Department of Biotechnology, Graduate School of Agriculture and Life Sciences, the University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-8657, Japan.
J Biol Chem. 2010 May 28;285(22):16844-53. doi: 10.1074/jbc.M109.092460. Epub 2010 Apr 7.
The polyene macrolide antibiotic filipin is widely used as a probe for cholesterol and a diagnostic tool for type C Niemann-Pick disease. Two position-specific P450 enzymes are involved in the post-polyketide modification of filipin during its biosynthesis, thereby providing molecular diversity to the "filipin complex." CYP105P1 and CYP105D6 from Streptomyces avermitilis, despite their high sequence similarities, catalyze filipin hydroxylation at different positions, C26 and C1', respectively. Here, we determined the crystal structure of the CYP105P1-filipin I complex. The distal pocket of CYP105P1 has the second largest size among P450 hydroxylases that act on macrolide substrates. Compared with previously determined substrate-free structures, the FG helices showed significant closing motion on substrate binding. The long BC loop region adopts a unique extended conformation without a B' helix. The binding site is essentially hydrophobic, but numerous water molecules are involved in recognizing the polyol side of the substrate. Therefore, the distal pocket of CYP105P1 provides a specific environment for the large filipin substrate to bind with its pro-S side of position C26 directed toward the heme iron. The ligand-free CYP105D6 structure was also determined. A small sub-pocket accommodating the long alkyl side chain of filipin I was observed in the CYP105P1 structure but was absent in the CYP105D6 structure, indicating that filipin cannot bind to CYP105D6 with a similar orientation due to steric hindrance. This observation can explain the strict regiospecificity of these enzymes.
多烯大环内酯抗生素 filipin 被广泛用作胆固醇探针和 C 型尼曼-匹克病的诊断工具。在其生物合成过程中,两个位置特异性 P450 酶参与了 filipin 的聚酮后修饰,从而为“filipin 复合物”提供了分子多样性。尽管链霉菌avermitilis 中的 CYP105P1 和 CYP105D6 具有很高的序列相似性,但它们分别催化 filipin 在 C26 和 C1'位置的羟基化。在这里,我们确定了 CYP105P1-filipin I 复合物的晶体结构。CYP105P1 的远端口袋在作用于大环内酯底物的 P450 羟化酶中具有第二大尺寸。与以前确定的无底物结构相比,FG 螺旋在底物结合时表现出明显的闭合运动。长的 BC 环区域采用独特的扩展构象,没有 B'螺旋。结合位点基本上是疏水的,但许多水分子参与识别底物的多元醇侧。因此,CYP105P1 的远端口袋为较大的 filipin 底物提供了一个特定的环境,使其具有 C26 位置的 pro-S 侧朝向血红素铁。还确定了无配体的 CYP105D6 结构。在 CYP105P1 结构中观察到一个容纳 filipin I 长烷基侧链的小亚口袋,但在 CYP105D6 结构中不存在,这表明由于空间位阻,filipin 不能以类似的取向与 CYP105D6 结合。这一观察结果可以解释这些酶的严格区域特异性。