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1. Kinetic preference for the 3'-5'-linked dimer in the reaction of guanosine 5'-phosphorylmorpholinamide with deoxyguanosine 5'-phosphoryl-2-methylimidazolide as a function of poly(C) concentration.

2. Affinity of guanosine derivatives for polycytidylate revisited.

3. Nucleotides as nucleophiles: reactions of nucleotides with phosphoimidazolide activated guanosine.

5. Unique Catalysis and Regioselectivity Observed in the Poly(C)-Directed RNA Dimer Formation from 2-MeImpG: Kinetic Analysis as a Function of Monomer and Polymer Concentration

6. Effects of Monomer and Template Concentration on the Kinetics of Nonenzymatic Template-Directed Oligoguanylate Synthesis

7. [Untitled]

8. Use of Phosphoimidazolide-Activated Guanosine to Investigate the Nucleophilicity of Spermine and Spermidine

9. ChemInform Abstract: Kinetic Preference for the 3′-5′-Linked Dimer in the Reaction of Guanosine 5′-Phosphorylmorpholinamide with Deoxyguanosine 5′-Phosphoryl-2-methylimidazolide as a Function of Poly(C) Concentration

10. Nucleotides as nucleophiles: Reactions of nucleotides with phosphoimidazolide activated guanosine

11. Limiting concentrations of activated mononucleotides necessary for poly(C)-directed elongation of oligoguanylates

12. Kinetic preference for the 3'-5'-linked dimer in the reaction of guanosine 5'-phosphorylmorpholinamide with deoxyguanosine 5'-phosphoryl-2-methylimidazolide as a function of poly(C) concentration

13. Faster rates with less catalyst in template-directed reactions

14. Affinity of guanosine derivatives for polycytidylate revisited

15. Kinetic dissection of individual steps in the poly(C)-directed oligoguanylate synthesis from guanosine 5'-monophosphate 2-methylimidazolide

16. Computer simulation in template-directed oligonucleotide synthesis

17. Magnesium ion catalyzed phosphorus-nitrogen bond hydrolysis in imidazolide-activated nucleotides. Relevance to template-directed synthesis of polynucleotides

18. Kinetics of the hydrolysis of guanosine 5'-phospho-2-methylimidazolide

19. Magnesium ion catalyzed P-N bond hydrolysis in imidazolide activated nucleotides. Relevance to template-directed synthesis of polynucleotides

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