Boc-Lys(Boc)-OSuCAS# 30189-36-7 |
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Quality Control & MSDS
Number of papers citing our products
Chemical structure
3D structure
Cas No. | 30189-36-7 | SDF | Download SDF |
PubChem ID | 13875534 | Appearance | Powder |
Formula | C20H33N3O8 | M.Wt | 443.5 |
Type of Compound | N/A | Storage | Desiccate at -20°C |
Solubility | Soluble in Chloroform,Dichloromethane,Ethyl Acetate,DMSO,Acetone,etc. | ||
Chemical Name | (2,5-dioxopyrrolidin-1-yl) (2S)-2,6-bis[(2-methylpropan-2-yl)oxycarbonylamino]hexanoate | ||
SMILES | CC(C)(C)OC(=O)NCCCCC(C(=O)ON1C(=O)CCC1=O)NC(=O)OC(C)(C)C | ||
Standard InChIKey | IQVLXQGNLCPZCL-ZDUSSCGKSA-N | ||
Standard InChI | InChI=1S/C20H33N3O8/c1-19(2,3)29-17(27)21-12-8-7-9-13(22-18(28)30-20(4,5)6)16(26)31-23-14(24)10-11-15(23)25/h13H,7-12H2,1-6H3,(H,21,27)(H,22,28)/t13-/m0/s1 | ||
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. |
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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. |
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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. |
Boc-Lys(Boc)-OSu Dilution Calculator
Boc-Lys(Boc)-OSu Molarity Calculator
1 mg | 5 mg | 10 mg | 20 mg | 25 mg | |
1 mM | 2.2548 mL | 11.274 mL | 22.5479 mL | 45.0958 mL | 56.3698 mL |
5 mM | 0.451 mL | 2.2548 mL | 4.5096 mL | 9.0192 mL | 11.274 mL |
10 mM | 0.2255 mL | 1.1274 mL | 2.2548 mL | 4.5096 mL | 5.637 mL |
50 mM | 0.0451 mL | 0.2255 mL | 0.451 mL | 0.9019 mL | 1.1274 mL |
100 mM | 0.0225 mL | 0.1127 mL | 0.2255 mL | 0.451 mL | 0.5637 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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Synthesis of redox derivatives of lysine and related peptides containing phenothiazine or tris(2,2'-bipyridine)ruthenium(II).[Pubmed:1783487]
Int J Pept Protein Res. 1991 Aug;38(2):114-23.
Boc-L-Lysine derivatives and lysine-containing peptides bearing the electron donor 10H-phenothiazine (PTZ) or the redox chromophore tris(2,2'-bipyridine)ruthenium(II) dication ([Rub3]2+, where b is 2,2'-bipyridine) have been synthesized and characterized. SeO2 oxidation (53% yield) of 4,4'-dimethyl-2,2'-bipyridine, Ag2O oxidation (85% yield) of the monoaldehyde, complexation (96% yield) of 4'-methyl-2,2'-bipyridine-4-carboxylic acid (m-OH) with Rub2Cl2, activation (81% yield) of the acid [Rub2m-OH]2+ (PF6-)2, and condensation (83% yield) of the succinimido ester [Rub2m-OSu]2+ (PF6-)2 with Boc-Lys furnished the protected redox-chromophore module [Boc-Lys(Rub2m)-OH]2+ (PF6-)2 in 29% overall yield over five steps. The first two steps constitute the first practical synthesis of the monocarboxylic acid m-OH (45% overall yield). Also prepared were m-OSu, Boc-Lys(m)-OH, Boc-Lys(m)-OCH3, and [Rub2m-NHCH3]2+ (PF6-)2. Activation (91% yield) of 3-(10H-phenothiazine-10)propanoic acid (PTZpn-OH) and condensation (92% yield) of the succinimido ester PTZpn-OSu with Boc-Lys furnished the protected electron-donor module Boc-Lys(PTZpn)-OH (84% overall yield). The latter was used in solid-phase syntheses of two redox tripeptides, CH3CO-Ala-Lys(PTZpn)-Ala-OH and [Rub2m-Ala-Lys(PTZpn)-Ala-OH]2+ (PF6-)2. The electrochemical properties of these redox amino acids and peptides were similar to those of PTZpn-OH, [Rub2m-OH]2+ (PF6-)2, or [Rub2m-NHCH3]2+ (PF6-)2. Lys(PTZpn), [Lys(Rub2m)]2+ (PF6-)2, and other redox modules may be useful for engineering light-harvesting proteins, photovoltaic cells, and other molecular electronic devices.