Center for Integrative Brain Research, Seattle Children's Research Institute, Seattle, WA, USA.
Graduate Program in Neuroscience, University of Washington, Seattle, WA, USA.
Sci Rep. 2019 Jul 26;9(1):10890. doi: 10.1038/s41598-019-46690-y.
At the post-synaptic density (PSD), large protein complexes dynamically form and dissociate in response to synaptic activity, comprising the biophysical basis for learning and memory. The use of detergents to isolate the PSD and release its membrane-associated proteins complicates studies of these activity-dependent protein interaction networks, because detergents can simultaneously disrupt the very interactions under study. Despite widespread recognition that different detergents yield different experimental results, the effect of detergent on activity-dependent synaptic protein complexes has not been rigorously examined. Here, we characterize the effect of three detergents commonly used to study synaptic proteins on activity-dependent protein interactions. We first demonstrate that SynGAP-containing interactions are more abundant in 1% Deoxycholate (DOC), while Shank-, Homer- and mGluR5-containing interactions are more abundant in 1% NP-40 or Triton. All interactions were detected preferentially in high molecular weight complexes generated by size exclusion chromatography, although the detergent-specific abundance of proteins in high molecular weight fractions did not correlate with the abundance of detected interactions. Activity-dependent changes in protein complexes were consistent across detergent types, suggesting that detergents do not isolate distinct protein pools with unique behaviors. However, detection of activity-dependent changes is more or less feasible in different detergents due to baseline solubility. Collectively, our results demonstrate that detergents affect the solubility of individual proteins, but activity-dependent changes in protein interactions, when detectable, are consistent across detergent types.
在突触后密度(PSD)处,大型蛋白质复合物会根据突触活动动态形成和分解,这构成了学习和记忆的生理基础。使用去污剂来分离 PSD 并释放其膜相关蛋白会使这些活动依赖性蛋白质相互作用网络的研究变得复杂,因为去污剂可能同时破坏正在研究的相互作用。尽管人们普遍认识到不同的去污剂会产生不同的实验结果,但去污剂对活动依赖性突触蛋白复合物的影响尚未得到严格检查。在这里,我们描述了三种常用于研究突触蛋白的去污剂对活动依赖性蛋白质相互作用的影响。我们首先证明,含 SynGAP 的相互作用在 1%脱氧胆酸钠(DOC)中更为丰富,而 Shank-、 Homer- 和 mGluR5 含有的相互作用在 1% NP-40 或 Triton 中更为丰富。所有相互作用都优先在通过大小排阻层析术产生的高分子量复合物中被检测到,尽管高分子量级分中蛋白质的去污剂特异性丰度与检测到的相互作用的丰度没有相关性。不同类型去污剂之间的蛋白质复合物的活性依赖性变化是一致的,这表明去污剂并未分离出具有独特行为的不同蛋白质池。然而,由于基线溶解度,在不同的去污剂中检测到活性依赖性变化的可能性或多或少。总的来说,我们的结果表明,去污剂会影响单个蛋白质的溶解度,但在可检测到的情况下,蛋白质相互作用的活性依赖性变化在不同的去污剂类型中是一致的。