Diterpenes from the genus are known for their ability to regulate the protein kinase C (PKC) family, which mediates their ability to promote the proliferation of neural precursor cells (NPCs) or neuroblast differentiation into neurons. In this work, we describe the isolation from Berg latex of fifteen 12-deoxyphorbol esters (-). A triester of 12-deoxy-16-hydroxyphorbol () and a 12-deoxyphorbol 13,20-diester () are described here for the first time. Additionally, detailed structural elucidation is provided for compounds , , , and . The absolute configuration for compounds , , , , and was established by the comparison of their theoretical and experimental electronic circular dichroism (ECD) spectra. Access to the above-described collection of 12-deoxyphorbol derivatives, with several substitution patterns and attached acyl moieties, allowed for the study of their fragmentation patterns in the collision-induced dissociation of multiple ions, without precursor ion isolation mass spectra experiments (HRMS), which, in turn, revealed a correlation between specific substitution patterns and the fragmentation pathways in their HRMS spectra. In turn, this allowed for a targeted UHPLC-HRMS analysis and a biased non-targeted UHPLC-HRMS analysis of 12-deoxyphorbols in latex which yielded the detection and identification of four additional 12-deoxyphorbols not previously isolated in the initial column fractionation work. One of them, identified as 12-deoxy-16-hydroxyphorbol 20-acetate 13-phenylacetate 16-propionate (), has not been described before.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10674858PMC
http://dx.doi.org/10.3390/plants12223846DOI Listing

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