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The relevance of Hepatitis C helicase/primase is that the helicase/protease combination in HCV is believed to play a pivotal role in the replication cycle of HCV. The helicase exists as a dimer, bearing mutations, and can be found in three different functional states (9). The three functional states include a substrate-unbound state, an ATP-bound state, and an NA-bound state. The presence of ATP transitions the protease from high NA binding affinity to low NA binding affinity. The cooperation of helicase/protease binding the DNA is affected by the length of the ss lattice, and the desired ss DNA length is around 22nt (3).
The relevance of Hepatitis C helicase/primase is that the helicase/protease combination in HCV is believed to play a pivotal role in the replication cycle of HCV. The helicase exists as a dimer, bearing mutations, and can be found in three different functional states (9). The three functional states include a substrate-unbound state, an ATP-bound state, and an NA-bound state. The presence of ATP transitions the protease from high NA binding affinity to low NA binding affinity. The cooperation of helicase/protease binding the DNA is affected by the length of the ss lattice, and the desired ss DNA length is around 22nt (3).
== Structural highlights ==
== Structural highlights ==
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2OBQ for Hepatitis primase:
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<scene name='91/919048/2OBQ/1'>2OBQ</scene> for Hepatitis primase:
Method: X-Ray Diffraction.
Method: X-Ray Diffraction.
Resolution: 2.50 Å.
Resolution: 2.50 Å.
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8OHM for Hepatitis helicase:
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<scene name='91/919048/8OHM/1'>8OHM</scene> for Hepatitis helicase:
Method: X-Ray Diffraction.
Method: X-Ray Diffraction.
Resolution: 2.30 Å.
Resolution: 2.30 Å.

Revision as of 22:50, 8 December 2022

Hepatitis C Helicase/Primase

Hepatitis C Primase

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