Thomas Melissa, Legembre Patrick
Centre Eugène Marquis, rue Bataille Flandres Dunkerque, 35042, Rennes, France.
INSERM ERL440-OSS, Equipe Labellisée Ligue Contre Le Cancer, Rennes, France.
Methods Mol Biol. 2017;1557:41-48. doi: 10.1007/978-1-4939-6780-3_5.
Distribution of the death receptor CD95 into lipid rafts (aggregation) and/or its internalization may contribute to the implementation of the apoptotic signal at the detriment of the non-apoptotic signaling pathway [1-6]. Also CD95 can form different protein complexes via dynamic protein-protein interactions (PPIs) according to its interaction with soluble or transmembrane CD95L. Therefore, spatiotemporal identification of these PPIs is pivotal to anticipate the signaling pathway implemented in cells stimulated with different forms of CD95L. Also, many disorders result from dysfunctions in terms of PPI subcellular distribution and/or their intensity, rendering evaluation of these features crucial to better understand pathogenesis.In situ proximity ligation assay (PLA) is a methodology that offers the possibility to identify PPIs and to determine where these PPIs occur in subcellular location (Fig. 1). Moreover, based on imaging, this method allows a quantification of PPIs at the cellular level and with a higher specificity than classical immunofluorescence assays. We here describe PLA used to confirm CD95/FADD interaction, a protocol that may serve to highlight other CD95 partners.
死亡受体CD95向脂筏的分布(聚集)及其内化可能有助于凋亡信号的传递,同时损害非凋亡信号通路[1-6]。此外,根据其与可溶性或跨膜CD95L的相互作用,CD95可通过动态蛋白质-蛋白质相互作用(PPI)形成不同的蛋白质复合物。因此,这些PPI的时空识别对于预测在不同形式的CD95L刺激下细胞中实施的信号通路至关重要。此外,许多疾病是由PPI亚细胞分布和/或其强度的功能障碍引起的,因此评估这些特征对于更好地理解发病机制至关重要。原位邻近连接分析(PLA)是一种方法,它提供了识别PPI并确定这些PPI在亚细胞位置发生的可能性(图1)。此外,基于成像,该方法允许在细胞水平上对PPI进行定量,并且比经典免疫荧光分析具有更高的特异性。我们在此描述用于确认CD95/FADD相互作用的PLA方法,该方案可能有助于揭示其他CD95结合蛋白。