Irrelevant in Chronic Lymphocytic Leukemia
Small Subclones Harboring NOTCH1, SF3B1 or BIRC3 Mutations Are Clinically Irrelevant in Chronic Lymphocytic Leukemia
Abstract Introduction. Ultra-deep next generation sequencing (NGS) allows sensitive detection of mutations and estimation of their clonal abundance in tumor cell pop...
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Abstract The Physical Activity Guidelines for Americans (Guidelines) advises older adults to be as active as possible. Yet, despite the well documented benefits of physical a...
[Retracted] Therapeutical Significance of Serpina3n Subsequent Cerebral Ischemia via Cytotoxic Granzyme B Inactivation
[Retracted] Therapeutical Significance of Serpina3n Subsequent Cerebral Ischemia via Cytotoxic Granzyme B Inactivation
Ischemic stroke is a devastating CNS insult with few clinical cures. Poor understanding of underlying mechanistic network is the primary limitation to develop novel curative therap...
Mediator kinase submodule-dependent regulation of cardiac transcription
Mediator kinase submodule-dependent regulation of cardiac transcription
<p>Pathological cardiac remodeling results from myocardial stresses including pressure and volume overload, neurohumoral activation, myocardial infarction, and hypothyroidism...
Transcriptional Regulation Underlying Long-term Sensitization in Aplysia
Transcriptional Regulation Underlying Long-term Sensitization in Aplysia
The final published article is available in the Oxford Research Encyclopedia of Neuroscience: https://oxfordre.com/neuroscience/display/10.1093/acrefore/9780190264086.001.0001/acre...
Targeting the Leukemia Initiating Cells in a Mouse T-ALL Model.
Targeting the Leukemia Initiating Cells in a Mouse T-ALL Model.
Abstract Abstract 3474 Poster Board III-411 T cell acute lymphoblastic leukemia (T-ALL) is an aggressive malignancy that is largely cau...
Abstract 1823: Novel regulation of Jagged1 by ErbB2 in breast cancer: implications for anti-ErbB2 therapy
Abstract 1823: Novel regulation of Jagged1 by ErbB2 in breast cancer: implications for anti-ErbB2 therapy
Abstract We have demonstrated that Notch1 is required for trastuzumab resistance in ErbB2 positive breast cancer. This indicates that ErbB2 suppresses Notch1 in brea...

Back to Top