Fricke Franziska, Beaudouin Joel, Eils Roland, Heilemann Mike
Institute of Physical and Theoretical Chemistry, Goethe-University Frankfurt, Max-von-Laue-Str. 7, 60438 Frankfurt am Main, Germany.
Department for Bioinformatics and Functional Genomics, Bioquant and Institute of Pharmacy and Molecular Biotechnology, University of Heidelberg, and Division of Theoretical Bioinformatics, German Cancer Research Center (DKFZ), Im Neuenheimer Feld 267, 69120 Heidelberg, Germany.
Sci Rep. 2015 Sep 11;5:14072. doi: 10.1038/srep14072.
Probing the oligomeric state of abundant molecules, such as membrane proteins in intact cells, is essential, but has not been straightforward. We address this challenge with a simple counting strategy that is capable of reporting the oligomeric state of dense, membrane-bound protein complexes. It is based on single-molecule localization microscopy to super-resolve protein structures in intact cells and basic quantitative evaluation. We validate our method with membrane-bound monomeric CD86 and dimeric cytotoxic T-lymphocyte-associated protein as model proteins and confirm their oligomeric states. We further detect oligomerization of CD80 and vesicular stomatitis virus glycoprotein and propose coexistence of monomers and dimers for CD80 and trimeric assembly of the viral protein at the cell membrane. This approach should prove valuable for researchers striving for reliable molecular counting in cells.
探究丰富分子的寡聚状态,如完整细胞中的膜蛋白,至关重要,但并非易事。我们采用一种简单的计数策略应对这一挑战,该策略能够报告密集的、膜结合蛋白复合物的寡聚状态。它基于单分子定位显微镜对完整细胞中的蛋白质结构进行超分辨以及基本的定量评估。我们以膜结合单体CD86和二聚体细胞毒性T淋巴细胞相关蛋白作为模型蛋白验证了我们的方法,并确认了它们的寡聚状态。我们进一步检测了CD80和水疱性口炎病毒糖蛋白的寡聚化,并提出CD80存在单体和二聚体共存,且病毒蛋白在细胞膜上以三聚体形式组装。这种方法对于致力于在细胞中进行可靠分子计数的研究人员应该是有价值的。