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A Protocol for Computer-Based Protein Structure and Function Prediction
Published on: November 3, 2011
Triostin a derived cyclopeptide as architectural template for the alignment of four recognition units
Ursula M Kotyrba1, Kevin Pröpper2, Eike-F Sachs1
1Institute of Organic and Biomolecular Chemistry, Georg-August-University Göttingen Tammannstrasse 2, 37077 Göttingen (Germany)
Abstract:
The DNA bisintercalator triostin A is structurally based on a disulfide-bridged depsipeptide scaffold that provides preorganization of two quinoxaline units in 10.5 Å distance. Triostin A analogues are synthesized with nucleobase recognition units replacing the quinoxalines and containing two additional recognition units in between. Thus, four nucleobase recognition units are organized on a rigid template, well suited for DNA double strand interactions. The new tetra-nucleobase binders are synthesized as aza-TANDEM derivatives lacking the N-methylation of triostin A and based on a cyclopeptide backbone. Synthesis of two tetra-nucleobase aza-TANDEM derivatives is established, DNA interaction analyzed by microscale thermophoresis, cytotoxic activity studied and a nucleobase sequence dependent self-aggregation investigated by mass spectrometry.
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