Department of Chemistry, Tokyo Metropolitan University, 1-1 Minami-Osawa, Hachioji, Tokyo, 192-0373, Japan.
Department of Chemistry, Tokyo Metropolitan University, 1-1 Minami-Osawa, Hachioji, Tokyo, 192-0373, Japan.
Biochem Biophys Res Commun. 2022 Oct 15;625:87-93. doi: 10.1016/j.bbrc.2022.08.007. Epub 2022 Aug 5.
Drk, a Drosophila homologue of human GRB2, interacts with Sevenless (Sev) receptor via its SH2 domain, while the N- and C-terminal SH3 domains (Drk-NSH3 and Drk-CSH3, respectively) are responsible for the interaction with proline-rich motifs (PRMs) of Son of sevenless (Sos) or Daughter of Sevenless (Dos). Drk-NSH3 on its own has a conformational equilibrium between folded and unfolded states, and the folded state is stabilised by the association with a Sos-derived proline-rich peptide with PxxPxR motif. In contrast, Drk-CSH3 is supposed to bind PxxxRxxKP motifs in Dos. Aiming at clarifying the structural and functional differences between the two SH3 domains, we performed NMR studies of Drk-CSH3. The resulting solution structure and the N-relaxation data showed that Drk-CSH3 consists of a stable domain. Large chemical shift perturbation was commonly found around the RT loop and the hydrophobic patch, while there were also changes that occur characteristically for Sos- or Dos-derived peptides. Sos-derived two peptides with PxxPxR motif showed stronger affinity to Drk-CSH3, indicating that the Sos PRMs can bind both N- and C-SH3 domains. Dos-derived two peptides could also bind Drk-CSH3, but with much weaker affinity, suggesting a possibility that any cooperative binding of Dos-PRMs may strengthen the Drk-Dos interaction. The NMR studies as well as the docking simulations provide valuable insights into the biological and biophysical functions of two SH3 domains in Drk.
Drk 是果蝇同源物,类似于人类的 GRB2,通过其 SH2 结构域与 Sevenless(Sev)受体相互作用,而 N-和 C-末端 SH3 结构域(Drk-NSH3 和 Drk-CSH3)分别负责与 Son of sevenless(Sos)或 Daughter of Sevenless(Dos)的富含脯氨酸基序(PRM)相互作用。Drk-NSH3 本身在折叠和未折叠状态之间存在构象平衡,而折叠状态通过与具有 PxxPxR 基序的 Sos 衍生的富含脯氨酸肽的结合得到稳定。相比之下,Drk-CSH3 被认为与 Dos 中的 PxxxRxxKP 基序结合。为了阐明两个 SH3 结构域之间的结构和功能差异,我们对 Drk-CSH3 进行了 NMR 研究。结果的溶液结构和 N-弛豫数据表明,Drk-CSH3 由一个稳定的结构域组成。RT 环和疏水区周围通常会发现较大的化学位移扰动,而在 Sos 或 Dos 衍生肽中也会发生特征性的变化。具有 PxxPxR 基序的 Sos 衍生两条肽与 Drk-CSH3 表现出更强的亲和力,表明 Sos PRMs 可以结合 N-和 C-SH3 结构域。Dos 衍生的两条肽也可以与 Drk-CSH3 结合,但亲和力较弱,这表明 Dos-PRMs 的任何协同结合都可能增强 Drk-Dos 相互作用。NMR 研究以及对接模拟为 Drk 中的两个 SH3 结构域的生物学和生物物理功能提供了有价值的见解。