Yusuf Hamied Department of Chemistry, Centre for Misfolding Diseases, University of Cambridge, Lensfield Road, Cambridge, CB2 1EW, UK.
Department of Biochemistry, University of Cambridge, Cambridge, CB2 1QW, UK.
Nat Commun. 2022 Dec 21;13(1):7845. doi: 10.1038/s41467-022-35265-7.
The assembly of biomolecules into condensates is a fundamental process underlying the organisation of the intracellular space and the regulation of many cellular functions. Mapping and characterising phase behaviour of biomolecules is essential to understand the mechanisms of condensate assembly, and to develop therapeutic strategies targeting biomolecular condensate systems. A central concept for characterising phase-separating systems is the phase diagram. Phase diagrams are typically built from numerous individual measurements sampling different parts of the parameter space. However, even when performed in microwell plate format, this process is slow, low throughput and requires significant sample consumption. To address this challenge, we present here a combinatorial droplet microfluidic platform, termed PhaseScan, for rapid and high-resolution acquisition of multidimensional biomolecular phase diagrams. Using this platform, we characterise the phase behaviour of a wide range of systems under a variety of conditions and demonstrate that this approach allows the quantitative characterisation of the effect of small molecules on biomolecular phase transitions.
生物分子凝聚物的组装是构成细胞内空间组织和调控多种细胞功能的基本过程。绘制和描述生物分子的相行为对于理解凝聚物组装的机制以及开发针对生物分子凝聚物系统的治疗策略至关重要。描述相分离系统的一个核心概念是相图。相图通常是从参数空间的不同部分中采集的大量单独测量结果构建而成的。然而,即使在微井板格式中进行,该过程也是缓慢的,通量低,并且需要大量的样品消耗。为了解决这一挑战,我们在这里提出了一种组合式液滴微流控平台,称为 PhaseScan,用于快速和高分辨率地获取多维生物分子相图。使用该平台,我们在各种条件下对广泛的系统的相行为进行了表征,并证明了该方法可以定量地描述小分子对生物分子相转变的影响。