Polymer-supported biopolymer synthesis: 5. Ultra-high load solid (gel) phase peptide synthesis—the stepwise elaboration of quasi-homogeneous peptide gel networks?
Author:
Publisher
Elsevier BV
Subject
Molecular Biology,General Medicine,Biochemistry,Structural Biology
Reference30 articles.
1. Stepwise elaboration of quasi-homogeneous peptide gel networks—an ultimate strategy for solid (gel) phase peptide synthesis
2. Polymer-supported biopolymer synthesis: 1. High load solid (gel) phase strategy for peptide synthesis with a phenolic poly(acryloylmorpholine)-based support
3. Polymer-supported biopolymer synthesis: 2. Phenolic poly(acryloylmorpholine)-based preparation of protected arginyl acylpeptide segments and derived arginyl peptides
4. Polymer-supported biopolymer synthesis: 3. Preparation of fully and partially protected βh-endorphin segments with a new phenolic poly [N-(2-methoxyethyl)-acrylamide]-based support
5. Polymer-supported biopolymer synthesis: 4. Synthesis of dynorphin (1–13) by condensation of protected peptide segments prepared by high-load solid (gel) phase methods
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1. Continuous flow solid (gel) phase peptide synthesis using unsupported ultra-high load polymers *;International Journal of Peptide and Protein Research;2009-01-12
2. [4] Standard Fmoc protocols;Solid-Phase Peptide Synthesis;1997
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4. Design and application of a new rigid support for high efficiency continuous-flow peptide synthesis;Journal of the Chemical Society, Chemical Communications;1989
5. Advances in ultra-high load polymer-supported peptide synthesis with phenolic supports: 2. Use of ‘hydrazinolysis-hplc’ to check for racemization on c-terminal amino acid loading and to determine peptide homogeneity during synthesis with selectively labil;Makromolekulare Chemie. Macromolecular Symposia;1988-06
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