Janakaloti Narayanareddy Babu Reddy, Allipeta Nathan Reddy, Allard Jun, Gross Steven P
Developmental and Cell Biology, University of California Irvine, Irvine, CA, USA.
Arcadia High School, Arcadia, CA, USA.
Commun Biol. 2024 Mar 12;7(1):311. doi: 10.1038/s42003-024-05914-2.
Cells run on initiation of protein-protein interactions, which are dynamically tuned spatially and temporally to modulate cellular events. This tuning can be physical, such as attaching the protein to a cargo or protein complex, thereby altering its diffusive properties, or modulating the distance between protein pairs, or chemical, by altering the proteins' conformations (e.g., nucleotide binding state of an enzyme, post-translational modification of a protein, etc.). Because a dynamic and changing subset of proteins in the cell could be in any specific state, ensemble measurements are not ideal-to untangle which of the factors are important, and how, we need single-molecule measurements. Experimentally, until now we have not had good tools to precisely measure initiation of such protein-protein interactions at the single-molecule level. Here, we develop a new method to measure dynamics of initial protein-protein interactions, allowing measurement of how properties such as the distance between proteins, and their tethered length can modulate the rate of interactions. In addition to precise measurement distance dependent motor-MT rebinding dynamics, we demonstrate the use of a dithered optical trap to measure dynamic motor-MT interactions and further discuss the possibilities of this technique being applicable to other systems.
细胞通过蛋白质 - 蛋白质相互作用的启动来运行,这种相互作用在空间和时间上动态调节,以调控细胞活动。这种调节可以是物理性的,比如将蛋白质附着到货物或蛋白质复合物上,从而改变其扩散特性,或者调节蛋白质对之间的距离;也可以是化学性的,通过改变蛋白质的构象(例如,酶的核苷酸结合状态、蛋白质的翻译后修饰等)。由于细胞中动态变化的蛋白质子集可能处于任何特定状态,总体测量并不理想——为了弄清楚哪些因素是重要的以及如何重要,我们需要单分子测量。在实验上,到目前为止我们还没有很好的工具来精确测量单分子水平上这种蛋白质 - 蛋白质相互作用的启动。在这里,我们开发了一种新方法来测量初始蛋白质 - 蛋白质相互作用的动力学,能够测量诸如蛋白质之间的距离及其拴系长度等特性如何调节相互作用速率。除了精确测量依赖距离的马达 - 微管再结合动力学,我们还展示了使用抖动光阱来测量动态马达 - 微管相互作用,并进一步讨论了该技术应用于其他系统的可能性。