This experimental paper (10.1021/bi00908a019) provides direct radiochemical evidence that yeast and rat-liver enzyme preparations form aspartyl‑RNA and glutamyl‑RNA in vitro and that ammonolysis yields mainly isoasparagine and isoglutamine — consistent with α‑carboxyl (not γ) linkage of these dicarboxylic amino acids to soluble RNA; hydrolysis-rate data across pH show first‑order behaviour and strong pH dependence (rates rise with pH)
Source: Table I (extracted counts). The paper reports that 80–100% of recovered radioactivity from yeast‑derived aspartyl‑RNA converted to isoasparagine under most ammonolysis conditions; controls and some conditions gave mainly aspartic acid (see row f)
Interpretation: Table II shows that isoglutamine was the major radioactive product (≈73–94% in reported experiments), with the remainder as glutamic acid or small unidentified material; pyrrolidone carboxylic acid and glutamine were not detected above background
Takeaway: Both derivatives display steep, roughly exponential increases in hydrolysis rate with pH; glutamyl‑RNA is modestly less stable (higher k) than aspartyl‑RNA across the measured pH span. Data taken directly from Table III
Overall judgment: the experimental design and orthogonal chemical checks make the authors’ conclusion (α‑carboxyl linkage predominates under their assay conditions) plausible and historically important, but modern orthogonal structural methods would be required to elevate certainty to current standards
Citations used in this analysis are exclusively from the original paper: Coles et al., Biochemistry, DOI 10.1021/bi00908a019. All numeric tables and values visualized above were extracted from the provided full‑text data set (Table I, II, III and text descriptions).
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