Buxboim Amnon, Daube Shirley S, Bar-Ziv Roy
Department of Materials and Interfaces, The Weizmann Institute of Science, Rehovot, Israel.
Mol Syst Biol. 2008;4:181. doi: 10.1038/msb.2008.20. Epub 2008 Apr 15.
We present the assembly of gene brushes by means of a photolithographic approach that allows us to control the density of end-immobilized linear double-stranded DNA polymers coding for entire genes. For 2 kbp DNAs, the mean distance varies from 300 nm, where DNAs are dilute and assume relaxed conformations, down to 30 nm, where steric repulsion at dense packing forces stretching out. We investigated the gene-to-protein relationship of firefly luciferase under the T7/E.Coli-extract expression system, as well as transcription-only reactions with T7 RNA polymerase, and found both systems to be highly sensitive to brush density, conformation, and orientation. A 'structure-function' picture emerges in which extension of genes induced by moderate packing exposes coding sequences and improves their interaction with the transcription/translation machinery. However, tighter packing impairs the penetration of the machinery into the brush. The response of expression to two-dimensional gene crowding at the nanoscale identifies gene brushes as basic controllable units en route to multicomponent synthetic systems. In turn, these brushes could deepen our understanding of biochemical reactions taking place under confinement and molecular crowding in living cells.
我们展示了通过光刻方法组装基因刷,该方法使我们能够控制编码完整基因的末端固定线性双链DNA聚合物的密度。对于2千碱基对的DNA,平均距离从300纳米(DNA稀释且呈松弛构象)变化到30纳米(紧密堆积时的空间排斥力使其伸展)。我们研究了萤火虫荧光素酶在T7/大肠杆菌提取物表达系统下的基因与蛋白质关系,以及与T7 RNA聚合酶的仅转录反应,发现这两个系统对刷密度、构象和方向都高度敏感。由此出现了一幅“结构-功能”图景,其中适度堆积诱导的基因延伸会暴露编码序列并改善其与转录/翻译机制的相互作用。然而,更紧密的堆积会损害该机制进入基因刷的能力。在纳米尺度上表达对二维基因拥挤的响应将基因刷确定为通向多组分合成系统的基本可控单元。反过来,这些基因刷可以加深我们对活细胞中受限和分子拥挤条件下发生的生化反应的理解。