Isothermal nucleic acid amplification
The present disclosure relates to methods and compositions for ATP regeneration system for use in conjunction with the strand invasion step of an isothermal nucleic acid amplification which uses recombinases that utilize ATP as an energy source.
1. A method of ATP regeneration in a recombinase enzyme reaction comprising providing to the recombinase enzyme reaction phosphocreatine, creatine kinase, sucrose, and sucrose phosphorylase wherein sucrose and sucrose phosphorylase reacts with accumulated orthophosphate.
2. The method of claim 1 , wherein the recombinase is UvsX.
3. The method of claim 1 , wherein a concentration of 40-100 mM phosphocreatine is used.
4. The method of claim 1 , further comprising providing to the recombinase enzyme reaction a myokinase, wherein AMP is converted to ADP with the myokinase.
5. The method of claim 1 , wherein the reaction further comprises pyrophosphatase to convert pyrophosphate to orthophosphate.
6. The method of claim 1 , wherein ATP regeneration is used in isothermal DNA amplification.
7. A composition for ATP regeneration comprising a recombinase, enzymes which enzymatically convert AMP to ADP or ATP, sucrose and sucrose phosphorylase, and phosphocreatine and creatine kinase.
8. A composition of claim 7 , comprising myokinase.
9. A composition of claim 7 , comprising pyrophosphatase.
10. A composition of claim 7 , wherein the recombinase is UvsX.
11. The method of claim 1 , further comprising providing to the recombinase enzyme reaction one or more energy sources selected from phospho-phenyl-pyruvate and pyruvate kinase; ATP; myokinase; pyrophosphatase; and any combination of two or more of the foregoing.
12. The composition of claim 7 , comprising phospho-phenyl-pyruvate and pyruvate kinase.
13. The composition of claim 7 , comprising ATP.