Abstract
The ability of Bordetella heat-labile toxin (HLT) to induce isehemic lesions after intracutaneous injection to guinea pig skin was lost following incubation at 37°C with long-chain saturated acyl-CoA and acyl-carnitine compounds. Short-chain unsaturated ocyl-CoA compounds, however, were less potent in inhibiting the induction of HLT activity. Long-chain saturated acyl-CoA and acyl-carnitine compounds, potently inhibited the induction of this activity. On incubation with HLT at 0°C, a long-chain saturated acyl- CoA compound, palmitoyl-CoA, did not inhibit HLT activity. When first mixed with bovine serum albumin or dimethyl-β-cyclodextrin, palmitoyl-CoA lost the ability to inhibit HLT activity. Binding of 14C-palmitoyl-CoA to HLT was measured by Scatchard analysis. The B(max) values of HLT (2.75 mol/mol of protein) were higher than that of acyl-CoA-binding protein from bovine liver (0.95 mol/mol of protein). Neither acyl-CoA hydrolase nor acyl-CoA ligase was detected in the HLT preparation. These results suggest that the acyl-CoA and acyl-carnitine compounds bind directly to HLT and produce a critical change in conformation required for HLT activity.
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Nagai, M., Watanabe, M., Endoh, M., & Danbara, H. (1997). Inhibitory effect of acyl-CoA and acyl-carnitine compounds on the ischemia-inducing activity of Bordetella heat-labile toxin in guinea pig skin. Biological and Pharmaceutical Bulletin, 20(2), 193–195. https://doi.org/10.1248/bpb.20.193
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