Mohandas Nimisha, Kent Lisa M, Raudsepp Allan, Jameson Geoffrey B, Williams Martin A K
School of Fundamental Sciences, Massey University, Palmerston North 4442, New Zealand.
MacDiarmid Institute for Advanced Materials and Nanotechnology, Wellington 6012, New Zealand.
ACS Omega. 2022 Feb 10;7(7):6427-6435. doi: 10.1021/acsomega.2c00198. eCollection 2022 Feb 22.
Streptavidin is a tetrameric protein that is renowned for its strong binding to biotin. The robustness and strength of this noncovalent coupling has led to multitudinous applications of the pairing. Within the streptavidin tetramer, each protein monomer has the potential to specifically bind one biotin-bearing moiety. Herein, by separating various streptavidin species that have had differing numbers of their four potential binding sites blocked, several different types of "linking hub" were obtained, each with a different valency. The identification of these species and the study of the plugging process used to block sites during their preparation were carried out using capillary electrophoresis. Subsequently, a specific species, namely, a -divalent linker, in which the two open biotin-binding pockets are approximately opposite one another, was used to concatenate two ∼5 kb pieces of biotin-terminated double-stranded DNA. Following the incubation of this DNA with the prepared linker, a fraction of ∼10 kb strings was identified using gel electrophoresis. Finally, these concatenated DNA strings were stretched in an optical tweezer experiment, demonstrating the potential of the methodology for coupling and extending molecules for use in single-molecule biophysical experiments.
链霉亲和素是一种四聚体蛋白,因其与生物素的强结合力而闻名。这种非共价偶联的稳定性和强度导致了该配对的众多应用。在链霉亲和素四聚体内,每个蛋白质单体都有可能特异性结合一个带有生物素的部分。在此,通过分离具有不同数量的四个潜在结合位点被阻断的各种链霉亲和素物种,获得了几种不同类型的“连接枢纽”,每种都具有不同的价态。使用毛细管电泳对这些物种进行鉴定,并对其制备过程中用于阻断位点的封堵过程进行研究。随后,使用一种特定的物种,即一种二价连接体,其中两个开放的生物素结合口袋彼此大致相对,来连接两条约5 kb的生物素末端双链DNA片段。将该DNA与制备好的连接体孵育后,使用凝胶电泳鉴定出一部分约10 kb的链。最后,在光镊实验中拉伸这些连接的DNA链,证明了该方法在单分子生物物理实验中用于偶联和延伸分子的潜力。