Synthesis, biological activity and conformational analysis of cyclic GRF analogs.
Felix. A M AM; Heimer. E P EP; Wang. C T CT; Lambros. T J TJ; Fournier. A A; Mowles. T F TF; Maines. S S; Campbell. R M RM; Wegrzynski. B B BB; Toome. V V
Key Findings
- A cyclic GRF‑1‑29 analog (cyclo8,12[Asp8,Ala15]-GRF(1‑29)-NH2) retains strong biological activity.
- Replacing Ala2 with D‑Ala2 and/or modifying the N‑terminus (desNH2‑Tyr1 or N‑MeTyr1) produces highly potent analogs that work in vivo.
- The cyclic peptide maintains a long alpha‑helical segment in aqueous solution, a conformation linked to its activity.
Practical Outcomes
- For biohackers, this work suggests that cyclic or specially modified GRF‑1‑29 peptides could be more effective and possibly more stable than the standard linear form. However, the study is limited to synthesis and lab tests, so no dosing guidelines or safety data are provided. Enthusiasts should watch for commercially available cyclic GRF analogs and treat any use with caution until human data emerge.
Summary
Scientists created a ring‑shaped version of the growth‑hormone‑releasing peptide GRF‑1‑29 that still works and can be even more powerful when certain building blocks are swapped. The cyclic shape keeps the peptide in a helical form in water, which likely helps it stay active.
Abstract
A novel cyclic GRF analog, cyclo(Asp8-Lys12)-[Asp8,Ala15]-GRF(1-29)-NH2, i.e. cyclo8,12[Asp8,Ala15]-GRF(1-29)-NH2, was synthesized by the solid phase procedure and found to retain significant biological activity. Solid phase cyclization of Asp8 to Lys12 proceeded rapidly (approximately 2 h) using the BOP reagent. Substitution of Ala2 with D-Ala2 and/or NH2-terminal replacement (desNH2-Tyr1 or N-MeTyr1) in the cyclo8,12[Asp8,Ala15]-GRF(1-29)-NH2 system resulted in highly potent analogs that were also active in vivo. Conformational analysis (circular dichroism and molecular dynamics calculations based on NOE-derived distance constraints) demonstrated that cyclo8,12[Asp8,Ala15]-GRF(1-29)-NH2 contains a long alpha-helical segment even in aqueous solution. A series of cyclo8,12 stereoisomers containing D-Asp8 and/or D-Lys12 were prepared and also found to be highly potent and to retain significant alpha-helical conformation. The high biological activity of cyclo8,12[N-MeTyr1,D-Ala2,Asp8,Ala15]-GRF(1-29)- NH2 may be explained on the basis of retention of a preferred bioactive conformation.
Study Information
pubmed
1988
10.1111/j.1399-3011.1988.tb01375.x