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首页> 外文期刊>ACS nano >Channel size conversion of Phi29 DNA-packaging nanomotor for discrimination of single-and double-stranded nucleic acids
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Channel size conversion of Phi29 DNA-packaging nanomotor for discrimination of single-and double-stranded nucleic acids

机译:Phi29 DNA包装纳米马达的通道大小转换,用于区分单链和双链核酸

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摘要

Nanopores have been utilized to detect the conformation and dynamics of polymers, including DNA and RNA. Biological pores are extremely reproducible at the atomic level with uniform channel sizes. The channel of the bacterial virus phi29 DNA-packaging motor is a natural conduit for the transportation of double-stranded DNA (dsDNA) and has the largest diameter among the well-studied biological channels. The larger channel facilitates translocation of dsDNA and offers more space for further channel modification and conjugation. Interestingly, the relatively large wild-type channel, which translocates dsDNA, cannot detect single-stranded nucleic acids (ssDNA or ssRNA) under the current experimental conditions. Herein, we reengineered this motor channel by removing the internal loop segment of the channel. The modification resulted in two classes of channels. One class was the same size as the wild-type channel, while the other class had a cross-sectional area about 60% of the wild-type. This smaller channel was able to detect the real-time translocation of single-stranded nucleic acids at single-molecule level. While the wild-type connector exhibited a one-way traffic property with respect to dsDNA translocation, the loop-deleted connector was able to translocate ssDNA and ssRNA with equal competencies from both termini. This finding of size alterations in reengineered motor channels expands the potential application of the phi29 DNA-packaging motor in nanomedicine, nanobiotechnology, and high-throughput single-pore DNA sequencing.
机译:纳米孔已被用于检测包括DNA和RNA在内的聚合物的构象和动力学。具有均匀通道尺寸的生物孔在原子水平上具有极高的可复制性。细菌病毒phi29 DNA包装电机的通道是运输双链DNA(dsDNA)的天然管道,并且在经过充分研究的生物通道中具有最大的直径。较大的通道有助于dsDNA的易位,并为进一步的通道修饰和偶联提供了更多空间。有趣的是,在目前的实验条件下,相对较大的野生型通道(可将dsDNA易位)无法检测到单链核酸(ssDNA或ssRNA)。在此,我们通过移除通道的内部回路段来重新设​​计该马达通道。修改产生了两类通道。一类具有与野生型通道相同的大小,而另一类具有约60%的野生型横截面积。这个较小的通道能够检测单分子水平的单链核酸的实时转运。尽管野生型连接器相对于dsDNA易位表现出单向流量特性,但删除环的连接器却能够从两个末端以相同的能力对ssDNA和ssRNA进行易位。重新设计的电机通道中大小改变的发现扩大了phi29 DNA包装电机在纳米医学,纳米生物技术和高通量单孔DNA测序中的潜在应用。

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