Department of Biochemistry, Tufts University School of Medicine, 136 Harrison Avenue, Boston, Massachusetts 02111, USA.
Biochemistry. 2010 Apr 27;49(16):3381-92. doi: 10.1021/bi100065r.
The Eps15 homology (EH) domain is found in proteins associated with endocytosis and vesicle trafficking. EH domains bind to their target proteins through an asparagine-proline-phenylalanine (NPF) motif. We have measured the interaction energetics of the EH domain from EHD1 with peptides derived from two of its binding partners: Rabenosyn-5 (Ac-GPSLNPFDEED-NH(2)) and Rab11-Fip2 (Ac-YESTNPFTAK-NH(2)). Heteronuclear single quantum coherence (HSQC) spectroscopy shows that both peptides bind in the canonical binding pocket of EHD1 EH and induce identical structural changes, yet the affinity of the negatively charged Ac-GPSLNPFDEED-NH(2) (K(a) = 8 x 10(5) M(-1)) is tighter by 2 orders of magnitude. The thermodynamic profiles (DeltaG, DeltaH, DeltaS) were measured for both peptides as a function of temperature. The enthalpies of binding are essentially identical, and the difference in affinity is a consequence of the difference in entropic cost. Ac-GPSLNPFDEED-NH(2) binding is salt-dependent, demonstrating an electrostatic component to the interaction, whereas Ac-YESTNPFTAK-NH(2) binding is independent of salt. Successive replacement of acidic residues in Ac-GPSLNPFDEED-NH(2) with neutral residues showed that all are important. Lysine side chains in EHD1 EH create a region of strong positive surface potential near the NPF binding pocket. Contributions by lysine epsilon-amino groups to complex formation with Ac-GPSLNPFDEED-NH(2) was shown using direct-observe (15)N NMR spectroscopy. These experiments have enabled us to define a new extended interaction motif for EHD proteins, N-P-F-[DE]-[DE]-[DE], which we have used to predict new interaction partners and hence broaden the range of cellular activities involving the EHD proteins.
Eps15 同源 (EH) 结构域存在于与内吞作用和囊泡运输相关的蛋白质中。EH 结构域通过天冬酰胺-脯氨酸-苯丙氨酸 (NPF) 基序与靶蛋白结合。我们已经测量了 EHD1 的 EH 结构域与两个结合伴侣衍生的肽之间的相互作用能:Rabenosyn-5 (Ac-GPSLNPFDEED-NH(2)) 和 Rab11-Fip2 (Ac-YESTNPFTAK-NH(2))。异核单量子相干 (HSQC) 光谱表明,两种肽都结合在 EHD1 EH 的典型结合口袋中,并诱导相同的结构变化,但带负电荷的 Ac-GPSLNPFDEED-NH(2) (K(a) = 8 x 10(5) M(-1)) 的亲和力强 2 个数量级。作为温度函数,测量了两种肽的热力学曲线 (DeltaG、DeltaH、DeltaS)。结合焓基本相同,亲和力的差异是熵成本差异的结果。Ac-GPSLNPFDEED-NH(2) 的结合是盐依赖性的,表明相互作用具有静电成分,而 Ac-YESTNPFTAK-NH(2) 的结合与盐无关。带负电荷的 Ac-GPSLNPFDEED-NH(2) 中酸性残基的连续取代为中性残基,表明所有残基都很重要。EHD1 EH 中的赖氨酸侧链在 NPF 结合口袋附近形成了一个强正表面电势区域。使用直接观察 (15)N NMR 光谱证明,赖氨酸 ε-氨基基团对 Ac-GPSLNPFDEED-NH(2) 与复合物的形成有贡献。这些实验使我们能够定义一个新的 EHD 蛋白扩展相互作用基序,N-P-F-[DE]-[DE]-[DE],我们用它来预测新的相互作用伴侣,从而扩大涉及 EHD 蛋白的细胞活动范围。