Yildiz Ahmet, Selvin Paul R
Center for Biophysics and Computational Biology and Department of Physics, University of Illinois, Urbana-Champaign, Illinois 61801, USA.
Acc Chem Res. 2005 Jul;38(7):574-82. doi: 10.1021/ar040136s.
We introduce the technique of FIONA, fluorescence imaging with one nanometer accuracy. This is a fluorescence technique that is able to localize the position of a single dye within approximately 1 nm in the x-y plane. It is done simply by taking the point spread function of a single fluorophore excited with wide field illumination and locating the center of the fluorescent spot by a two-dimensional Gaussian fit. We motivate the development of FIONA by unraveling the walking mechanism of the molecular motors myosin V, myosin VI, and kinesin. We find that they all walk in a hand-over-hand fashion.
我们介绍了FIONA技术,即具有一纳米精度的荧光成像技术。这是一种荧光技术,能够在x-y平面内将单个染料的位置定位在约1纳米范围内。这只需获取由宽场照明激发的单个荧光团的点扩散函数,并通过二维高斯拟合确定荧光点的中心即可实现。我们通过揭示肌球蛋白V、肌球蛋白VI和驱动蛋白等分子马达的行走机制,推动了FIONA技术的发展。我们发现它们都是交替移动的方式行走。