Hamadani Kambiz M, Weiss Shimon
Department of Chemistry and Biochemistry, University of California at Los Angeles, Los Angeles, California, USA.
Biophys J. 2008 Jul;95(1):352-65. doi: 10.1529/biophysj.107.127431. Epub 2008 Mar 13.
We have developed a continuous-flow mixing device suitable for monitoring bioconformational reactions at the single-molecule level with a response time of approximately 10 ms under single-molecule flow conditions. Its coaxial geometry allows three-dimensional hydrodynamic focusing of sample fluids to diffraction-limited dimensions where diffusional mixing is rapid and efficient. The capillary-based design enables rapid in-lab construction of mixers without the need for expensive lithography-based microfabrication facilities. In-line filtering of sample fluids using granulated silica particles virtually eliminates clogging and extends the lifetime of each device to many months. In this article, to determine both the distance-to-time transfer function and the instrument response function of the device we characterize its fluid flow and mixing properties using both fluorescence cross-correlation spectroscopy velocimetry and finite element fluid dynamics simulations. We then apply the mixer to single molecule FRET protein folding studies of Chymotrypsin Inhibitor protein 2. By transiently populating the unfolded state of Chymotrypsin Inhibitor Protein 2 (CI2) under nonequilibrium in vitro refolding conditions, we spatially and temporally resolve the denaturant-dependent nonspecific collapse of the unfolded state from the barrier-limited folding transition of CI2. Our results are consistent with previous CI2 mixing results that found evidence for a heterogeneous unfolded state consisting of cis- and trans-proline conformers.
我们开发了一种连续流动混合装置,适用于在单分子水平监测生物构象反应,在单分子流动条件下响应时间约为10毫秒。其同轴几何结构允许对样品流体进行三维流体动力学聚焦,使其达到衍射极限尺寸,在该尺寸下扩散混合快速且高效。基于毛细管的设计使混合器能够在实验室中快速构建,无需昂贵的基于光刻的微加工设备。使用粒状二氧化硅颗粒对样品流体进行在线过滤几乎消除了堵塞现象,并将每个装置的使用寿命延长至数月。在本文中,为了确定该装置的距离-时间传递函数和仪器响应函数,我们使用荧光互相关光谱测速法和有限元流体动力学模拟来表征其流体流动和混合特性。然后,我们将该混合器应用于胰凝乳蛋白酶抑制剂蛋白2的单分子荧光共振能量转移蛋白折叠研究。通过在非平衡体外重折叠条件下瞬时填充胰凝乳蛋白酶抑制剂蛋白2(CI2)的未折叠状态,我们在空间和时间上解析了未折叠状态中与变性剂相关的非特异性塌缩与CI2的势垒限制折叠转变。我们的结果与之前的CI2混合结果一致,之前的结果发现了由顺式和反式脯氨酸构象体组成的异质未折叠状态的证据。