Z-Glu-OBzl

CAS# 3705-42-8

Z-Glu-OBzl

2D Structure

Catalog No. BCC2780----Order now to get a substantial discount!

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3D structure

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Z-Glu-OBzl

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Chemical Properties of Z-Glu-OBzl

Cas No. 3705-42-8 SDF Download SDF
PubChem ID 297827 Appearance Powder
Formula C20H21NO6 M.Wt 371.4
Type of Compound N/A Storage Desiccate at -20°C
Solubility Soluble in Chloroform,Dichloromethane,Ethyl Acetate,DMSO,Acetone,etc.
Chemical Name 5-oxo-5-phenylmethoxy-4-(phenylmethoxycarbonylamino)pentanoic acid
SMILES C1=CC=C(C=C1)COC(=O)C(CCC(=O)O)NC(=O)OCC2=CC=CC=C2
Standard InChIKey VWHKODOUMSMUAF-UHFFFAOYSA-N
Standard InChI InChI=1S/C20H21NO6/c22-18(23)12-11-17(19(24)26-13-15-7-3-1-4-8-15)21-20(25)27-14-16-9-5-2-6-10-16/h1-10,17H,11-14H2,(H,21,25)(H,22,23)
General tips For obtaining a higher solubility , please warm the tube at 37 ℃ and shake it in the ultrasonic bath for a while.Stock solution can be stored below -20℃ for several months.
We recommend that you prepare and use the solution on the same day. However, if the test schedule requires, the stock solutions can be prepared in advance, and the stock solution must be sealed and stored below -20℃. In general, the stock solution can be kept for several months.
Before use, we recommend that you leave the vial at room temperature for at least an hour before opening it.
About Packaging 1. The packaging of the product may be reversed during transportation, cause the high purity compounds to adhere to the neck or cap of the vial.Take the vail out of its packaging and shake gently until the compounds fall to the bottom of the vial.
2. For liquid products, please centrifuge at 500xg to gather the liquid to the bottom of the vial.
3. Try to avoid loss or contamination during the experiment.
Shipping Condition Packaging according to customer requirements(5mg, 10mg, 20mg and more). Ship via FedEx, DHL, UPS, EMS or other couriers with RT, or blue ice upon request.

Z-Glu-OBzl Dilution Calculator

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Z-Glu-OBzl Molarity Calculator

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Preparing Stock Solutions of Z-Glu-OBzl

1 mg 5 mg 10 mg 20 mg 25 mg
1 mM 2.6925 mL 13.4626 mL 26.9251 mL 53.8503 mL 67.3129 mL
5 mM 0.5385 mL 2.6925 mL 5.385 mL 10.7701 mL 13.4626 mL
10 mM 0.2693 mL 1.3463 mL 2.6925 mL 5.385 mL 6.7313 mL
50 mM 0.0539 mL 0.2693 mL 0.5385 mL 1.077 mL 1.3463 mL
100 mM 0.0269 mL 0.1346 mL 0.2693 mL 0.5385 mL 0.6731 mL
* Note: If you are in the process of experiment, it's necessary to make the dilution ratios of the samples. The dilution data above is only for reference. Normally, it's can get a better solubility within lower of Concentrations.

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Z-Glu-OBzl

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References on Z-Glu-OBzl

Synthesis of gamma-L-glutamyl-taurine.[Pubmed:7193190]

Int J Pept Protein Res. 1980 Oct;16(4):245-7.

Glu(Tau), a bioactive substance previously isolated from the protein free aqueous extract of bovine parathyroid powder, has been synthesized. The intermediate derivative Z-Glu(Tau)-OBzl was prepared in three different ways from Z-Glu-OBzl and (1) cystamine by using the mixed anhydride method followed by oxidation, (2) Tau by the active ester procedure via Z-Glu-(ONp)-OBzl, (3) Tau applying mixed anhydride coupling. The protecting groups were removed by hydrogenolysis.

Sequential polypeptides. 2. Helix--coil transition in poly(gamma-benzyl epsilon-carbobenzoxy-L-lysyl-L-glutamate).[Pubmed:916732]

Macromolecules. 1977 Sep-Oct;10(5):1061-5.

Helix--coil transitions of an alternating copolypeptide poly(gamma-benzyl epsilon-carbobenzoxy-L-lysyl-L-glutamate) (poly[Lys(Z)-Glu(OBzl)]) in binary mixtures of dichloroacetic acid (DCA) and ethylene dichloride (EDC) were investigated by optical rotatory dispersion (ORD). The ORD data obtained were analyzed to evaluate the equilibrium constant s for helix formation and the cooperativity parameter sigma. The values of sigma1/2 are substantially independent of temperature and solvent composition, yielding 0.4 X 10(-2) on the average. The transition enthalpy deltaHc at the transition point decreases from 291 to 154 cal mol-1 as the DCA content is increased from 56 to 64 vol%. At about 20 degrees C and at 58 vol% DCA, poly[Lys(Z)-Glu(OBzl)] in binary mixtures of DCA and EDC undergoes a solvent-induced transition. This DCA content is intermediate between those for poly(gamma-benzyl L-glutamate) and poly(epsilon-carbobenzoxy-L-lysine) in the same binary solvent and close to that of an equimolar random copolymer of the two peptides. However, the s of poly[Lys(Z)-Glu(OBzl)] is not a geometrical mean of those of the parent homopolypeptides. This fact suggests that the helical conformation of the copolypeptide is stabilized by a conformational induction operative between adjacent residues.

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