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2008 | 30 | 2 |

Tytuł artykułu

Cloning and expression of selenocysteine methyltransferase cDNA from Camellia sinensis

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Selenocysteine methyltransferase (SMT), specifically methylates selenocysteine (SeCys) to produce the nonprotein amino acid Se-methyl selenocysteine (SeMSC) and played key role of removing selenium toxic effect at higher levels to the plant. Here we report the cloning of a cDNA encoding selenocysteine methyltransferase from Camellia sinensis (CsSMT) and expression of CsSMT in E.coli. CsSMT isolated by RT-PCR and RACE-PCR reaction. CsSMT is a 1,401 bp cDNA with an open reading frame predicted to encode a 351 amino acid, 40.5 kD protein; The predicted amino acid sequences of CsSMT shows 74% identity with A. bisulcatus selenocysteine methyltransferase (AbSMT) and 69% identity with Broccoli (Brassica oleracea var. italica) selenocysteine methyltransferase (BoSMT), and shares 53, 73 and 65% identity, respectively, with Arabidopsis thaliana homocysteine S-methyltransferase AtHMT1, AtHMT2, and AtHMT3, and 65% to Zea mays homocysteine S-methyltransferase (ZmHMT2). Analyses of CsSMT showed that it lacks obvious chloroplast or mitochondrial targeting sequences and contains a consensus sequence of GGCC for a possible zinc-binding motif near the C-terminal and a conserved Cys residue upstream of the zinc-binding motif as other related methyltransferases. Expression of CsSMT correlated with the presence of SMT enzyme activity in cell extracts, and bacteria containing recombinant CsSMT plasmid showed much high tolerance to selenate and selenite.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

30

Numer

2

Opis fizyczny

p.167-174,fig.,ref.

Twórcy

autor
  • Key Laboratory of Tea Biochemistry and Biotechnology, Ministry of Education and Ministry of Agriculture, Anhui Agricultural University China, Changjiang West Road 130, Hefei 230036 Anhui, China
  • College of Resources and Environmental Sciences, Anhui Agricultural University China, Changjiang West Road 130, Hefei 230036 Anhui, China
autor
  • Key Laboratory of Tea Biochemistry and Biotechnology, Ministry of Education and Ministry of Agriculture, Anhui Agricultural University China, Changjiang West Road 130, Hefei 230036 Anhui, China
autor
  • Key Laboratory of Tea Biochemistry and Biotechnology, Ministry of Education and Ministry of Agriculture, Anhui Agricultural University China, Changjiang West Road 130, Hefei 230036 Anhui, China
autor
  • Key Laboratory of Tea Biochemistry and Biotechnology, Ministry of Education and Ministry of Agriculture, Anhui Agricultural University China, Changjiang West Road 130, Hefei 230036 Anhui, China
autor
  • Key Laboratory of Tea Biochemistry and Biotechnology, Ministry of Education and Ministry of Agriculture, Anhui Agricultural University China, Changjiang West Road 130, Hefei 230036 Anhui, China
autor
  • Key Laboratory of Tea Biochemistry and Biotechnology, Ministry of Education and Ministry of Agriculture, Anhui Agricultural University China, Changjiang West Road 130, Hefei 230036 Anhui, China

Bibliografia

  • Ausubel F, Brent R, Kingstone RE, Moore DD, Smith JA, Seidman JG, Struhl K (eds) (1993) Current protocols in molecular biology. Greene Publishing Associates and Wiley Interscience, New York
  • Bourgis F, Roje S, Nuccio ML, Fisher DB, Tarczynski MC, Li C, Herschbach C, Rennenberg H, Pimenta MJ, Shen TL, Gage DA, Hanson AD (1999) S-Methylmethionine plays a major role in phloem sulfur transport and is synthesized by a novel type of methyltransferase. Plant Cell 11:1485–1497
  • Brown TA, Shrift A (1981) Exclusion of selenium from proteins of selenium tolerant Astragalus species. Plant Physiol 67:1051–1053
  • Cai XJ, Block E, Uden PC, Zhang X, Quimby BD, Sullivan JJ (1995) Allium chemistry: identification of selenoamino acids in ordinary and selenium-enriched garlic, onion, and broccoli using gas-chromatography with atomic-emission detection. J Agri Food Chem 43:1754–1757
  • Davis CD, Zeng HW, Finley JW (2002) Selenium-enriched broccoli decreases intestinal tumorigenesis in multiple intestinal neoplasia mice. J Nutr 132:307–309
  • Driscoll DM, Copeland PR (2003) Mechanism and regulation of selenoprotein synthesis. Annu Rev Nutr 23:17–40
  • Ellis DR, Sors TG, Brunk DG, Albrecht C, Orser C, Lahner B, Wood KV, Harris HH, Pickering IJ, Salt DE (2004) Production of Semethylselenocysteine in transgenic plants expressing selenocysteine methyltransferase. BMC Plant Biol 4:1–11
  • Finley JW, Davis CD (2001) Selenium (Se) from high-selenium broccoli is utilized differently than selenite, selenate and selenomethionine, but is more effective in inhibiting colon carcinogenesis. Biofactors 14:191–196
  • Finley JW, Davis CD, Feng Y (2000) Selenium from high selenium broccoli protects rats from colon cancer. J Nutr 130:2384–2389
  • Finley JW, Ip C, Lisk DJ, Davis CD, Hiuntze KJ, Whanger PD (2001) Cancer-protective properties of high-selenium broccoli. J Agri Food Chem 49:2679–2683
  • Finley JW, Grusak MA, Keck AS, Gregoire BR (2004) Bioavailability of selenium from meat and broccoli as determined by retention and distribution of 75Se. Biol Trace Elem Res 99:191–209
  • Kato M, Mizuno K, Fujimura T, lrie M., Crozier A, Ashihare H (1999) Purification and characterization of caffeine synthase from tea leaves. Plant Physiol 120:579–586
  • Kryukov GV, Castellano S, Novoselov SV, Lobanov AV, Zehtab O, Guigo R, Gladyshev VN (2003) Characterization of mammalian selenoproteomes. Science 300:1439–1443
  • Laemmli UK (1970) Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature 277:680–685
  • Larsen PR, Berry MJ (1995) Nutritional and hormonal regulation of thyroid hormone deiodinases. Annu Rev Nutr 15:323–352
  • LaVallie ER, DiBlasio EA., Kovacic S, Grant KL, Schendel PF, McCoy JM (1993) A thioredoxin gene fusion expression system that circumvents inclusion body formation in the E.Coli cytoplasm. Biotechnology 11:187–193
  • LeDuc DL, Tarun AS, Montes-Bayon M, Meija J, Malit MF, Wu CP, AbdelSamie M, Chiang CY, Tagmount A, deSouza M, Neuhierl B, Böck A, Caruso J, Terry N (2004) Overexpression of Selenocysteine Methyltransferase in Arabidopsis and Indian Mustard Increases Selenium Tolerance and Accumulation. Plant Physiol 135:377–383
  • Liang LN, Mo SM, Zhang P, Cai YQ, Mou SF, Jiang GB, Wen MJ (2006) Selenium speciation by high-performance anionexchange chromatography–post-column UV irradiation coupled with atomic fluorescence spectrometry. J Chromatogr A1118:139–143
  • Lyi SM., Heller LI, Rutzke M, Welch RM., Kochian LV, Li L (2005) Molecular and biochemical Characterization of the Selenocysteine Se-Methyltransferase gene and Se-Methylselenocysteine synthesis in Broccoli. Plant Physiol 138:409–420
  • Medina D, Thompson H, Ganther H, Ip C (2001) Se-methylselenocysteine: a new compound for chemoprevention of breast cancer. Nutr Cancer 40:12–17
  • Neuhierl B, Böck A (1996) On the mechanism of selenium tolerance in selenium-accumulating plants: Purification and characterization of a specific selenocysteine methyltransferase from cultured cells of Astragalus bisulcatus. Eur J Biochem 239:235–238
  • Neuhierl B, Thanbichler M, Lottspeich F., Böck A (1999) A family of S-Methylmethionine-dependent Thiol/Selenol Methyltransferases. J Biol Chem 274:5407–5414
  • Pickering IJ, Wright C, Bubner B, Ellis D, Persans MW, Yu PE, George GN, Prince RC, Salt DE (2003) Chemical form and distribution of selenium and sulfur in the selenium hyperaccumulator Astragalus bisulcatus. Plant Physiol 131:1460–1467
  • Ranocha P, Bourgis F, Ziemak MJ, Rhodes D, Gage DA, Hanson AD (2000) Characterization and functional expression of cDNAs encoding methionine-sensitive and -insensitive homocysteine S-methyltransferases from Arabidopsis. J Biol Chem 275:5962–5968
  • Rotruck JT, Pope AL, Ganther HE, Hafeman DG, Hoekstra WG (1973) Selenium biochemical role as a component of glutathione peroxidase. Science 179:588–590 Stadtman TC (1996) Selenocysteine. Annu Rev Biochem 65:83–100
  • Sugihara S, Kondo M, Chihara Y, Yuji M, Hattori H, Yoshida M (2004) Preparation of selenium-enriched sprouts and identification of their selenium species by high-performance liquid chromatography-inductively coupled plasma mass spectrometry. Biosci Biotechnol Biochem 68:193–199
  • Tamura T, Stadtman TC (1996) A new selenoprotein from human lung adenocarcinoma cells: purification, properties, and thioredoxin reductase activity. Proc Natl Acad Sci 93:1006–1011

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Bibliografia

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