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History (11)
The study to understand the genetics of the acute response to metformin and glipizide in humans (SUGAR-MGH): design of a pharmacogenetic resource for type 2 diabetes.
Losartan reduces ethanol intoxication in the rat.
SLC18: Vesicular neurotransmitter transporters for monoamines and acetylcholine.
Reliable but Timesaving: In Search of an Efficient Quantum-chemical Method for the Description of Functional Fullerenes.
A Druggable Genome Screen Identifies Modifiers of a-Synuclein Levels via a Tiered Cross-Species Validation Approach.
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Chen, Zhenbang
One or more keywords matched the following items that are connected to
Chen, Zhenbang
Item Type
Name
Concept
PTEN Phosphohydrolase
Academic Article
Genetic analysis of Pten and Tsc2 functional interactions in the mouse reveals asymmetrical haploinsufficiency in tumor suppression.
Academic Article
Crucial role of p53-dependent cellular senescence in suppression of Pten-deficient tumorigenesis.
Academic Article
NEDD4-1 is a proto-oncogenic ubiquitin ligase for PTEN.
Academic Article
Ubiquitination regulates PTEN nuclear import and tumor suppression.
Academic Article
Aberrant Rheb-mediated mTORC1 activation and Pten haploinsufficiency are cooperative oncogenic events.
Academic Article
Phosphorylation-dependent regulation of cytosolic localization and oncogenic function of Skp2 by Akt/PKB.
Academic Article
Differential requirement of mTOR in postmitotic tissues and tumorigenesis.
Academic Article
Aberrant ERG expression cooperates with loss of PTEN to promote cancer progression in the prostate.
Academic Article
Differential p53-independent outcomes of p19(Arf) loss in oncogenesis.
Academic Article
A novel type of cellular senescence that can be enhanced in mouse models and human tumor xenografts to suppress prostate tumorigenesis.
Academic Article
Skp2 targeting suppresses tumorigenesis by Arf-p53-independent cellular senescence.
Academic Article
Interleukin-17 promotes formation and growth of prostate adenocarcinoma in mouse models.
Academic Article
Zbtb7a suppresses prostate cancer through repression of a Sox9-dependent pathway for cellular senescence bypass and tumor invasion.
Search Criteria
PTEN Phosphohydrolase