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1,2-dihydroxybenzene-3,5-disulfonic acid disodium salt and cysteine

1,2-dihydroxybenzene-3,5-disulfonic acid disodium salt has been researched along with cysteine in 6 studies

Research

Studies (6)

TimeframeStudies, this research(%)All Research%
pre-19903 (50.00)18.7374
1990's1 (16.67)18.2507
2000's1 (16.67)29.6817
2010's1 (16.67)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Lynn, KR; Yaguchi, M1
Abrahamson, M; Barrett, AJ; Buttle, DJ1
Bradford, DS; Chao, EY; Cooper, KM; Oegema, TR; Wakano, K1
Brocklehurst, K; Kowlessur, D; Mellor, GW; Thomas, EW; Thomas, MP; Topham, CM; Whitford, D1
Bartik, K; Boussard, P; Huet, J; Looze, Y; Raussens, V; Wintjens, R1
Feng, GG; Fujiwara, Y; Hayashi, H; Kinoshita, H; Li, J; Nakamura, E; Sato, M; Yasuda, Y1

Other Studies

6 other study(ies) available for 1,2-dihydroxybenzene-3,5-disulfonic acid disodium salt and cysteine

ArticleYear
N-Terminal homology in three cysteinyl proteases from Papaya latex.
    Biochimica et biophysica acta, 1979, Dec-14, Volume: 581, Issue:2

    Topics: Amino Acid Sequence; Bromelains; Chymopapain; Cysteine; Peptide Hydrolases; Plants

1979
The biochemistry of the action of chymopapain in relief of sciatica.
    Spine, 1986, Volume: 11, Issue:7

    Topics: Cartilage; Chromatography, Ion Exchange; Chymopapain; Cysteine; Glycosaminoglycans; Humans; Hydrogen-Ion Concentration; Intervertebral Disc Displacement; Proteoglycans; Sciatica

1986
Chymopapain, chemonucleolysis, and nucleus pulposus regeneration. A biochemical and biomechanical study.
    Spine, 1984, Volume: 9, Issue:2

    Topics: Animals; Biomechanical Phenomena; Chymopapain; Cysteine; Dogs; Edetic Acid; Endopeptidases; Humans; In Vitro Techniques; Intervertebral Disc; Male; Proteoglycans; Radiography; Regeneration; Time Factors

1984
Structure of chymopapain M the late-eluted chymopapain deduced by comparative modelling techniques and active-centre characteristics determined by pH-dependent kinetics of catalysis and reactions with time-dependent inhibitors: the Cys-25/His-159 ion-pair
    The Biochemical journal, 1994, Jun-15, Volume: 300 ( Pt 3)

    Topics: Amino Acid Sequence; Binding Sites; Catalysis; Chymopapain; Cystatins; Cysteine; Disulfides; Histidine; Hydrogen Bonding; Hydrogen-Ion Concentration; Kinetics; Models, Molecular; Molecular Sequence Data; Oxidation-Reduction; Papain; Protein Structure, Tertiary; Sequence Alignment; Sequence Homology, Amino Acid

1994
Structural characterization of the papaya cysteine proteinases at low pH.
    Biochemical and biophysical research communications, 2006, Mar-10, Volume: 341, Issue:2

    Topics: Administration, Oral; Anilino Naphthalenesulfonates; Calorimetry, Differential Scanning; Carica; Chymopapain; Circular Dichroism; Cysteine; Cysteine Endopeptidases; Endopeptidases; Glycine; Hot Temperature; Hydrogen-Ion Concentration; Models, Chemical; Plant Proteins; Protein Conformation; Protein Denaturation; Protein Folding; Spectrometry, Fluorescence; Spectrophotometry; Temperature; Time Factors; Ultraviolet Rays

2006
High oxygen modifies vasodilator effect of cysteine via enhanced oxidative stress and thromboxane production in the rat mesenteric artery.
    Pflugers Archiv : European journal of physiology, 2016, Volume: 468, Issue:9

    Topics: 1,2-Dihydroxybenzene-3,5-Disulfonic Acid Disodium Salt; Alkynes; Animals; Cysteine; Glyburide; Glycine; Glycoproteins; Mesenteric Arteries; NADPH Oxidases; Oxidative Stress; Oxygen; Peroxynitrous Acid; Rats; Rats, Wistar; Superoxides; Thromboxanes; Vasodilation

2016