Division of Life Science, State Key Laboratory of Molecular Neuroscience, Hong Kong University of Science and Technology, Hong Kong, China.
Institute for Advanced Study, Hong Kong University of Science and Technology, Hong Kong, China.
Elife. 2018 Dec 10;7:e41848. doi: 10.7554/eLife.41848.
INAD assembles key enzymes of the compound eye photo-transduction pathway into a supramolecular complex, supporting efficient and fast light signaling. However, the molecular mechanism that governs the interaction between INAD and NORPA (phospholipase Cβ, PLCβ), a key step for the fast kinetics of the light signaling, is not known. Here, we show that the NORPA C-terminal coiled-coil domain and PDZ-binding motif (CC-PBM) synergistically bind to INAD PDZ45 tandem with an unexpected mode and unprecedented high affinity. Guided by the structure of the INAD-NORPA complex, we discover that INADL is probably a mammalian counterpart of INAD. The INADL PDZ89 tandem specifically binds to PLCβ4 with a mode that is strikingly similar to that of the INAD-NORPA complex, as revealed by the structure of the INADL PDZ89-PLCβ4 CC-PBM complex. Therefore, our study suggests that the highly specific PDZ tandem - PLCβ interactions are an evolutionarily conserved mechanism in PLCβ signaling in the animal kingdom.
INAD 将复合眼光转导途径的关键酶组装成一个超分子复合物,支持高效快速的光信号传递。然而,调控 INAD 与 NORPA(磷脂酶 Cβ,PLCβ)相互作用的分子机制尚不清楚,NORPA 的 C 端卷曲螺旋结构域和 PDZ 结合基序(CC-PBM)与 INAD PDZ45 串联以一种意想不到的模式和前所未有的高亲和力协同结合。受 INAD-NORPA 复合物结构的指导,我们发现 INADL 可能是 INAD 的哺乳动物对应物。INADL PDZ89 串联结构域以与 INAD-NORPA 复合物非常相似的模式特异性结合 PLCβ4,这一点由 INADL PDZ89-PLCβ4 CC-PBM 复合物的结构揭示。因此,我们的研究表明,高度特异性的 PDZ 串联-PLCβ 相互作用是动物王国 PLCβ 信号转导中一个进化保守的机制。