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Biophysical and enzymatic properties of the simian and prototype foamy virus reverse transcriptases

机译:猿猴和原型泡沫病毒逆转录酶的生物物理和酶学性质

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Background The foamy virus Pol protein is translated independently from Gag using a separate mRNA. Thus, in contrast to orthoretroviruses no Gag-Pol precursor protein is synthesized. Only the integrase domain is cleaved off from Pol resulting in a mature reverse transcriptase harboring the protease domain at the N-terminus (PR-RT). Although the homology between the PR-RTs from simian foamy virus from macaques (SFVmac) and the prototype foamy virus (PFV), probably originating from chimpanzee, exceeds 90%, several differences in the biophysical and biochemical properties of the two enzymes have been reported (i.e. SFVmac develops resistance to the nucleoside inhibitor azidothymidine (AZT) whereas PFV remains AZT sensitive even if the resistance mutations from SFVmac PR-RT are introduced into the PFV PR-RT gene). Moreover, contradictory data on the monomer/dimer status of the foamy virus protease have been published. Results We set out to purify and directly compare the monomer/dimer status and the enzymatic behavior of the two wild type PR-RT enzymes from SFVmac and PFV in order to get a better understanding of the protein and enzyme functions. We determined kinetic parameters for the two enzymes, and we show that PFV PR-RT is also a monomeric protein. Conclusions Our data show that the PR-RTs from SFV and PFV are monomeric proteins with similar biochemical and biophysical properties that are in some aspects comparable with MLV RT, but differ from those of HIV-1 RT. These differences might be due to the different conditions the viruses are confronted with in dividing and non-dividing cells.
机译:背景技术泡沫病毒Pol蛋白使用单独的mRNA从Gag独立翻译。因此,与正逆转录病毒相反,没有合成Gag-Pol前体蛋白。仅将整合酶结构域从Pol上切割下来,导致在N端(PR-RT)带有蛋白酶结构域的成熟逆转录酶。尽管猕猴猿泡沫病毒(SFVmac)与原型泡沫病毒(PFV)的PR-RTs(可能源自黑猩猩)的同源性超过90%,但据报道这两种酶的生物物理和生化特性存在一些差异(即SFVmac对核苷抑制剂叠氮胸苷(AZT)产生抗性,而PFV仍然对AZT敏感,即使将SFVmac PR-RT的抗性突变引入PFV PR-RT基因也是如此。而且,已经公开了关于泡沫病毒蛋白酶的单体/二聚体状态的矛盾数据。结果我们着手纯化和直接比较来自SFVmac和PFV的两种野生型PR-RT酶的单体/二聚体状态和酶促行为,以便更好地了解蛋白质和酶的功能。我们确定了这两种酶的动力学参数,并且我们表明PFV PR-RT也是一种单体蛋白。结论我们的数据表明,SFV和PFV的PR-RTs是具有相似生物化学和生物物理特性的单体蛋白,在某些方面与MLV RT相当,但不同于HIV-1 RT。这些差异可能是由于病毒在分裂和非分裂细胞中所面临的条件不同。

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