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首页> 外文期刊>Nucleic Acids Research >Chaperone activation of the hepadnaviral reverse transcriptase for template RNA binding is established by the Hsp70 and stimulated by the Hsp90 system
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Chaperone activation of the hepadnaviral reverse transcriptase for template RNA binding is established by the Hsp70 and stimulated by the Hsp90 system

机译:用于模板RNA结合的肝炎病毒逆转录酶的伴侣激活是由Hsp70建立的,并由Hsp90系统刺激

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摘要

Hepadnaviruses are DNA viruses that replicate by protein-primed reverse transcription, employing a specialized reverse transcriptase (RT), P protein. DNA synthesis from the pregenomic RNA is initiated by binding of P to the epsilon signal. Using epsilon as template and a Tyr-residue for initiation, the RT synthesizes a DNA oligo (priming) as primer for full-length DNA. Priming strictly requires prior RT activation by chaperones. Active P-epsilon complexes have been reconstituted in vitro, but whether in addition to the heat-shock protein 70 (Hsp70) system the Hsp90 system is essential has been controversial. Here we quantitatively compared Hsp70 versus Hsp70 plus Hsp90 RT activation, and corroborated that the Hsp70 system alone is sufficient; however, Hsp90 as well the Hsp70 nucleotide exchange factor Bag-1 markedly stimulated activation by increasing the steady-state concentration of the activated metastable RT form P*, though by different mechanisms. Hsp90 inhibition in intact cells by geldanamycin analogs blocked hepadnavirus replication, however not completely and only at severely cytotoxic inhibitor concentrations. While compatible with a basal level of Hsp90 independent in vivo replication, unambiguous statements are precluded by the simultaneous massive upregulation of Hsp70 and Hsp90.
机译:嗜肝DNA病毒是一种DNA病毒,它利用专门的逆转录酶(RT)P蛋白通过蛋白质引发的逆转录进行复制。前基因组RNA的DNA合成是通过P与ε信号的结合而开始的。使用ε作为模板,并使用Tyr残基进行引发,RT合成了DNA寡核苷酸(引发)作为全长DNA的引物。灌注严格要求事先由伴侣活化。活性P-ε复合物已在体外重建,但是除热休克蛋白70(Hsp70)系统外,Hsp90系统是否必需还存在争议。在这里,我们定量比较了Hsp70与Hsp70加上Hsp90 RT激活,并证实仅Hsp70系统就足够了。然而,尽管通过不同的机制,Hsp90以及Hsp70核苷酸交换因子Bag-1通过增加活化的亚稳态RT形式P *的稳态浓度来显着刺激活化。格尔德霉素类似物在完整细胞中对Hsp90的抑制作用阻断了嗜肝DNA病毒的复制,但不能完全抑制,而只能在严重的细胞毒性抑制剂浓度下进行。虽然与基本水平的Hsp90独立的体内复制相容,但同时大量上调Hsp70和Hsp90可以消除明确的陈述。

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