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1610353-03-1

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1610353-03-1 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1610353-03-1 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,6,1,0,3,5 and 3 respectively; the second part has 2 digits, 0 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 1610353-03:
(9*1)+(8*6)+(7*1)+(6*0)+(5*3)+(4*5)+(3*3)+(2*0)+(1*3)=111
111 % 10 = 1
So 1610353-03-1 is a valid CAS Registry Number.

1610353-03-1Downstream Products

1610353-03-1Relevant articles and documents

High-throughput synthesis of peptide α-thioesters: A safety catch linker approach enabling parallel hydrogen fluoride cleavage

Brust, Andreas,Schroeder, Christina I.,Alewood, Paul F.

, p. 1038 - 1046 (2014/05/20)

Peptide α-thioesters are fundamental building blocks in peptide and protein science, providing powerful tools for peptide medicinal chemistry. The application of peptide α-thioesters in native chemical ligation reactions has enabled synthetic access to cysteine-rich peptides and proteins, cyclic peptides as well as labeled and chemically modified biomolecules. An efficient high-throughput synthesis of peptide α-thioester building blocks would be beneficial for many medicinal chemical applications that require peptides and proteins. Herein we present a novel synthetic route to cysteine-rich peptide α-thioesters using a safety catch linker that enables a parallel synthetic strategy for chemical protein synthesis. ACP(68-75), bradykinin and dynorphin(1-13) were synthesized via Boc chemistry in their thioester form on a safety catch amide linker (SCAL), employing polystyrene- or poly(ethylene glycol)-based resins, compartmentalized in tea bags. This compartmentalized resin/linker strategy facilitated a parallel hydrogen fluoride cleavage in which each peptide thioester was subsequently cyclized by native chemical ligation, demonstrating the utility of this approach. A naturally occurring bioactive cyclic peptide, the sunflower trypsin inhibitor SFTI-1, was synthesized to demonstrate the viability of this method to access important peptide biomolecules. A boost for NCL: A synthetic route to cysteine-rich peptide α-thioesters employing a safety catch linker is described. The linker strategy allows parallel Boc chemistry including parallel HF cleavage, and removes the bottleneck of peptide thioester accessibility.

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