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Structure–Activity Relationships for the N‑Me- Versus N‑H-Amide Modification to Macrocyclic ent-Verticilide Antiarrhythmics

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Figshare2026-04-28 收录
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https://figshare.com/articles/dataset/Structure_Activity_Relationships_for_the_i_N_i_Me-_Versus_i_N_i_H-Amide_Modification_to_Macrocyclic_i_ent_i_-Verticilide_Antiarrhythmics/21277702
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The synthesis of all N-Me and N-H analogues of ent-verticilide is described, enabling a structure–activity relationship study based on cardiac ryanodine receptor (RyR2) calcium ion channel inhibition. The use of permeabilized cardiomyocytes allowed us to correlate the degree of N-methylation with activity without concern for changes in passive membrane permeability that these modifications can cause. A key hypothesis was that the minimal pharmacophore may be repeated in this cyclic oligomeric octadepsipeptide (a 24-membered macrocycle), opening the possibility that target engagement will not necessarily be lost with a single N-Me → N-H modification. The effect in the corresponding 18-membered ring oligomer (ent-verticilide B1) was also investigated. We report here that a high degree of N-methyl amide content is critical for activity in the ent-verticilide series but not entirely so for the ent-verticilide B1 series.
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