Cellular Mechanisms of Morphogenesis during Mitosis and Cell Motility lab, Institute for Research in Immunology and Cancer (IRIC), Université de Montréal, P.O. Box 6128, Station Centre-Ville, Montréal, QC H3C 3J7, Canada.
Molecular pharmacology lab, Institute for Research in Immunology and Cancer (IRIC), Université de Montréal, P.O. Box 6128, Station Centre-Ville, Montréal, QC H3C 3J7, Canada.
J Cell Sci. 2021 Apr 1;134(7). doi: 10.1242/jcs.255307. Epub 2021 Apr 13.
Ezrin, radixin and moesin compose the family of ERM proteins. They link actin filaments and microtubules to the plasma membrane to control signaling and cell morphogenesis. Importantly, their activity promotes invasive properties of metastatic cells from different cancer origins. Therefore, a precise understanding of how these proteins are regulated is important for the understanding of the mechanism controlling cell shape, as well as providing new opportunities for the development of innovative cancer therapies. Here, we developed and characterized novel bioluminescence resonance energy transfer (BRET)-based conformational biosensors, compatible with high-throughput screening, that monitor individual ezrin, radixin or moesin activation in living cells. We showed that these biosensors faithfully monitor ERM activation and can be used to quantify the impact of small molecules, mutation of regulatory amino acids or depletion of upstream regulators on their activity. The use of these biosensors allowed us to characterize the activation process of ERMs that involves a pool of closed-inactive ERMs stably associated with the plasma membrane. Upon stimulation, we discovered that this pool serves as a cortical reserve that is rapidly activated before the recruitment of cytoplasmic ERMs.
埃兹蛋白、根蛋白和膜突蛋白构成 ERM 蛋白家族。它们将肌动蛋白丝和微管与质膜连接起来,以控制信号转导和细胞形态发生。重要的是,它们的活性促进了不同癌症起源的转移性细胞的侵袭特性。因此,精确了解这些蛋白质是如何被调节的,对于理解控制细胞形状的机制以及为开发创新的癌症治疗方法提供新的机会都非常重要。在这里,我们开发并表征了新型的生物发光共振能量转移(BRET)构象生物传感器,与高通量筛选兼容,可监测活细胞中单个埃兹蛋白、根蛋白或膜突蛋白的激活。我们表明,这些生物传感器可以准确地监测 ERM 的激活,并可用于量化小分子、调节氨基酸突变或上游调节剂耗竭对其活性的影响。这些生物传感器的使用使我们能够描述 ERM 的激活过程,该过程涉及与质膜稳定相关的封闭失活 ERM 池。我们发现,该池作为皮质储备,在细胞质 ERM 募集之前快速激活。