Literature DB >> 9013615

Human methionine synthase. cDNA cloning, gene localization, and expression.

L H Chen1, M L Liu, H Y Hwang, L S Chen, J Korenberg, B Shane.   

Abstract

Human cDNAs for methionine synthase (5-methyltetrahydrofolate:L-homocysteine S-transmethylase; EC 2.1.1. 13) have been isolated from fetal and adult liver and HepG2 libraries. The cDNAs span 7.2 kilobases (kb) and consist of a 394-base pair upstream untranslated region, a 3795-base pair open reading frame encoding a 1265-residue 140.3-kDa protein, and about 3 kb of 3' region. The deduced protein sequence shares 53 and 63% identity with the Escherichia coli and the presumptive Caenorhabditis elegans proteins, respectively, and contains all residues implicated in B12 binding to the E. coli protein. Several potential polymorphisms and a cryptic splice deletion were detected in the coding region of the cDNAs. A polymorphism that results in a D919G modification in the protein is fairly common in human DNA samples. Northern analyses of poly(A) mRNA indicated two major species of about 8 and 10 kb in human tissues and some minor, partially spliced species. mRNA levels were highest in the pancreas, skeletal muscle, and heart of the adult and in the kidney in the fetus and were low in adult liver. Genomic clones were isolated and the 5' region was analyzed. Exon 1 is preceded by a number of potential promoter sites, including an E box, CAAT boxes, and a GC box, but this region lacks a TATA element. The human methionine synthase gene was localized to chromosome region 1q42.3-43 by in situ hybridization.

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Year:  1997        PMID: 9013615

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  36 in total

1.  Targeted disruption of the methionine synthase gene in mice.

Authors:  D A Swanson; M L Liu; P J Baker; L Garrett; M Stitzel; J Wu; M Harris; R Banerjee; B Shane; L C Brody
Journal:  Mol Cell Biol       Date:  2001-02       Impact factor: 4.272

Review 2.  Navigating the B(12) road: assimilation, delivery, and disorders of cobalamin.

Authors:  Carmen Gherasim; Michael Lofgren; Ruma Banerjee
Journal:  J Biol Chem       Date:  2013-03-28       Impact factor: 5.157

3.  Plasma folate, related genetic variants, and colorectal cancer risk in EPIC.

Authors:  Simone J P M Eussen; Stein Emil Vollset; Jannicke Igland; Klaus Meyer; Ase Fredriksen; Per Magne Ueland; Mazda Jenab; Nadia Slimani; Paolo Boffetta; Kim Overvad; Anne Tjønneland; Anja Olsen; Françoise Clavel-Chapelon; Marie-Christine Boutron-Ruault; Sophie Morois; Cornelia Weikert; Tobias Pischon; Jakob Linseisen; Rudolf Kaaks; Antonia Trichopoulou; Demosthenes Zilis; Michael Katsoulis; Domenico Palli; Franco Berrino; Paolo Vineis; Rosario Tumino; Salvatore Panico; Petra H M Peeters; H Bas Bueno-de-Mesquita; Fränzel J B van Duijnhoven; Inger Torhild Gram; Guri Skeie; Eiliv Lund; Carlos A González; Carmen Martínez; Miren Dorronsoro; Eva Ardanaz; Carmen Navarro; Laudina Rodríguez; Bethany Van Guelpen; Richard Palmqvist; Jonas Manjer; Ulrika Ericson; Sheila Bingham; Kay-Tee Khaw; Teresa Norat; Elio Riboli
Journal:  Cancer Epidemiol Biomarkers Prev       Date:  2010-05       Impact factor: 4.254

4.  Identification of the gene responsible for the cblA complementation group of vitamin B12-responsive methylmalonic acidemia based on analysis of prokaryotic gene arrangements.

Authors:  C Melissa Dobson; Timothy Wai; Daniel Leclerc; Aaron Wilson; Xuchu Wu; Carole Doré; Thomas Hudson; David S Rosenblatt; Roy A Gravel
Journal:  Proc Natl Acad Sci U S A       Date:  2002-11-15       Impact factor: 11.205

5.  Dietary factors, genetic and epigenetic influences in colorectal cancer.

Authors:  M L Pellegrini; P Argibay; D E Gomez
Journal:  Exp Ther Med       Date:  2010-03-01       Impact factor: 2.447

6.  Lack of association between MTHFD1 G401A polymorphism and ovarian cancer susceptibility.

Authors:  Yuling Cui; Yanhua Jing; Zihan Sun
Journal:  Tumour Biol       Date:  2013-11-28

Review 7.  Genetic disorders of vitamin B₁₂ metabolism: eight complementation groups--eight genes.

Authors:  D Sean Froese; Roy A Gravel
Journal:  Expert Rev Mol Med       Date:  2010-11-29       Impact factor: 5.600

8.  Genetic impairments in folate enzymes increase dependence on dietary choline for phosphatidylcholine production at the expense of betaine synthesis.

Authors:  Ariel B Ganz; Kelsey Shields; Vlad G Fomin; Yusnier S Lopez; Sanjay Mohan; Jessica Lovesky; Jasmine C Chuang; Anita Ganti; Bradley Carrier; Jian Yan; Siraphat Taeswuan; Vanessa V Cohen; Camille C Swersky; Julie A Stover; Gerardo A Vitiello; Olga V Malysheva; Erika Mudrak; Marie A Caudill
Journal:  FASEB J       Date:  2016-06-24       Impact factor: 5.191

9.  Lack of association between methylenetetrahydrofolate dehydrogenase 1 G1958A polymorphism and prostate cancer risk: a meta-analysis.

Authors:  Guizhong Liu; Can Qi; Qingzhu Xu; Baojun Wu; Yingjie Wang; Chunxiao Xue
Journal:  Tumour Biol       Date:  2013-10-03

10.  Functionally null mutations in patients with the cblG-variant form of methionine synthase deficiency.

Authors:  A Wilson; D Leclerc; F Saberi; E Campeau; H Y Hwang; B Shane; J A Phillips; D S Rosenblatt; R A Gravel
Journal:  Am J Hum Genet       Date:  1998-08       Impact factor: 11.025

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