Bhunia Anirban, Mohanram Harini, Bhattacharjya Surajit
School of Biological Sciences, Division of Structural and Computational, Nanyang Technological University, Singapore 637551, Singapore.
Biochim Biophys Acta. 2012 May;1818(5):1250-60. doi: 10.1016/j.bbamem.2012.01.008. Epub 2012 Jan 20.
In the mitogen activated protein kinase (MAPK) cascades of budding yeast, the scaffold protein Ste5 is recruited to the plasma membrane to transmit pheromone induced signal. A region or domain of Ste5 i.e. residues P44-R67, referred here as Ste5PM24, has been known to be involved in direct interactions with the membrane. In order to gain structural insights into membrane interactions of Ste5, here, we have investigated structures and interactions of two synthetic peptide fragments of Ste5, Ste5PM24, and a hyperactive mutant, Ste5PM24LM, by NMR, ITC, and fluorescence spectroscopy, with lipid membranes. We observed that Ste5PM24 predominantly interacted only with the anionic lipid vesicles. By contrast, Ste5PM24LM exhibited binding with negatively charged as well as zwitterionic or mixed lipid vesicles. Binding of Ste5 peptides with the negatively charged lipid vesicles were primarily driven by hydrophobic interactions. NMR studies revealed that Ste5PM24 assumes dynamic or transient conformations in zwitterionic dodecylphosphocholine (DPC) micelles. By contrast, NMR structure, obtained in anionic sodium dodecyl sulphate (SDS), demonstrated amphipathic helical conformations for the central segment of Ste5PM24. The hydrophobic surface of the helix was found to be buried inside the micelles. Taken together, these results provide important insights toward the structure and specificity determinants of the scaffold protein interactions with the plasma membrane.
在出芽酵母的丝裂原活化蛋白激酶(MAPK)级联反应中,支架蛋白Ste5被招募到质膜以传递信息素诱导的信号。已知Ste5的一个区域或结构域,即P44 - R67残基,在此称为Ste5PM24,参与与膜的直接相互作用。为了深入了解Ste5与膜相互作用的结构,在此我们通过核磁共振(NMR)、等温滴定量热法(ITC)和荧光光谱法研究了Ste5的两个合成肽片段Ste5PM24和一个超活性突变体Ste5PM24LM与脂质膜的结构和相互作用。我们观察到Ste5PM24主要仅与阴离子脂质囊泡相互作用。相比之下,Ste5PM24LM与带负电荷的以及两性离子或混合脂质囊泡都表现出结合。Ste5肽与带负电荷脂质囊泡的结合主要由疏水相互作用驱动。NMR研究表明,Ste5PM24在两性离子十二烷基磷酸胆碱(DPC)胶束中呈现动态或瞬态构象。相比之下,在阴离子十二烷基硫酸钠(SDS)中获得的NMR结构显示,Ste5PM24的中央片段具有两亲性螺旋构象。发现螺旋的疏水表面埋在胶束内部。综上所述,这些结果为支架蛋白与质膜相互作用的结构和特异性决定因素提供了重要见解。