Dehydroabietinal (DA) has been identified as an important signaling molecule in systemic acquired resistance in plants. Deuterium and tritium-labeled DA were synthesized to confirm its role in signaling and to further elucidate the mechanism by which DA induces systemic acquired resistance. Pd/H2 -catalyzed exchange of benzylic hydrogen atoms of DA with (2) H-H2 O or (3) H-H2 O was conducted with >97% label incorporation for (2) H-DA and a specific activity of 12.6 mCi/mmol for (3) H-DA synthesized from 90 mCi/mmol (3) H-H2 O. The extent of deuterium labeling at each benzylic position was determined via an inverse-gated (13) C NMR experiment. C7 and C15 were 87% and 81% labeled, respectively. Isotope-induced chemical shift changes at C6 were used to approximate the amount of singly (66%) and doubly (17%) labeled (2) H-DA at C7. Results also indicated that two of the three benzylic protons in DA underwent facile exchange. Exchange at the remaining position was likely hampered by steric interactions of nearby methyl groups at the surface of the Pd catalyst.
Keywords: benzylic exchange; dehydroabietinal; deuterium; tritium.
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