1. Academic Validation
  2. New t-butyl based aspartate protecting groups preventing aspartimide formation in Fmoc SPPS

New t-butyl based aspartate protecting groups preventing aspartimide formation in Fmoc SPPS

  • J Pept Sci. 2015 Aug;21(8):680-7. doi: 10.1002/psc.2790.
Raymond Behrendt 1 Simon Huber 1 Roger Martí 2 Peter White 3
Affiliations

Affiliations

  • 1 Merck & Cie, Im Laternenacker 5, 8200, Schaffhausen, Switzerland.
  • 2 School of Engineering and Architecture, Bd de Pérolles 80, 1705, Fribourg, Switzerland.
  • 3 Merck Chemicals Ltd., Padge Road, Beeston, NG9 2JR, UK.
Abstract

Obtaining homogenous aspartyl-containing Peptides via Fmoc/tBu chemistry is often an insurmountable obstacle. A generic solution for this issue utilising an optimised side-chain protection strategy that minimises aspartimide formation would therefore be most desirable. To this end, we developed the following new derivatives: Fmoc-Asp(OEpe)-OH (Epe = 3-ethyl-3-pentyl), Fmoc-Asp(OPhp)-OH (Php = 4-n-propyl-4-heptyl) and Fmoc-Asp(OBno)-OH (Bno = 5-n-butyl-5-nonyl). We have compared their effectiveness against that of Fmoc-Asp(OtBu)-OH and Fmoc-Asp(OMpe)-OH in the well-established scorpion toxin II model peptide variants H-Val-Lys-Asp-Asn/Arg-Tyr-Ile-OH by treatments of the peptidyl resins with the Fmoc removal reagents containing piperidine and DBU at both room and elevated temperatures. The new derivatives proved to be extremely effective in minimising aspartimide by-products in each application.

Keywords

Fmoc SPPS; aspartic acid β-trialkylmethyl ester; aspartimide formation; protecting groups; racemisation.

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