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NS2-3 protease

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NS2-3 protease (of hepatitis C virus, HCV) is an enzyme responsible for proteolytic cleavage between NS2 and NS3, which are non-structural proteins that form part of the HCV virus particle. NS3 protease of hepatitis C virus, on the other hand, is responsible for the cleavage of non-structural protein downstream. Both of these proteases are directly involved in HCV genome replication, that is, during the viral life-cycle that leads to virus multiplication in the host that has been infected by the virus.

Hepatitis C affects 170 million people around the world which includes 1.4 million people living in the U.S. Most of the people infected with this virus live in third-world countries which often tend to have poor sterilization of medical equipment, a common source of HCV infection. Education also plays a big part as a vast majority of people don't have access to the information about the virus, how it spreads and infects. Hepatitis C can enter human body through many ways which include sexual intercourse, blood transfusion and via HCV infected needles. HCV infection can lead to cirrhosis and liver cancer if interferon treatment fails.[1]

Viral genome

Hepatitis C virus is a single-stranded RNA virus in the family Flaviviridae.[2] The genome consists made up of about 10,000 nucleotides and encodes a single polyprotein.[3] Hepatitis C Virus (HCV) used host cell machinery to process its genome to synthesize three crucial viral proteases of which each has peptide cleaving role. These three proteases are also known as structural proteins. The HCV genome encodes 10 viral proteins: C, E1, E2, p7, NS2, NS3, NS4A, NS4B, NS5A and NS5B.[4]

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