Department of Bio and Nanochemistry, Kookmin University, Seoul 136-702, Republic of Korea.
Nucleic Acids Res. 2010 Nov;38(21):7626-36. doi: 10.1093/nar/gkq647. Epub 2010 Jul 29.
SARS coronavirus encodes non-structural protein 13 (nsP13), a nucleic acid helicase/NTPase belonging to superfamily 1 helicase, which efficiently unwinds both partial-duplex RNA and DNA. In this study, unwinding of DNA substrates that had different duplex lengths and 5'-overhangs was examined under single-turnover reaction conditions in the presence of excess enzyme. The amount of DNA unwound decreased significantly as the length of the duplex increased, indicating a poor in vitro processivity. However, the quantity of duplex DNA unwound increased as the length of the single-stranded 5'-tail increased for the 50-bp duplex. This enhanced processivity was also observed for duplex DNA that had a longer single-stranded gap in between. These results demonstrate that nsP13 requires the presence of a long 5'-overhang to unwind longer DNA duplexes. In addition, enhanced DNA unwinding was observed for gapped DNA substrates that had a 5'-overhang, indicating that the translocated nsP13 molecules pile up and the preceding helicase facilitate DNA unwinding. Together with the propensity of oligomer formation of nsP13 molecules, we propose that the cooperative translocation by the functionally interacting oligomers of the helicase molecules loaded onto the 5'-overhang account for the observed enhanced processivity of DNA unwinding.
严重急性呼吸综合征冠状病毒编码非结构蛋白 13(nsP13),一种属于超家族 1 解旋酶的核酸解旋酶/NTP 酶,能够有效地解开部分双链 RNA 和 DNA。在本研究中,在过量酶存在的情况下,在单轮反应条件下检查了具有不同双链长度和 5'-突出的 DNA 底物的解旋。随着双链长度的增加,解开的 DNA 量显着减少,表明体外的延伸能力较差。然而,对于 50 碱基对的双链,随着单链 5'-尾的长度增加,解开的双链 DNA 量增加。在双链 DNA 之间存在更长的单链间隙的情况下也观察到这种增强的延伸能力。这些结果表明,nsP13 需要存在长的 5'-突出才能解开更长的 DNA 双链。此外,对于具有 5'-突出的缺口 DNA 底物,观察到增强的 DNA 解旋,表明移位的 nsP13 分子堆积,并且前面的解旋酶有助于 DNA 解旋。结合 nsP13 分子形成寡聚物的倾向,我们提出装载到 5'-突出的解旋酶分子的功能相互作用寡聚物的协同易位解释了观察到的 DNA 解旋增强的延伸能力。