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本文引用的文献

1
Shmt1 heterozygosity impairs folate-dependent thymidylate synthesis capacity and modifies risk of Apc(min)-mediated intestinal cancer risk.Shmt1 杂合性会损害叶酸依赖性胸苷酸合成能力,并改变 Apc(min)介导的肠道癌症风险。
Cancer Res. 2011 Mar 15;71(6):2098-107. doi: 10.1158/0008-5472.CAN-10-1886.
2
Mthfd1 is an essential gene in mice and alters biomarkers of impaired one-carbon metabolism.Mthfd1是小鼠中的一个必需基因,可改变一碳代谢受损的生物标志物。
J Biol Chem. 2009 Jan 16;284(3):1533-9. doi: 10.1074/jbc.M808281200. Epub 2008 Nov 25.
3
Ensembl 2009.Ensembl 2009.
Nucleic Acids Res. 2009 Jan;37(Database issue):D690-7. doi: 10.1093/nar/gkn828. Epub 2008 Nov 25.
4
The MTHFD1 p.Arg653Gln variant alters enzyme function and increases risk for congenital heart defects.MTHFD1基因的p.Arg653Gln变异会改变酶的功能,并增加患先天性心脏病的风险。
Hum Mutat. 2009 Feb;30(2):212-20. doi: 10.1002/humu.20830.
5
Cytoplasmic serine hydroxymethyltransferase regulates the metabolic partitioning of methylenetetrahydrofolate but is not essential in mice.细胞质丝氨酸羟甲基转移酶调节亚甲基四氢叶酸的代谢分配,但对小鼠并非必不可少。
J Biol Chem. 2008 Sep 19;283(38):25846-53. doi: 10.1074/jbc.M802671200. Epub 2008 Jul 21.
6
Altered gene expression in rat colonic adenocarcinomas induced in an azoxymethane plus 2-amino-1-methyl-6-phenylimidazo[4,5-b]- pyridine initiation-promotion model.在氧化偶氮甲烷加2-氨基-1-甲基-6-苯基咪唑并[4,5-b]吡啶引发-促进模型诱导的大鼠结肠腺癌中基因表达的改变
Oncology. 2007;73(3-4):252-60. doi: 10.1159/000127423. Epub 2008 Apr 17.
7
STAT1 expression is not required for polyp formation in Min mice.在Min小鼠中,息肉形成不需要STAT1表达。
Mol Carcinog. 2008 Feb;47(2):75-9. doi: 10.1002/mc.20371.
8
Association of polymorphisms in one-carbon metabolism genes and postmenopausal breast cancer incidence.一碳代谢基因多态性与绝经后乳腺癌发病率的关联。
Cancer Epidemiol Biomarkers Prev. 2007 Jun;16(6):1140-7. doi: 10.1158/1055-9965.EPI-06-1037.
9
Genetic polymorphisms in one-carbon metabolism: associations with CpG island methylator phenotype (CIMP) in colon cancer and the modifying effects of diet.一碳代谢中的基因多态性:与结肠癌中 CpG 岛甲基化表型(CIMP)的关联及饮食的调节作用
Carcinogenesis. 2007 Aug;28(8):1672-9. doi: 10.1093/carcin/bgm089. Epub 2007 Apr 21.
10
Polymorphisms of MTHFD, plasma homocysteine levels, and risk of gastric cancer in a high-risk Chinese population.中国高危人群中MTHFD基因多态性、血浆同型半胱氨酸水平与胃癌风险
Clin Cancer Res. 2007 Apr 15;13(8):2526-32. doi: 10.1158/1078-0432.CCR-06-2293.

Mthfd1 是化学诱导的肠道癌变的修饰物。

Mthfd1 is a modifier of chemically induced intestinal carcinogenesis.

机构信息

Division of Nutritional Sciences, Cornell University, Ithaca, NY 14853, USA.

出版信息

Carcinogenesis. 2011 Mar;32(3):427-33. doi: 10.1093/carcin/bgq270. Epub 2010 Dec 14.

DOI:10.1093/carcin/bgq270
PMID:21156972
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3047240/
Abstract

The causal metabolic pathways underlying associations between folate and risk for colorectal cancer (CRC) have yet to be established. Folate-mediated one-carbon metabolism is required for the de novo synthesis of purines, thymidylate and methionine. Methionine is converted to S-adenosylmethionine (AdoMet), the major one-carbon donor for cellular methylation reactions. Impairments in folate metabolism can modify DNA synthesis, genomic stability and gene expression, characteristics associated with tumorigenesis. The Mthfd1 gene product, C1-tetrahydrofolate synthase, is a trifunctional enzyme that generates one-carbon substituted tetrahydrofolate cofactors for one-carbon metabolism. In this study, we use Mthfd1(gt/+) mice, which demonstrate a 50% reduction in C1-tetrahydrofolate synthase, to determine its influence on tumor development in two mouse models of intestinal cancer, crosses between Mthfd1(gt/+) and Apc(min)(/+) mice and azoxymethane (AOM)-induced colon cancer in Mthfd1(gt/+) mice. Mthfd1 hemizygosity did not affect colon tumor incidence, number or load in Apc(min/+) mice. However, Mthfd1 deficiency increased tumor incidence 2.5-fold, tumor number 3.5-fold and tumor load 2-fold in AOM-treated mice. DNA uracil content in the colon was lower in Mthfd1(gt/+) mice, indicating that thymidylate biosynthesis capacity does not play a significant role in AOM-induced colon tumorigenesis. Mthfd1 deficiency-modified cellular methylation potential, as indicated by the AdoMet: S-adenosylhomocysteine ratio and gene expression profiles, suggesting that changes in the transcriptome and/or decreased de novo purine biosynthesis and associated mutability cause cellular transformation in the AOM CRC model. This study emphasizes the impact and complexity of gene-nutrient interactions with respect to the relationships among folate metabolism and colon cancer initiation and progression.

摘要

叶酸与结直肠癌(CRC)风险之间关联的因果代谢途径尚未确定。叶酸介导的一碳代谢是嘌呤、胸苷酸和蛋氨酸从头合成所必需的。蛋氨酸转化为 S-腺苷甲硫氨酸(AdoMet),是细胞甲基化反应的主要一碳供体。叶酸代谢的缺陷会改变 DNA 合成、基因组稳定性和基因表达,这些特征与肿瘤发生有关。Mthfd1 基因产物 C1-四氢叶酸合酶是一种三功能酶,可生成一碳取代的四氢叶酸辅酶,用于一碳代谢。在这项研究中,我们使用 Mthfd1(gt/+) 小鼠,其 C1-四氢叶酸合酶减少 50%,以确定其对两种肠道癌小鼠模型(Mthfd1(gt/+) 和 Apc(min)(/+) 小鼠的杂交)和 Mthfd1(gt/+) 小鼠中 AOM 诱导的结肠癌的肿瘤发生的影响。Mthfd1 半合子状态不影响 Apc(min/+) 小鼠的结肠肿瘤发生率、数量或负荷。然而,Mthfd1 缺陷使 AOM 处理小鼠的肿瘤发生率增加 2.5 倍,肿瘤数量增加 3.5 倍,肿瘤负荷增加 2 倍。Mthfd1(gt/+) 小鼠结肠中的 DNA 尿嘧啶含量较低,表明胸苷酸生物合成能力在 AOM 诱导的结肠肿瘤发生中没有发挥重要作用。Mthfd1 缺陷改变了细胞甲基化潜能,表现为 AdoMet:S-腺苷同型半胱氨酸比和基因表达谱,表明转录组的变化和/或减少的从头嘌呤合成和相关的易变性导致 AOM CRC 模型中的细胞转化。这项研究强调了基因-营养相互作用对于叶酸代谢与结肠癌起始和进展之间关系的影响和复杂性。