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Genomics
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March 1, 1995
The human archain gene, ARCN1, has highly conserved homologs in rice and Drosophila
P Radice, V Pensotti, C Jones, et al.
Genes, Chromosomes & Cancer
|
June 1, 1997
Chromosome 1 rearrangements involving the genes TPR and NTRK1 produce structurally different thyroid-specific TRK oncogenes
A Greco, C Miranda, S Pagliardini, et al.
Journal of the National Cancer Institute
|
July 5, 1989
Inhibition of interferon-gamma antiviral and antiproliferative activities by ras oncogene expression
M Gariglio, G Gribaudo, A Franco, et al.
British Journal of Cancer
|
May 27, 2016
Biological activity of the thyroid TRK-T3 oncogene requires signalling through Shc
E Roccato, C Miranda, V Ranzi, et al.
Clinical Cancer Research : an Official Journal of the American Association for Cancer Research
|
May 14, 1998
RET/NTRK1 rearrangements in thyroid gland tumors of the papillary carcinoma family: correlation with clinicopathological features
I Bongarzone, P Vigneri, L Mariani, et al.
Nature Medicine
|
July 1, 1996
p53 activity and chemotherapy
D Delia, S Mizutani, G Lamorte, et al.
Journal of Immunological Methods
|
January 1, 1979
Preparation of antigenically active membranes from solid murine lymphomas and fibrosarcomas
M A Pierotti, S Miotti, G D Torre, et al.
Immunogenetics
|
January 1, 1981
Structural features and selective expression of three Ly-5+ cell-surface molecules
J S Tung, M P Scheid, M A Pierotti, et al.
Oncogene
|
September 5, 1996
Molecular and biochemical analysis of RET/PTC4, a novel oncogenic rearrangement between RET and ELE1 genes, in a post-Chernobyl papillary thyroid cancer
L Fugazzola, M A Pierotti, E Vigano, et al.
Molecular Carcinogenesis
|
July 1, 1996
Downexpression of aldehyde dehydrogenase 1 in murine lung tumors
T A Dragani, F S Falvella, G Manenti, et al.
Page
of 27
Search research articles
Search
Showing results (61-70 of 264) with videos related to
Sort By:
Page
of 27
Genomics
|
March 1, 1995
The human archain gene, ARCN1, has highly conserved homologs in rice and Drosophila
P Radice, V Pensotti, C Jones, et al.
Genes, Chromosomes & Cancer
|
June 1, 1997
Chromosome 1 rearrangements involving the genes TPR and NTRK1 produce structurally different thyroid-specific TRK oncogenes
A Greco, C Miranda, S Pagliardini, et al.
Journal of the National Cancer Institute
|
July 5, 1989
Inhibition of interferon-gamma antiviral and antiproliferative activities by ras oncogene expression
M Gariglio, G Gribaudo, A Franco, et al.
British Journal of Cancer
|
May 27, 2016
Biological activity of the thyroid TRK-T3 oncogene requires signalling through Shc
E Roccato, C Miranda, V Ranzi, et al.
Clinical Cancer Research : an Official Journal of the American Association for Cancer Research
|
May 14, 1998
RET/NTRK1 rearrangements in thyroid gland tumors of the papillary carcinoma family: correlation with clinicopathological features
I Bongarzone, P Vigneri, L Mariani, et al.
Nature Medicine
|
July 1, 1996
p53 activity and chemotherapy
D Delia, S Mizutani, G Lamorte, et al.
Journal of Immunological Methods
|
January 1, 1979
Preparation of antigenically active membranes from solid murine lymphomas and fibrosarcomas
M A Pierotti, S Miotti, G D Torre, et al.
Immunogenetics
|
January 1, 1981
Structural features and selective expression of three Ly-5+ cell-surface molecules
J S Tung, M P Scheid, M A Pierotti, et al.
Oncogene
|
September 5, 1996
Molecular and biochemical analysis of RET/PTC4, a novel oncogenic rearrangement between RET and ELE1 genes, in a post-Chernobyl papillary thyroid cancer
L Fugazzola, M A Pierotti, E Vigano, et al.
Molecular Carcinogenesis
|
July 1, 1996
Downexpression of aldehyde dehydrogenase 1 in murine lung tumors
T A Dragani, F S Falvella, G Manenti, et al.
Page
of 27