Gould Alister D, Telmer Patrick G, Shilton Brian H
Department of Biochemistry, The University of Western Ontario, 1151 Richmond Street, London, Ontario Canada N6A 5C1.
Biochemistry. 2009 Aug 25;48(33):8051-61. doi: 10.1021/bi9007066.
ATP hydrolysis by the maltose transporter (MalFGK(2)) is regulated by maltose binding protein (MBP). Binding of maltose to MBP brings about a conformational change from open to closed that leads to a strong stimulation of the MalFGK(2) ATPase. In this study, we address the long-standing but enigmatic observation that unliganded MBP is also able to stimulate MalFGK(2). Although the mechanism of this stimulation is not understood, it is sometimes attributed to a small amount of closed (but unliganded) MBP that may exist in solution. To gain insight into how MBP regulates the MalFGK(2) ATPase, we have investigated whether the open or the closed conformation of MBP is responsible for MalFGK(2) stimulation in the absence of maltose. The effect of MBP concentration on the stimulation of MalFGK(2) was assessed: for unliganded MBP, the apparent K(M) for stimulation of MalFGK(2) was below 1 microM, while for maltose-bound MBP, the K(M) was approximately 15 microM. We show that engineered MBP molecules in which the open-closed equilibrium has been shifted toward the closed conformation have a decreased ability to stimulate MalFGK(2). These results indicate that stimulation of the MalFGK(2) ATPase by unliganded MBP does not proceed through a closed conformation and instead must operate through a different mechanism than stimulation by liganded MBP. One possible explanation is that the open conformation is able to activate the MalFGK(2) ATPase directly.
麦芽糖转运蛋白(MalFGK(2))的ATP水解受麦芽糖结合蛋白(MBP)调控。麦芽糖与MBP结合会引起从开放构象到封闭构象的转变,从而强烈刺激MalFGK(2)的ATP酶活性。在本研究中,我们探讨了一个长期存在但令人困惑的现象,即未结合配体的MBP也能够刺激MalFGK(2)。尽管这种刺激的机制尚不清楚,但有时被归因于溶液中可能存在的少量封闭(但未结合配体)的MBP。为了深入了解MBP如何调控MalFGK(2)的ATP酶,我们研究了在没有麦芽糖的情况下,MBP的开放构象还是封闭构象负责刺激MalFGK(2)。评估了MBP浓度对MalFGK(2)刺激作用的影响:对于未结合配体的MBP,刺激MalFGK(2)的表观K(M)低于1微摩尔,而对于结合麦芽糖的MBP,K(M)约为15微摩尔。我们发现,将开放-封闭平衡向封闭构象偏移的工程化MBP分子刺激MalFGK(2)的能力下降。这些结果表明,未结合配体的MBP对MalFGK(2) ATP酶的刺激不是通过封闭构象进行的,而是必须通过与结合配体的MBP刺激不同的机制起作用。一种可能的解释是,开放构象能够直接激活MalFGK(2)的ATP酶。