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Z-His-His-OMe, also known as N-benzyloxycarbonyl-L-histidine-L-histidine-N-methyl ester, is a tripeptide derivative consisting of two histidine residues and a terminal N-methyl ester group. The benzyloxycarbonyl (Z) group is a protecting group used in peptide synthesis to prevent unwanted side reactions. Z-His-His-OMe is of interest in the field of biochemistry and medicinal chemistry, particularly in the study of metal-binding properties and the design of metalloprotein inhibitors. Z-His-His-OMe is also used as a building block for the synthesis of larger peptides and as a model compound to investigate the coordination chemistry of histidine-rich peptides.

69323-20-2

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69323-20-2 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 69323-20-2 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 6,9,3,2 and 3 respectively; the second part has 2 digits, 2 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 69323-20:
(7*6)+(6*9)+(5*3)+(4*2)+(3*3)+(2*2)+(1*0)=132
132 % 10 = 2
So 69323-20-2 is a valid CAS Registry Number.

69323-20-2Relevant academic research and scientific papers

Predicting the physicochemical profile of diastereoisomeric histidine-containing dipeptides by property space analysis

Vistoli, Giulio,Straniero, Valentina,Pedretti, Alessandro,Fumagalli, Laura,Bolchi, Cristiano,Pallavicini, Marco,Valoti, Ermanno,Testa, Bernard

, p. 566 - 576 (2012/08/29)

Objectives: This study aimed at measuring the lipophilicity and ionization constants of diastereoisomeric dipeptides, interpreting them in terms of conformational behavior, and developing statistical models to predict them. Methods: A series of 20 dipeptides of general structure NH2-L-X-(L or D)-His-OMe was designed and synthetized. Their experimental ionization constants (pK1, pK2 and pK3) and lipophilicity parameters (log PN and log D7.4) were measured by potentiometry. Molecular modeling in three media (vacuum, water, and chloroform) was used to explore and sample their conformational space, and for each stored conformer to calculate their radius of gyration, virtual log P (preferably written as log PMLP, meaning obtained by the molecular lipophilicity potential (MLP) method) and polar surface area (PSA). Means and ranges were calculated for these properties, as was their sensitivity (i.e., the ratio between property range and number of rotatable bonds). Results: Marked differences between diastereoisomers were seen in their experimental ionization constants and lipophilicity parameters. These differences are explained by molecular flexibility, configuration-dependent differences in intramolecular interactions, and accessibility of functional groups. Multiple linear equations correlated experimental lipophilicity parameters and ionization constants with PSA range and other calculated parameters. Conclusion: This study documents the differences in lipophilicity and ionization constants between diastereoisomeric dipeptides. Such configuration-dependent differences are shown to depend markedly on differences in conformational behavior and to be amenable to multiple linear regression.

Synthesis of the C-Therminal Dodecapeptide of the Human Fibrinogen γ-Chain

Masiukiewicz, E.,Rzeszotarska, B.,Szczerbaniewicz, J.,Cierniewski, Cz.

, p. 1035 - 1041 (2007/10/02)

The C-terminal dodecapeptide His-His-Leu-Gly-Gly-Ala-Lys-Gln-Ala-Gly-Asp-Val (12) of the human fibrinogen γ-chain was synthesized by condensation of segments, and >> according to Scheme 1.The α-benzyloxycarbonyl-ω-t-butyl system w

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