Skip to main navigation
Skip to search
Skip to main content
Charles Sturt University Research Output Home
Home
Researchers
Research Organisations
Research Outputs
Datasets
Prizes
Activities
Press/Media
Impacts
Equipment
Search by expertise, name or affiliation
Smg1 haploinsufficiency predisposes to tumor formation and inflammation
Tara L Roberts
, Uda Ho
, John Luff
, C Soon Lee
, Simon H Apte
, Kelli PA MacDonald
, Liza J Raggat
, Allison R Pettit
, Carl A Morrow
, Michael J Waters
, Phil Chen
, Rick G Woods
, Gethin Thomas
, Liam St. Pierre
, Camile S Farah
, Raymond A Clarke
, James A. L. Brown
, Martin F Lavin
Queensland Institute of Medical Research
University of Queensland
University of Western Sydney
Ingham Institute of Applied Medical Research
Genome Stability Laboratory, Centre for Chromosome Biology, National University of Ireland
Research output
:
Contribution to journal
›
Article
›
peer-review
52
Citations (Scopus)
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Smg1 haploinsufficiency predisposes to tumor formation and inflammation'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Haploinsufficiency
100%
Tumor Inflammation
100%
Tumor Formation
100%
SMG1
100%
Inflammation
75%
Heterozygous Mice
50%
Nonsense-mediated Decay
50%
Apoptosis
25%
Tumor
25%
Oxidative Damage
25%
Cellular Stress Response
25%
Mouse Model
25%
Chronic Inflammation
25%
Hematological Malignancies
25%
Cancer Development
25%
Kinase Family
25%
KO Mice
25%
Serum Cytokine Level
25%
DNA-dependent Protein Kinase (DNA-PK)
25%
Hematopoietic Development
25%
Oxidative Stress Regulation
25%
Resistance to Oxidative Stress
25%
DNA Damage Response
25%
Hypoxic Response
25%
Susceptibility to Cancer
25%
DNA Damage Stress
25%
Lung Malignancy
25%
Phosphoinositide Kinase
25%
Biochemistry, Genetics and Molecular Biology
Nonsense-Mediated Decay
100%
Haploinsufficiency
100%
Carcinogenesis
100%
Phosphotransferase
100%
Kinase
100%
Mouse Model
50%
Phosphoinositides
50%
Oxidative Stress
50%
Cellular Stress Response
50%
Knockout Mouse
50%
DNA Damage
50%
DNA Damage Response
50%
Cytokine
50%
Immunology and Microbiology
Haploinsufficiency
100%
Nonsense Mediated mRNA Decay
100%
Mouse Model
50%
DNA Damage
50%
Knockout Mouse
50%
Cellular Stress Response
50%
DNA Damage Response
50%
Oxidative Stress
50%
Cytokine
50%