Genetic variation in the TGF-β signaling pathway and colon and rectal cancer risk

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Genetic variation in the TGF-β signaling pathway and colon and rectal cancer risk is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1158/1055-9965.EPI-10-0843
P932PMC publication ID3061458
P698PubMed publication ID21068203

P50authorMartha L SlatteryQ87148386
Jennifer S HerrickQ87148394
Roger K WolffQ96140937
Abbie LundgreenQ98924503
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TGF-beta receptor levels regulate the specificity of signaling pathway activation and biological effects of TGF-betaQ30488363
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Smad4-mediated TGF-beta signaling in tumorigenesisQ33596982
Exploring multilocus associations of inflammation genes and colorectal cancer risk using hapConstructorQ33762734
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Role of transforming growth factor Beta in human cancerQ36073421
Smad3 is key to TGF-beta-mediated epithelial-to-mesenchymal transition, fibrosis, tumor suppression and metastasis.Q36313734
So many correlated tests, so little time! Rapid adjustment of P values for multiple correlated testsQ36512128
Role of transforming growth factor-beta superfamily signaling pathways in human diseaseQ37099520
A comparison of colon and rectal somatic DNA alterationsQ37283757
Chronic inflammation and oxidative stress as a major cause of age-related diseases and cancer.Q37370826
TGF-beta signaling, tumor microenvironment and tumor progression: the butterfly effectQ37663174
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Smad signaling is required to maintain epigenetic silencing during breast cancer progression.Q39750283
Smad3 protein levels are modulated by Ras activity and during the cell cycle to dictate transforming growth factor-beta responsesQ39758487
NFkappaB inhibition and more: a side-by-side comparison of the inhibitors of IKK and proteasome.Q39846803
Smad7 sensitizes tumor necrosis factor induced apoptosis through the inhibition of antiapoptotic gene expression by suppressing activation of the nuclear factor-kappaB pathwayQ40073522
Smad7 induces tumorigenicity by blocking TGF-beta-induced growth inhibition and apoptosis.Q40415912
Cigarette smoke regulates the expression of TLR4 and IL-8 production by human macrophages.Q42021016
Relationship of Ki-ras mutations in colon cancers to tumor location, stage, and survival: a population-based studyQ43424349
Physical activity and colorectal cancerQ43758125
Energy balance and rectal cancer: an evaluation of energy intake, energy expenditure, and body mass indexQ46265003
Prognostic significance of p53 mutations in colon cancer at the population levelQ46344366
Energy balance and colon cancer--beyond physical activityQ46714261
Trend tests for case-control studies of genetic markers: power, sample size and robustnessQ47180831
TGFB1 as a susceptibility gene for high myopia: a replication study with new findingsQ48011752
Objective system for interviewer performance evaluation for use in epidemiologic studies.Q52363379
A genome-wide association study shows that common alleles of SMAD7 influence colorectal cancer riskQ57092250
Lack of an Association between the TGFBR1*6A Variant and Colorectal Cancer RiskQ57319833
Associations between cigarette smoking, lifestyle factors, and microsatellite instability in colon tumorsQ73191057
Insulin-like growth factors control the regulation of oestrogen and progesterone receptor expression by oestrogensQ73317090
Dietary fats and colon cancer: assessment of risk associated with specific fatty acidsQ73939953
P433issue1
P921main subjectgenetic variationQ349856
P304page(s)57-69
P577publication date2010-11-10
P1433published inCancer Epidemiology, Biomarkers & PreventionQ326334
P1476titleGenetic variation in the TGF-β signaling pathway and colon and rectal cancer risk
P478volume20

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