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Hydrophobicity of reactive site loop of SCCA1 affects its binding to hepatitis B virus

机译:SCCA1反应位点环的疏水性影响其与乙型肝炎病毒的结合

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AIM: To investigate the role of SCCA2 and other SCCA1 molecules in the process of hepatitis B virus (HBV) binding to mammalian cells. METHODS: SCCA1 and SCCA2 were isolated from HepG2. Binding protein (BP) genes were obtained through PCR. Recombinant baculoviruses expressing SCCA1, SCCA2, BP, and different mutants were constructed and utilized to infect mammalian cells to investigate the binding ability of infected cells to HBV. RESULTS: A SCCA1 gene (A1) was isolated from HepG2, but it appeared to lack the binding ability of infected cells to HBV. Two mutants, A1-BP and BP-A1, were constructed by interchanging the carboxyl terminal of A1 and BP. Cells expressing A1-BP showed an increased virus binding capacity, but not BP-A1. Comparison of A1 sequence with the sequence of BP indicated the presence of only three amino acid changes in the carboxyl terminal, two of them were found in the reactive site loop (RSL) of SCCA1. Primary structure assay revealed that the hydrophobicity of BP and AJ515706 in this domain was strong, but A1 was relatively weak. Changing the aa349 of A1 from low hydrophobic glutamic acid to high hydrophobe valine enhanced HBV binding. In contrast, HBV binding was reduced by changing the aa349 of BP from valine to glutamic acid. CONCLUSION: The results suggest that the hydrophobicity of RSL of SCCA1 may play an important role in HBV binding to cells.
机译:目的:研究SCCA2和其他SCCA1分子在乙型肝炎病毒(HBV)与哺乳动物细胞结合过程中的作用。方法:从HepG2中分离出SCCA1和SCCA2。通过PCR获得结合蛋白(BP)基因。构建表达SCCA1,SCCA2,BP和不同突变体的重组杆状病毒,并将其用于感染哺乳动物细胞,以研究感染细胞与HBV的结合能力。结果:从HepG2中分离到一个SCCA1基因(A1),但似乎缺乏感染细胞与HBV的结合能力。通过互换A1和BP的羧基末端,构建了两个突变体A1-BP和BP-A1。表达A1-BP的细胞显示出增加的病毒结合能力,但不显示BP-A1。 A1序列与BP序列的比较表明,羧基末端仅存在3个氨基酸变化,其中2个在SCCA1的反应位点环(RSL)中发现。一级结构分析表明,BP和AJ515706在该区域的疏水性强,而A1则较弱。将A1的aa349从低疏水性谷氨酸变为高疏水性缬氨酸可增强HBV结合。相反,通过将BP的aa349从缬氨酸变为谷氨酸可降低HBV结合。结论:SCCA1的RSL的疏水性可能在HBV与细胞结合中起重要作用。

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