The Enigma of Sponge-Derived Terpenoid Isothiocyanate-Thiocyanate Pairs: A Biosynthetic Proposal
- PMID: 40422810
- PMCID: PMC12112954
- DOI: 10.3390/md23050220
The Enigma of Sponge-Derived Terpenoid Isothiocyanate-Thiocyanate Pairs: A Biosynthetic Proposal
Abstract
The co-occurrence of rare terpenoid thiocyanates (R-SCN), structurally similar to their more common isothiocyanate isomers (R-NCS), poses an enigma: how does the accepted path, terpenyl cation R+ → R-NC → R-NCS, accommodate R-SCN? The mystery can now be rationalized by the consideration of three biosynthetic motifs: terpenoid carbocation (R+) capture by cyanoformate, NC-COOH (itself in equilibrium with NC- and CO2); co-localized rhodanese (a dual-function enzyme) that can both convert fugitive inorganic NC- to thiocyanate ion, NCS-, and alkyl isonitriles to alkyl isothiocyanate (R-NC → R-NCS) and adventitious capture of the NCS- by R+. The former two scenarios explain the preponderance of isothiocyanates, R-NCS, as products of a linear reaction path-the α-addition of S0 to R-NC-and the third scenario explains minor, less stable thiocyanates, R-SCN, as products of the adventitious capture of liberated NCS- by the penultimate R+ precursor. DFT calculations support this proposal and eliminate other possibilities, e.g., the isomerization of R-NCS to R-SCN.
Keywords: Porifera; alkyl isothiocyanate; alkyl thiocyanate; farnesyl pyrophosphate; geranylgeranyl pyrophosphate; isonitrile; malaria; marine natural product; nudibranch; rhodanese; thiocyanate.
Conflict of interest statement
The author declares no conflicts of interest.
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References
-
- Baker J.T., Wells R.J., Oberhänsli W.E., Hawes G.B. A New Diisocyanide of Novel Ring Structure from a Sponge. J. Am. Chem. Soc. 1976;98:4010–4012. doi: 10.1021/ja00429a053. - DOI
-
- Chang W.J., Patra A., Roll D.M., Scheuer P.J., Matsumoto G.K., Clardy J. Kalihinol-A, a highly functionalized diisocyano diterpenoid antibiotic from a sponge. J. Am. Chem. Soc. 1984;106:4644–4646. doi: 10.1021/ja00328a073. - DOI
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