Institute of Biotechnology, RWTH Aachen University , Worringer Weg 3, 52074, Aachen, Germany.
Department of Life Sciences and Chemistry, Jacobs University Bremen , 28719, Bremen, Germany.
ACS Sens. 2017 Nov 22;2(11):1619-1626. doi: 10.1021/acssensors.7b00481. Epub 2017 Nov 7.
Biological membranes are the perfect example of a molecular filter using membrane channels to control the permeability of small water-soluble molecules. To allow filtering of larger hydrophilic molecules we started from the known mutant channel FhuA Δ1-160 in which the cork domain closing the channel had been removed. Here we further expand the pore diameter by copying the amino acid sequence of two β-strands in a stepwise manner increasing the total number of β-strands from 22 to 34. The pore size of the respective expanded channel protein was characterized by single-channel conductance. Insertion of additional β-strands increased the pore conductance but also induced more ion current flickering on the millisecond scale. Further, polymer exclusion measurements were performed by analyzing single-channel conductance in the presence of differently sized polyethylene glycol of known polymer random coil radii. The conclusion from channel conductance of small channel penetrating polymers versus larger excluded ones suggested an increase in pore radii from 1.6 nm for FhuA Δ1-160 up to a maximum of about 2.7 nm for +8 β insertion. Integration of more β-strand caused instability of the channel and exclusion of smaller sized polymer. FhuA Δ1-160 + 10 β and FhuA Δ1-160 + 12 β effective radius decreased to 1.4 and 1.3 nm, respectively, showing the limitations of this approach.
生物膜是使用膜通道来控制小的水溶性分子的通透性的分子过滤器的完美示例。为了允许更大的亲水分子的过滤,我们从已知的突变体通道 FhuA Δ1-160 开始,其中封闭通道的软木塞结构域已被去除。在这里,我们通过逐步复制两个β-链的氨基酸序列来进一步扩大孔径,从而将β-链的总数从 22 增加到 34。通过单通道电导对相应的扩展通道蛋白的孔径进行了表征。插入额外的β-链增加了孔的电导,但也在毫秒尺度上诱导了更多的离子电流闪烁。此外,还通过分析具有已知聚合物无规卷曲半径的不同大小的聚乙二醇的单通道电导来进行聚合物排除测量。从小型通道穿透聚合物与较大的排除聚合物的通道电导得出的结论表明,孔径从 FhuA Δ1-160 的 1.6nm 增加到 +8β 插入的最大约 2.7nm。更多β-链的整合导致通道的不稳定性和较小尺寸聚合物的排除。FhuA Δ1-160 + 10β 和 FhuA Δ1-160 + 12β 的有效半径分别降低至 1.4nm 和 1.3nm,表明了这种方法的局限性。