Veldhuis Gertjan, Hink Mark, Krasnikov Victor, van den Bogaart Geert, Hoeboer Jeroen, Visser Antonie J W G, Broos Jaap, Poolman Bert
Department of Biochemistry and Biophysical Chemistry, Groningen Biomolecular Science and Biotechnology Institute & Materials Science Centreplus, University of Groningen, The Netherlands.
Protein Sci. 2006 Aug;15(8):1977-86. doi: 10.1110/ps.062113906. Epub 2006 Jul 5.
Numerous membrane proteins function as oligomers both at the structural and functional levels. The mannitol transporter from Escherichia coli, EnzymeII(mtl), is a member of the phosphoenolpyruvate-dependent phosphotransferase system. During the transport cycle, mannitol is phosphorylated and released into the cytoplasm as mannitol-1-phosphate. Several studies have shown that EII(mtl) functions as an oligomeric species. However, the oligomerization number and stability of the oligomeric complex during different steps of the catalytic cycle, e.g., substrate binding and/or phosphorylation of the carrier, is still under discussion. In this paper, we have addressed the oligomeric state and stability of EII(mtl) using fluorescence correlation spectroscopy. A functional double-cysteine mutant was site-specifically labeled with either Alexa Fluor 488 or Alexa Fluor 633. The subunit exchange of these two batches of proteins was followed in time during different steps of the catalytic cycle. The most important conclusions are that (1) in a detergent-solubilized state, EII(mtl) is functional as a very stable dimer; (2) the stability of the complex can be manipulated by changing the intermicellar attractive forces between PEG-based detergent micelles; (3) substrate binding destabilizes the complex whereas phosphorylation increases the stability; and (4) substrate binding to the phosphorylated species partly antagonizes the stabilizing effect.
许多膜蛋白在结构和功能层面都以寡聚体形式发挥作用。来自大肠杆菌的甘露醇转运蛋白,即磷酸烯醇丙酮酸依赖性磷酸转移酶系统的酶II(mtl),就是其中一员。在转运循环过程中,甘露醇被磷酸化并以磷酸甘露醇的形式释放到细胞质中。多项研究表明,EII(mtl)以寡聚体形式发挥作用。然而,在催化循环的不同步骤(例如底物结合和/或载体磷酸化)中,寡聚复合物的寡聚化数量和稳定性仍存在争议。在本文中,我们利用荧光相关光谱法研究了EII(mtl)的寡聚状态和稳定性。一个功能性双半胱氨酸突变体被用Alexa Fluor 488或Alexa Fluor 633进行位点特异性标记。在催化循环的不同步骤中,实时跟踪这两批蛋白质的亚基交换情况。最重要的结论是:(1)在去污剂溶解状态下,EII(mtl)作为非常稳定的二聚体发挥作用;(2)可以通过改变基于聚乙二醇的去污剂胶束之间的胶束间吸引力来控制复合物的稳定性;(3)底物结合会使复合物不稳定,而磷酸化会增加稳定性;(4)底物与磷酸化物种的结合部分抵消了稳定作用。