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Items: 11

1.

Dietary methionine influences therapy in mouse cancer models and alters human metabolism.

Gao X, Sanderson SM, Dai Z, Reid MA, Cooper DE, Lu M, Richie JP Jr, Ciccarella A, Calcagnotto A, Mikhael PG, Mentch SJ, Liu J, Ables G, Kirsch DG, Hsu DS, Nichenametla SN, Locasale JW.

Nature. 2019 Aug;572(7769):397-401. doi: 10.1038/s41586-019-1437-3. Epub 2019 Jul 31.

PMID:
31367041
2.

Methionine metabolism influences genomic architecture and gene expression through H3K4me3 peak width.

Dai Z, Mentch SJ, Gao X, Nichenametla SN, Locasale JW.

Nat Commun. 2018 May 16;9(1):1955. doi: 10.1038/s41467-018-04426-y.

3.

Sulfur amino acid restriction-induced changes in redox-sensitive proteins are associated with slow protein synthesis rates.

Nichenametla SN, Mattocks DAL, Malloy VL, Pinto JT.

Ann N Y Acad Sci. 2018 Apr;1418(1):80-94. doi: 10.1111/nyas.13556. Epub 2018 Jan 29.

PMID:
29377163
4.

Short term methionine restriction increases hepatic global DNA methylation in adult but not young male C57BL/6J mice.

Mattocks DA, Mentch SJ, Shneyder J, Ables GP, Sun D, Richie JP Jr, Locasale JW, Nichenametla SN.

Exp Gerontol. 2017 Feb;88:1-8. doi: 10.1016/j.exger.2016.12.003. Epub 2016 Dec 7.

5.

Methionine restriction beyond life-span extension.

Ables GP, Hens JR, Nichenametla SN.

Ann N Y Acad Sci. 2016 Jan;1363:68-79. doi: 10.1111/nyas.13014. Epub 2016 Feb 24. Review.

PMID:
26916321
6.

Histone Methylation Dynamics and Gene Regulation Occur through the Sensing of One-Carbon Metabolism.

Mentch SJ, Mehrmohamadi M, Huang L, Liu X, Gupta D, Mattocks D, Gómez Padilla P, Ables G, Bamman MM, Thalacker-Mercer AE, Nichenametla SN, Locasale JW.

Cell Metab. 2015 Nov 3;22(5):861-73. doi: 10.1016/j.cmet.2015.08.024. Epub 2015 Sep 24.

7.

Resistant starch type 4-enriched diet lowered blood cholesterols and improved body composition in a double blind controlled cross-over intervention.

Nichenametla SN, Weidauer LA, Wey HE, Beare TM, Specker BL, Dey M.

Mol Nutr Food Res. 2014 Jun;58(6):1365-9. doi: 10.1002/mnfr.201300829. Epub 2014 Jan 30.

8.

A functional trinucleotide repeat polymorphism in the 5'-untranslated region of the glutathione biosynthetic gene GCLC is associated with increased risk for lung and aerodigestive tract cancers.

Nichenametla SN, Muscat JE, Liao JG, Lazarus P, Richie JP Jr.

Mol Carcinog. 2013 Oct;52(10):791-9. doi: 10.1002/mc.21923. Epub 2012 May 18.

9.

A GAG trinucleotide-repeat polymorphism in the gene for glutathione biosynthetic enzyme, GCLC, affects gene expression through translation.

Nichenametla SN, Lazarus P, Richie JP Jr.

FASEB J. 2011 Jul;25(7):2180-7. doi: 10.1096/fj.10-174011. Epub 2011 Mar 28.

10.

Functional significance of the GAG trinucleotide-repeat polymorphism in the gene for the catalytic subunit of gamma-glutamylcysteine ligase.

Nichenametla SN, Ellison I, Calcagnotto A, Lazarus P, Muscat JE, Richie JP Jr.

Free Radic Biol Med. 2008 Sep 1;45(5):645-50. doi: 10.1016/j.freeradbiomed.2008.05.012. Epub 2008 May 24.

11.

A review of the effects and mechanisms of polyphenolics in cancer.

Nichenametla SN, Taruscio TG, Barney DL, Exon JH.

Crit Rev Food Sci Nutr. 2006;46(2):161-83. Review.

PMID:
16431408

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