Showing 243401–243450 of 268263 results
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Tetrathionate (TT) Broth Base, Hajna, 10 kg
Tetrathionate (TT) Broth Base, Hajna, 10 kg
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Tetrathionate (TT) Broth Base, Hajna, 5 kg
Tetrathionate (TT) Broth Base, Hajna, 5 kg
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Tetrathionate (TT) Broth Base, Hajna, 500 g
Tetrathionate (TT) Broth Base, Hajna, 500 g
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Tetrathionate Broth Base, 10 kg
Tetrathionate Broth Base, 10 kg
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Tetrathionate Broth Base, 5 kg
Tetrathionate Broth Base, 5 kg
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Tetrathionate Broth Base, 500 g
Tetrathionate Broth Base, 500 g
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Tetratriacontane
Tetratriacontane
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Tetratriacontane
Tetratriacontane
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Tetratriacontane
Tetratriacontane
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Tetratriacontane
Molecular Formula : C34 H70
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Tetratriacontane
Molecular Formula : C34 H70
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Tetratriacontane
Molecular Formula : C34 H70
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Tetraxolin
Molecular Formula : C10 H8 O6
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Tetraxolin
Molecular Formula : C10 H8 O6
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Tetraxolin
Molecular Formula : C10 H8 O6
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Tetrazolium Blue Chloride
Tetrazolium Blue Chloride
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Tetrazolium Blue Chloride
Tetrazolium Blue Chloride
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Tetrazolium Blue Chloride
Tetrazolium Blue Chloride
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Tetrazolium Blue Chloride
Tetrazolium Blue Chloride
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Tetrazolium Blue Chloride (>90%)
Molecular Formula : C40H32N8O2 . 2Cl
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Tetrazolium Blue Chloride (>90%)
Molecular Formula : C40H32N8O2 . 2Cl
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Tetrazolium Blue Chloride (>90%)
Molecular Formula : C40H32N8O2 . 2Cl
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Tetrodotoxin
Molecular Formula : C11 H17 N3 O8
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Tetrolic Acid
Tetrolic Acid
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Tetrolic Acid
Tetrolic Acid
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Tetrolic Acid
Tetrolic Acid
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Tetronic Acid
Tetronic Acid
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Tetronic Acid
Molecular Formula : C4H4O3
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Tetronic Acid
Molecular Formula : C4H4O3
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Tetronic Acid
Molecular Formula : C4H4O3
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TEV Protease, His
Tobacco Etch Virus Protease is a highly site-specific cysteine protease that is found in the tags from fusion proteins. The optimal temperature for cleavage is 30°C; also it can be used at temperature as low as 4°C. It is recommended that the cleavage for each fusion protein be optimized by varying the amount of recombinant viral TEV protease, reaction time, or incubation temperature. It can be removed by Ni2+ affinity resin.
Recombinant Tobacco Etch Virus (TEV). The optimum recognition site for this enzyme is the sequence Glu-Asn-Leu-Tyr-Phe-Gln-(Gly/Ser) [ENLYFQ(G/S)] and cleavage occurs between the Gln and Gly/Ser residues, The most commonly used sequence is ENLYFQG. The protease is used to cleave affinity tags from fusion proteins. The optimal temperature for cleavage is 30°C. It is recommended that the cleavage for each fusion protein be optimized by varying the amount of recombinant viral TEV protease, reaction time, or incubation temperature. It can be removed by Ni2+ affinity resin.
Recombinant Tobacco Etch Virus Protease (rTEV) contains 231 amino acids with N-terminal His tagged. A fully biologically active molecule, rTEV has a molecular mass of 28.4 kDa and is obtained by proprietary chromatographic techniques at GenScript. -
TEV Protease, His
Tobacco Etch Virus Protease is a highly site-specific cysteine protease that is found in the tags from fusion proteins. The optimal temperature for cleavage is 30°C; also it can be used at temperature as low as 4°C. It is recommended that the cleavage for each fusion protein be optimized by varying the amount of recombinant viral TEV protease, reaction time, or incubation temperature. It can be removed by Ni2+ affinity resin.
Recombinant Tobacco Etch Virus (TEV). The optimum recognition site for this enzyme is the sequence Glu-Asn-Leu-Tyr-Phe-Gln-(Gly/Ser) [ENLYFQ(G/S)] and cleavage occurs between the Gln and Gly/Ser residues, The most commonly used sequence is ENLYFQG. The protease is used to cleave affinity tags from fusion proteins. The optimal temperature for cleavage is 30°C. It is recommended that the cleavage for each fusion protein be optimized by varying the amount of recombinant viral TEV protease, reaction time, or incubation temperature. It can be removed by Ni2+ affinity resin.
Recombinant Tobacco Etch Virus Protease (rTEV) contains 231 amino acids with N-terminal His tagged. A fully biologically active molecule, rTEV has a molecular mass of 28.4 kDa and is obtained by proprietary chromatographic techniques at GenScript. -
TEX101 Rabbit pAb
Polyclonal Antibodies
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TEX101 Rabbit pAb
Polyclonal Antibodies
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TEX11 Rabbit pAb
Polyclonal Antibodies
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TEX11 Rabbit pAb
Polyclonal Antibodies
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TEX2 Rabbit pAb
Polyclonal Antibodies
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TEX2 Rabbit pAb
Polyclonal Antibodies
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Texas Red 2’-Propargyl Sulfonamide 4’-Sulfate
Molecular Formula : C34H33N3O6S2
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Texas Red 2’-Propargyl Sulfonamide 4’-Sulfate
Molecular Formula : C34H33N3O6S2
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Texas Red®-2-sulfonamidoethyl methanethiosulfonate
Molecular Formula : C34 H37 N3 O8 S4
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Texas Red®-2-sulfonamidoethyl methanethiosulfonate
Molecular Formula : C34 H37 N3 O8 S4
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Tezacaftor
Molecular Formula : C26 H27 F3 N2 O6
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Tezacaftor
Molecular Formula : C26 H27 F3 N2 O6
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Tezacaftor
Molecular Formula : C26 H27 F3 N2 O6
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Tezacaftor Metabolite M1
Molecular Formula : C26H25F3N2O6
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Tezacaftor Metabolite M1
Molecular Formula : C26H25F3N2O6
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Tezacaftor Metabolite M1
Molecular Formula : C26H25F3N2O6
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Tezacaftor-D4
Molecular Formula : C26 D4 H23 F3 N2 O6
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Tezacaftor-D4
Molecular Formula : C26 D4 H23 F3 N2 O6