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Cancer Research
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November 17, 2006
Mutant p53 protects cells from 12-O-tetradecanoylphorbol-13-acetate-induced death by attenuating activating transcription factor 3 induction
Yosef Buganim, Eyal Kalo, Ran Brosh, et al.
Cancer Research
|
April 6, 2006
hTERT-immortalized prostate epithelial and stromal-derived cells: an authentic in vitro model for differentiation and carcinogenesis
Ira Kogan, Naomi Goldfinger, Michael Milyavsky, et al.
Cancer Research
|
June 3, 2005
Transcriptional programs following genetic alterations in p53, INK4A, and H-Ras genes along defined stages of malignant transformation
Michael Milyavsky, Yuval Tabach, Igor Shats, et al.
Nature Communications
|
August 10, 2020
HNF4α regulates sulfur amino acid metabolism and confers sensitivity to methionine restriction in liver cancer
Qing Xu, Yuanyuan Li, Xia Gao, et al.
Cancer Cell
|
February 13, 2007
Inactivation of myocardin and p16 during malignant transformation contributes to a differentiation defect
Michael Milyavsky, Igor Shats, Alina Cholostoy, et al.
EMBO Reports
|
March 14, 2026
Paneth cell SIRT1 deficiency increases intestinal stress resistance by modulating the gut microbiota
Liz M Garcia-Peterson, Alicia S Wellman, Xiaojiang Xu, et al.
JCI Insight
|
August 15, 2023
DNASE1L3 enhances antitumor immunity and suppresses tumor progression in colon cancer
Wenling Li, Hideki Nakano, Wei Fan, et al.
Cell Metabolism
|
March 5, 2020
Bacteria Boost Mammalian Host NAD Metabolism by Engaging the Deamidated Biosynthesis Pathway
Igor Shats, Jason G Williams, Juan Liu, et al.
Nature Metabolism
|
August 3, 2023
Methionine restriction-induced sulfur deficiency impairs antitumour immunity partially through gut microbiota
Ming Ji, Xiaojiang Xu, Qing Xu, et al.
Nature Communications
|
February 10, 2026
NAPRT-mediated deamidated NAD biosynthesis enhances colon tissue resiliency and suppresses tumorigenesis
Xiaoyue Wu, Jason G Williams, Haoyang Liang, et al.
Page
of 3
Search research articles
Search
Showing results (21-30 of 30) with videos related to
Sort By:
Page
of 3
You have reached the last page of results.
This site can display upto 30 results.
Cancer Research
|
November 17, 2006
Mutant p53 protects cells from 12-O-tetradecanoylphorbol-13-acetate-induced death by attenuating activating transcription factor 3 induction
Yosef Buganim, Eyal Kalo, Ran Brosh, et al.
Cancer Research
|
April 6, 2006
hTERT-immortalized prostate epithelial and stromal-derived cells: an authentic in vitro model for differentiation and carcinogenesis
Ira Kogan, Naomi Goldfinger, Michael Milyavsky, et al.
Cancer Research
|
June 3, 2005
Transcriptional programs following genetic alterations in p53, INK4A, and H-Ras genes along defined stages of malignant transformation
Michael Milyavsky, Yuval Tabach, Igor Shats, et al.
Nature Communications
|
August 10, 2020
HNF4α regulates sulfur amino acid metabolism and confers sensitivity to methionine restriction in liver cancer
Qing Xu, Yuanyuan Li, Xia Gao, et al.
Cancer Cell
|
February 13, 2007
Inactivation of myocardin and p16 during malignant transformation contributes to a differentiation defect
Michael Milyavsky, Igor Shats, Alina Cholostoy, et al.
EMBO Reports
|
March 14, 2026
Paneth cell SIRT1 deficiency increases intestinal stress resistance by modulating the gut microbiota
Liz M Garcia-Peterson, Alicia S Wellman, Xiaojiang Xu, et al.
JCI Insight
|
August 15, 2023
DNASE1L3 enhances antitumor immunity and suppresses tumor progression in colon cancer
Wenling Li, Hideki Nakano, Wei Fan, et al.
Cell Metabolism
|
March 5, 2020
Bacteria Boost Mammalian Host NAD Metabolism by Engaging the Deamidated Biosynthesis Pathway
Igor Shats, Jason G Williams, Juan Liu, et al.
Nature Metabolism
|
August 3, 2023
Methionine restriction-induced sulfur deficiency impairs antitumour immunity partially through gut microbiota
Ming Ji, Xiaojiang Xu, Qing Xu, et al.
Nature Communications
|
February 10, 2026
NAPRT-mediated deamidated NAD biosynthesis enhances colon tissue resiliency and suppresses tumorigenesis
Xiaoyue Wu, Jason G Williams, Haoyang Liang, et al.
Page
of 3