| Rank |
Title |
Journal |
Year |
PubWeight™‹?› |
|
1
|
Nucleotide sequence and expression of the selenocysteine-containing polypeptide of formate dehydrogenase (formate-hydrogen-lyase-linked) from Escherichia coli.
|
Proc Natl Acad Sci U S A
|
1986
|
4.07
|
|
2
|
Methane fermentation.
|
Annu Rev Microbiol
|
1967
|
3.61
|
|
3
|
Identification of a selenocysteyl-tRNA(Ser) in mammalian cells that recognizes the nonsense codon, UGA.
|
J Biol Chem
|
1989
|
3.19
|
|
4
|
Methanococcus vannielii: culture and effects of selenium and tungsten on growth.
|
J Bacteriol
|
1977
|
2.71
|
|
5
|
Methanococcus vannielii: ultrastructure and sensitivity to detergents and antibiotics.
|
J Bacteriol
|
1977
|
2.60
|
|
6
|
Chemical characterization of the selenoprotein component of clostridial glycine reductase: identification of selenocysteine as the organoselenium moiety.
|
Proc Natl Acad Sci U S A
|
1976
|
2.43
|
|
7
|
Clostridium barkeri sp. n.
|
J Bacteriol
|
1972
|
2.38
|
|
8
|
Selenocysteine, identified as the penultimate C-terminal residue in human T-cell thioredoxin reductase, corresponds to TGA in the human placental gene.
|
Proc Natl Acad Sci U S A
|
1996
|
2.33
|
|
9
|
Selenium biochemistry.
|
Science
|
1974
|
2.32
|
|
10
|
Crystal structure of formate dehydrogenase H: catalysis involving Mo, molybdopterin, selenocysteine, and an Fe4S4 cluster.
|
Science
|
1997
|
2.17
|
|
11
|
Methane biosynthesis by Methanosarcina barkeri. Properties of the soluble enzyme system.
|
Arch Biochem Biophys
|
1966
|
2.06
|
|
12
|
Selenium-dependent enzymes.
|
Annu Rev Biochem
|
1980
|
1.98
|
|
13
|
Purification of protein components of the clostridial glycine reductase system and characterization of protein A as a selenoprotein.
|
Arch Biochem Biophys
|
1973
|
1.96
|
|
14
|
A new selenoprotein from human lung adenocarcinoma cells: purification, properties, and thioredoxin reductase activity.
|
Proc Natl Acad Sci U S A
|
1996
|
1.85
|
|
15
|
Mammalian thioredoxin reductase: oxidation of the C-terminal cysteine/selenocysteine active site forms a thioselenide, and replacement of selenium with sulfur markedly reduces catalytic activity.
|
Proc Natl Acad Sci U S A
|
2000
|
1.82
|
|
16
|
Catalytic properties of an Escherichia coli formate dehydrogenase mutant in which sulfur replaces selenium.
|
Proc Natl Acad Sci U S A
|
1991
|
1.80
|
|
17
|
Selenium-dependent and selenium-independent formate dehydrogenases of Methanococcus vannielii. Separation of the two forms and characterization of the purified selenium-independent form.
|
J Biol Chem
|
1981
|
1.69
|
|
18
|
Synthesis of 5-methylaminomethyl-2-selenouridine in tRNAs: 31P NMR studies show the labile selenium donor synthesized by the selD gene product contains selenium bonded to phosphorus.
|
Proc Natl Acad Sci U S A
|
1992
|
1.68
|
|
19
|
A selenium-containing nucleoside at the first position of the anticodon in seleno-tRNAGlu from Clostridium sticklandii.
|
Proc Natl Acad Sci U S A
|
1985
|
1.67
|
|
20
|
Selenophosphate synthetase. Enzyme properties and catalytic reaction.
|
J Biol Chem
|
1994
|
1.62
|
|
21
|
Monoselenophosphate: synthesis, characterization, and identity with the prokaryotic biological selenium donor, compound SePX.
|
Biochemistry
|
1993
|
1.62
|
|
22
|
Selenocysteine, a highly specific component of certain enzymes, is incorporated by a UGA-directed co-translational mechanism.
|
Biofactors
|
1988
|
1.60
|
|
23
|
Occurrence in vivo of selenocysteyl-tRNA(SERUCA) in Escherichia coli. Effect of sel mutations.
|
J Biol Chem
|
1989
|
1.57
|
|
24
|
Reconstitution of a formate-NADP+ oxidoreductase from formate dehydrogenase and a 5-deazaflavin-linked NADP+ reductase isolated from Methanococcus vannielii.
|
J Biol Chem
|
1980
|
1.54
|
|
25
|
Decomposition of Tartrates by the Coliform Bacteria.
|
J Bacteriol
|
1946
|
1.49
|
|
26
|
Identification and synthesis of a naturally occurring selenonucleoside in bacterial tRNAs: 5-[(methylamino)methyl]-2-selenouridine.
|
Biochemistry
|
1984
|
1.45
|
|
27
|
Occurrence of selenocysteine in the selenium-dependent formate dehydrogenase of Methanococcus vannielii.
|
Arch Biochem Biophys
|
1979
|
1.38
|
|
28
|
Escherichia coli formate-hydrogen lyase. Purification and properties of the selenium-dependent formate dehydrogenase component.
|
J Biol Chem
|
1990
|
1.29
|
|
29
|
Selenium-containing tRNAs from Clostridium sticklandii: cochromatography of one species with L-prolyl-tRNA.
|
Proc Natl Acad Sci U S A
|
1980
|
1.29
|
|
30
|
Clostridial glycine reductase complex. Purification and characterization of the selenoprotein component.
|
J Biol Chem
|
1977
|
1.29
|
|
31
|
Selenium-dependent clostridial glycine reductase. Purification and characterization of the two membrane-associated protein components.
|
J Biol Chem
|
1979
|
1.27
|
|
32
|
Nicotinic acid hydroxylase from Clostridium barkeri: electron paramagnetic resonance studies show that selenium is coordinated with molybdenum in the catalytically active selenium-dependent enzyme.
|
Proc Natl Acad Sci U S A
|
1994
|
1.27
|
|
33
|
Levels of major selenoproteins in T cells decrease during HIV infection and low molecular mass selenium compounds increase.
|
Proc Natl Acad Sci U S A
|
1999
|
1.25
|
|
34
|
Biosynthesis of 5-methylaminomethyl-2-selenouridine, a naturally occurring nucleoside in Escherichia coli tRNA.
|
Arch Biochem Biophys
|
1986
|
1.23
|
|
35
|
Glycine reduction to acetate and ammonia: identification of ferredoxin and another low molecular weight acidic protein as components of the reductase system.
|
Arch Biochem Biophys
|
1966
|
1.23
|
|
36
|
Selenophosphate synthetase: detection in extracts of rat tissues by immunoblot assay and partial purification of the enzyme from the archaean Methanococcus vannielii.
|
Proc Natl Acad Sci U S A
|
1995
|
1.21
|
|
37
|
Escherichia coli NifS-like proteins provide selenium in the pathway for the biosynthesis of selenophosphate.
|
J Biol Chem
|
2000
|
1.20
|
|
38
|
Carbon monoxide dehydrogenase from Methanosarcina barkeri. Disaggregation, purification, and physicochemical properties of the enzyme.
|
J Biol Chem
|
1987
|
1.20
|
|
39
|
Selenium-containing tRNAGlu from Clostridium sticklandii: correlation of aminoacylation with selenium content.
|
Proc Natl Acad Sci U S A
|
1982
|
1.19
|
|
40
|
Distribution of two selenonucleosides among the selenium-containing tRNAs from Methanococcus vannielii.
|
Proc Natl Acad Sci U S A
|
1984
|
1.19
|
|
41
|
Human thioredoxin reductase from HeLa cells: selective alkylation of selenocysteine in the protein inhibits enzyme activity and reduction with NADPH influences affinity to heparin.
|
Proc Natl Acad Sci U S A
|
1998
|
1.18
|
|
42
|
Fetal mouse selenophosphate synthetase 2 (SPS2): characterization of the cysteine mutant form overproduced in a baculovirus-insect cell system.
|
Proc Natl Acad Sci U S A
|
1997
|
1.17
|
|
43
|
Isolation of a selenium-containing thiolase from Clostridium kluyveri: identification of the selenium moiety as selenomethionine.
|
Proc Natl Acad Sci U S A
|
1982
|
1.16
|
|
44
|
Purification and properties of -lysine mutase, a pyridoxal phosphate and B 12 coenzyme dependent enzyme.
|
Biochemistry
|
1973
|
1.13
|
|
45
|
Nicotinic acid metabolism. 8. Tracer studies on the intermediary roles of -methyleneglutarate, methylitaconate, dimethylmaleate, and pyruvate.
|
J Biol Chem
|
1971
|
1.11
|
|
46
|
Responsiveness of selenoproteins to dietary selenium.
|
Annu Rev Nutr
|
1999
|
1.11
|
|
47
|
Escherichia coli mutant SELD enzymes. The cysteine 17 residue is essential for selenophosphate formation from ATP and selenide.
|
J Biol Chem
|
1992
|
1.10
|
|
48
|
Incorporation and distribution of selenium into thiolase from Clostridium kluyveri.
|
J Biol Chem
|
1985
|
1.10
|
|
49
|
In vitro incorporation of selenium into tRNAs of Salmonella typhimurium.
|
Proc Natl Acad Sci U S A
|
1990
|
1.09
|
|
50
|
Formation of a selenium-substituted rhodanese by reaction with selenite and glutathione: possible role of a protein perselenide in a selenium delivery system.
|
Proc Natl Acad Sci U S A
|
2001
|
1.08
|
|
51
|
Anaerobic degradation of lysine. IV. Cobamide coenzyme-dependent migration of an amino group from carbon 6 of beta-lysine (3,6-diaminohexanoate) to carbon 5 forming a new naturally occurring amino acid, 3,5-diaminohexanoate.
|
Arch Biochem Biophys
|
1968
|
1.08
|
|
52
|
Inhibition of NF-kappaB DNA binding and nitric oxide induction in human T cells and lung adenocarcinoma cells by selenite treatment.
|
Proc Natl Acad Sci U S A
|
1997
|
1.06
|
|
53
|
Biochemical analysis of Escherichia coli selenophosphate synthetase mutants. Lysine 20 is essential for catalytic activity and cysteine 17/19 for 8-azido-ATP derivatization.
|
J Biol Chem
|
1993
|
1.05
|
|
54
|
Nicotinic acid metabolism. VI. Purification and properties of alpha-methyleneglutarate mutase (B 12-dependent) and methylitaconate isomerase.
|
J Biol Chem
|
1971
|
1.03
|
|
55
|
Selenoprotein A component of the glycine reductase complex from Clostridium purinolyticum: nucleotide sequence of the gene shows that selenocysteine is encoded by UGA.
|
J Bacteriol
|
1991
|
1.02
|
|
56
|
Vitamin B 12.
|
Science
|
1971
|
1.01
|
|
57
|
Selenium-dependent clostridial glycine reductase.
|
Methods Enzymol
|
1978
|
1.01
|
|
58
|
Studies on the fermentation of D-alpha-lysine. Purification and properties of an adenosine triphosphate regulated B 12-coenzyme-dependent D-alpha-lysine mutase complex from Clostridium sticklandii.
|
Biochemistry
|
1970
|
1.00
|
|
59
|
The NIFS protein can function as a selenide delivery protein in the biosynthesis of selenophosphate.
|
J Biol Chem
|
1998
|
1.00
|
|
60
|
Some selenium-dependent biochemical processes.
|
Adv Enzymol Relat Areas Mol Biol
|
1979
|
1.00
|
|
61
|
Purification and properties of carbon monoxide dehydrogenase from Methanococcus vannielii.
|
J Bacteriol
|
1987
|
1.00
|
|
62
|
Nicotinic acid metabolism. V. A cobamide coenzyme-dependent conversion of alpha-methyleneglutaric acid to dimethylmaleic acid.
|
Proc Natl Acad Sci U S A
|
1970
|
1.00
|
|
63
|
Properties of the selenium- and molybdenum-containing nicotinic acid hydroxylase from Clostridium barkeri.
|
Biochemistry
|
1996
|
0.99
|
|
64
|
Coordination of selenium to molybdenum in formate dehydrogenase H from Escherichia coli.
|
Proc Natl Acad Sci U S A
|
1994
|
0.99
|
|
65
|
A purified selenophosphate-dependent enzyme from Salmonella typhimurium catalyzes the replacement of sulfur in 2-thiouridine residues in tRNAs with selenium.
|
Proc Natl Acad Sci U S A
|
1994
|
0.97
|
|
66
|
Role of B12 compounds in methane formation.
|
Fed Proc
|
1967
|
0.97
|
|
67
|
Diol metabolism and diol dehydratase in Clostridium glycolicum.
|
Arch Biochem Biophys
|
1986
|
0.95
|
|
68
|
Selenium-dependent glycine reductase: differences in physicochemical properties and biological activities of selenoprotein A components isolated from Clostridium sticklandii and Clostridium purinolyticum.
|
Biofactors
|
1988
|
0.95
|
|
69
|
Overexpression of wild type and SeCys/Cys mutant of human thioredoxin reductase in E. coli: the role of selenocysteine in the catalytic activity.
|
Free Radic Biol Med
|
2001
|
0.94
|
|
70
|
The mutual sparing effects of selenium and vitamin E in animal nutrition may be further explained by the discovery that mammalian thioredoxin reductase is a selenoenzyme.
|
Biofactors
|
1997
|
0.94
|
|
71
|
Anaerobic degradation of lysine. V. Some properties of the cobamide coenzyme-dependent beta-lysine mutase of Clostridium sticklandii.
|
Arch Biochem Biophys
|
1968
|
0.94
|
|
72
|
Synthesis and characterization of selenotrisulfide-derivatives of lipoic acid and lipoamide.
|
Proc Natl Acad Sci U S A
|
2000
|
0.94
|
|
73
|
Selenium-dependent metabolism of purines: A selenium-dependent purine hydroxylase and xanthine dehydrogenase were purified from Clostridium purinolyticum and characterized.
|
Proc Natl Acad Sci U S A
|
2000
|
0.92
|
|
74
|
Selenocysteyl-tRNA occurs in the diatom Thalassiosira and in the ciliate Tetrahymena.
|
Mol Microbiol
|
1991
|
0.92
|
|
75
|
Stereochemical studies of 8-hydroxy-5-deazaflavin-dependent NADP+ reductase from Methanococcus vannielii.
|
J Biol Chem
|
1980
|
0.92
|
|
76
|
Catalytic properties of selenophosphate synthetases: comparison of the selenocysteine-containing enzyme from Haemophilus influenzae with the corresponding cysteine-containing enzyme from Escherichia coli.
|
Proc Natl Acad Sci U S A
|
1999
|
0.91
|
|
77
|
A cobamide coenzyme dependent migration of the epsilon-amino group of D-lysine.
|
Biochem Biophys Res Commun
|
1967
|
0.91
|
|
78
|
Purification and immunological studies of selenoprotein A of the clostridial glycine reductase complex.
|
J Biol Chem
|
1987
|
0.91
|
|
79
|
Purification and properties of proline reductase from Clostridium sticklandii.
|
J Biol Chem
|
1976
|
0.89
|
|
80
|
Human selenium-dependent thioredoxin reductase from HeLa cells: properties of forms with differing heparin affinities.
|
Arch Biochem Biophys
|
1999
|
0.89
|
|
81
|
In vitro methane and methyl coenzyme M formation from acetate: evidence that acetyl-CoA is the required intermediate activated form of acetate.
|
Biochem Biophys Res Commun
|
1987
|
0.88
|
|
82
|
Selenium metabolism and selenium-dependent enzymes in microorganisms.
|
Annu Rev Nutr
|
1989
|
0.88
|
|
83
|
Selenoprotein A of the clostridial glycine reductase complex: purification and amino acid sequence of the selenocysteine-containing peptide.
|
Proc Natl Acad Sci U S A
|
1988
|
0.88
|
|
84
|
Effects of monovalent cations and divalent metal ions on Escherichia coli selenophosphate synthetase.
|
Proc Natl Acad Sci U S A
|
1994
|
0.88
|
|
85
|
Analogues of 8-hydroxy-5-deazaflavin cofactor: relative activity as substrates for 8-hydroxy-5-deazaflavin-dependent NADP+ reductase from Methanococcus vannielii.
|
Biochemistry
|
1982
|
0.87
|
|
86
|
Selenium-containing formate dehydrogenase H from Escherichia coli: a molybdopterin enzyme that catalyzes formate oxidation without oxygen transfer.
|
Biochemistry
|
1998
|
0.86
|
|
87
|
Heparin-binding properties of selenium-containing thioredoxin reductase from HeLa cells and human lung adenocarcinoma cells.
|
Proc Natl Acad Sci U S A
|
1997
|
0.86
|
|
88
|
Note on pH Tolerance of Aerobacter aerogenes and Aerobacillus macerans as Related to Natural Ecology and Decomposition of Acid Food Products.
|
J Bacteriol
|
1946
|
0.85
|
|
89
|
Anaerobic induction of Escherichia coli formate dehydrogenase (hydrogenase-linked) is enhanced by gyrase inactivation.
|
Proc Natl Acad Sci U S A
|
1988
|
0.84
|
|
90
|
Selenophosphate.
|
Methods Enzymol
|
1995
|
0.84
|
|
91
|
Biological function of selenium.
|
Nutr Rev
|
1977
|
0.84
|
|
92
|
Characterization of crystalline formate dehydrogenase H from Escherichia coli. Stabilization, EPR spectroscopy, and preliminary crystallographic analysis.
|
J Biol Chem
|
1996
|
0.84
|
|
93
|
Clostridium sticklandii glycine reductase selenoprotein A gene: cloning, sequencing, and expression in Escherichia coli.
|
J Bacteriol
|
1992
|
0.84
|
|
94
|
Selenophosphate synthetase: enzyme labeling studies with [gamma-32P]ATP, [beta-32P]ATP, [8-14C]ATP, and [75Se]selenide.
|
Arch Biochem Biophys
|
1997
|
0.83
|
|
95
|
Isotope exchange studies on the Escherichia coli selenophosphate synthetase mechanism.
|
Proc Natl Acad Sci U S A
|
1998
|
0.83
|
|
96
|
Occurrence and characterization of selenocysteine in proteins.
|
Methods Enzymol
|
1984
|
0.83
|
|
97
|
Solubilization of a membrane-bound diol dehydratase with retention of EPR g = 2.02 signal by using 2-(N-cyclohexylamino)ethanesulfonic acid buffer.
|
Proc Natl Acad Sci U S A
|
1987
|
0.83
|
|
98
|
The role of pyridoxal phosphate in the B 12 Coenzyme-dependent D- -lysine mutase reaction.
|
Biochemistry
|
1972
|
0.82
|
|
99
|
New biologic functions--selenium-dependent nucleic acids and proteins.
|
Fundam Appl Toxicol
|
1984
|
0.82
|
|
100
|
Cloning and heterologous expression of a Methanococcus vannielii gene encoding a selenium-binding protein.
|
IUBMB Life
|
2004
|
0.81
|
|
101
|
Glycine reductase selenoprotein A is not a glycoprotein: the positive periodic acid-Schiff reagent test is the result of peptide bond cleavage and carbonyl group generation.
|
Proc Natl Acad Sci U S A
|
1995
|
0.79
|
|
102
|
Biosynthesis of selenium-modified tRNAs in Methanococcus vannielii.
|
Proc Natl Acad Sci U S A
|
1990
|
0.79
|
|
103
|
Stereochemical studies of a selenium-containing hydrogenase from Methanococcus vannielii: determination of the absolute configuration of C-5 chirally labeled dihydro-8-hydroxy-5-deazaflavin cofactor.
|
Proc Natl Acad Sci U S A
|
1985
|
0.79
|
|
104
|
Utilization of selenocysteine as a source of selenium for selenophosphate biosynthesis.
|
Biofactors
|
2001
|
0.77
|
|
105
|
[On the mechanism of the beta-lysine-mutase reaction].
|
Experientia
|
1969
|
0.77
|
|
106
|
Retracted
Binding of ATP and its derivatives to selenophosphate synthetase from Escherichia coli.
|
Biochemistry (Mosc)
|
2009
|
0.76
|
|
107
|
Studies on the fermentation of p-alpha-lysine. On the hydrogen shift catalyzed by the B 12 coenzyme dependent D-alpha-lysine mutase.
|
Biochemistry
|
1971
|
0.76
|
|
108
|
Small Colonies of Clostridium sticklandii Resulting from Nitrosoguanidine Treatment and Exhibiting Defects in Catabolic Enzymes.
|
J Bacteriol
|
1970
|
0.75
|
|
109
|
A Method for Control of Sanitation in Food Processing Plants.
|
Am J Public Health Nations Health
|
1945
|
0.75
|
|
110
|
The penultimate selenocysteine residue at the C-terminus of mammalian thioredoxin reductase plays an obligatory role in the NADPH-disulfide oxidoreductase catalytic mechanism.
|
Biofactors
|
2000
|
0.75
|
|
111
|
Purification and properties of a quinone-dependent p-nitrophenylphosphatase from Clostridium sticklandii.
|
Arch Biochem Biophys
|
1985
|
0.75
|
|
112
|
Selenoprotein A component of the glycine reductase complex from Clostridium purinolyticum: nucleotide sequence of the gene shows that selenocysteine is encoded by UGA.
|
J Bacteriol
|
1991
|
0.75
|
|
113
|
Purification of individual tRNAs using a monoclonal anti-AMP antibody affinity column.
|
Anal Biochem
|
1987
|
0.75
|
|
114
|
Fermentation science: basic and applied research needs. Roundtable discussion.
|
Basic Life Sci
|
1981
|
0.75
|
|
115
|
Amino acid sequence determination of the Clostridium M-E ferredoxin and a comment on the role of the aromatic residues in the clostridial ferredoxins.
|
Biochemistry
|
1974
|
0.75
|
|
116
|
Some vitamin B12- and selenium-dependent enzymes.
|
Trans N Y Acad Sci
|
1983
|
0.75
|
|
117
|
Growth pattern of two types of vitamin B 12 auxotrophic mutants of Clostridium sticklandii.
|
Z Allg Mikrobiol
|
1971
|
0.75
|
|
118
|
A non-radioactive and two radioactive assays for selenophosphate synthetase activity.
|
Biofactors
|
1997
|
0.75
|
|
119
|
International Congress on Vitamins and Biofactors in Life Science.
|
Biofactors
|
1992
|
0.75
|