Institute for Pharmacy and Biochemistry, Johannes Gutenberg-Universität Mainz, 55128 Mainz, Germany; Center for Biomolecular Magnetic Resonance (BMRZ), Goethe-Universität, 60438 Frankfurt am Main, Germany.
Center for Biomolecular Magnetic Resonance (BMRZ), Goethe-Universität, 60438 Frankfurt am Main, Germany; Institute for Molecular Biosciences, Goethe-Universität, 60438 Frankfurt am Main, Germany.
Structure. 2018 Dec 4;26(12):1583-1593.e5. doi: 10.1016/j.str.2018.08.002. Epub 2018 Sep 20.
Transient receptor potential (TRP) channels are polymodally regulated ion channels. TRPV4 (vanilloid 4) is sensitized by PIP and desensitized by Syndapin3/PACSIN3, which bind to the structurally uncharacterized TRPV4 N terminus. We determined the nuclear magnetic resonance structure of the Syndapin3/PACSIN3 SH3 domain in complex with the TRPV4 N-terminal proline-rich region (PRR), which binds as a class I polyproline II (PPII) helix. This PPII conformation is broken by a conserved proline in a cis conformation. Beyond the PPII, we find that the proximal TRPV4 N terminus is unstructured, a feature conserved across species thus explaining the difficulties in resolving it in previous structural studies. Syndapin/PACSIN SH3 domain binding leads to rigidification of both the PRR and the adjacent PIP binding site. We determined the affinities of the TRPV4 N terminus for PACSIN1, 2, and 3 SH3 domains and PIP and deduce a hierarchical interaction network where Syndapin/PACSIN binding influences the PIP binding site but not vice versa.
瞬时受体电位 (TRP) 通道是多模式调节的离子通道。 TRPV4(香草素 4)被 PIP 敏化,被 Syndapin3/PACSIN3 脱敏,后者结合到结构上未表征的 TRPV4 N 端。我们确定了 Syndapin3/PACSIN3 SH3 结构域与 TRPV4 N 端富含脯氨酸的区域(PRR)复合物的核磁共振结构,该结构域以 I 类聚脯氨酸 II(PPII)螺旋的形式结合。这种 PPII 构象被顺式构象中的保守脯氨酸打破。在 PPII 之外,我们发现近端 TRPV4 N 端没有结构,这一特征在物种间是保守的,因此解释了之前的结构研究中难以解析它的原因。 Syndapin/PACSIN SH3 结构域的结合导致 PRR 和相邻的 PIP 结合位点的刚性增加。我们测定了 TRPV4 N 端与 PACSIN1、2 和 3 SH3 结构域以及 PIP 的亲和力,并推导出一个层次相互作用网络,其中 Syndapin/PACSIN 结合影响 PIP 结合位点,但反之则不然。