SARS-CoV-2 - Helicase - Antigens (proteins and peptides)

SARS-CoV-2 - Helicase - Antigens (proteins and peptides)


The non-structural protein 13 (nsp13) of SARS-CoV-2 is a helicase that separates double-stranded RNA or DNA with a 5'-3' polarity, using the energy of nucleotide hydrolysis. A basic biochemical characterization of nsp13 demonstrated that it can unwind both doublestranded DNA and RNA in a 5’-3’ direction, and it can hydrolyze all deoxyribonucleotide and ribonucleotide triphosphates. Helicases are motor proteins that utilize the energy derived from nucleotide hydrolysisto unwind double-stranded nucleic acids into two single-stranded nucleic acids. Initially, helicases were only thought to be molecular engines that unwind nucleic acids during replication, recombination, and DNA repair. Recent studies have shown that they are also involved in other biological processes, including displacement of proteins from nucleic acid, movement of Holliday junctions, chromatin remodeling, catalysis of nucleic acid conformational changes, several aspects of RNA metabolism, including transcription, mRNA splicing, mRNA export, translation, RNA stability and mitochondrial gene expression. Some human diseases, including Bloom’s syndrome, Werner’s syndrome, and Xeroderma Pigmentosum have been associated with defects in helicase function.

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orb1231679-0.05mg
 0.05mg 
orb1231680-0.05mg
 0.05mg 
orb707412-50ug
 50ug 
orb707412-10ug
 10ug 
orb707412-500ug
 500ug 
orb707412-1mg
 1mg 
MBS2563852-5x0,05mg
 5x0.05mg