首页> 美国卫生研究院文献>The EMBO Journal >All-trans retinol vitamin D and other hydrophobic compounds bind in the axial pore of the five-stranded coiled-coil domain of cartilage oligomeric matrix protein.
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All-trans retinol vitamin D and other hydrophobic compounds bind in the axial pore of the five-stranded coiled-coil domain of cartilage oligomeric matrix protein.

机译:全反式视黄醇维生素D和其他疏水性化合物结合在软骨寡聚基质蛋白的五链卷曲螺旋结构域的轴向孔中。

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摘要

The potential storage and delivery function of cartilage oligomeric matrix protein (COMP) for cell signaling molecules was explored by binding hydrophobic compounds to the recombinant five-stranded coiled-coil domain of COMP. Complex formation with benzene, cyclohexane, vitamin D3 and elaidic acid was demonstrated through increases in denaturation temperatures of 2-10 degreesC. For all-trans retinol and all-trans retinoic acid, an equilibrium dissociation constant KD = 0.6 microM was evaluated by fluorescence titration. Binding of benzene and all-trans retinol into the hydrophobic axial pore of the COMP coiled-coil domain was proven by the X-ray crystal structures of the corresponding complexes at 0.25 and 0.27 nm resolution, respectively. Benzene binds with its plane perpendicular to the pore axis. The binding site is between the two internal rings formed by Leu37 and Thr40 pointing into the pore of the COMP coiled-coil domain. The retinol beta-ionone ring is positioned in a hydrophobic environment near Thr40, and the 1.1 nm long isoprene tail follows a completely hydrophobic region of the pore. Its terminal hydroxyl group complexes with a ring of the five side chains of Gln54. A mutant in which Gln54 is replaced by Ile binds all-trans retinol with affinity similar to the wild-type, demonstrating that hydrophobic interactions are predominant.
机译:通过将疏水性化合物与COMP的重组五链卷曲螺旋结构域结合,探索了软骨寡聚基质蛋白(COMP)对于细胞信号分子的潜在存储和传递功能。通过将变性温度提高2-10摄氏度,证明了与苯,环己烷,维生素D3和花生酸的络合物形成。对于全反式视黄醇和全反式视黄酸,通过荧光滴定评估平衡解离常数KD = 0.6 microM。苯和全反式视黄醇结合到COMP卷曲螺旋结构域的疏水轴向孔中的现象分别由相应配合物的X射线晶体结构以0.25和0.27 nm的分辨率证实。苯以垂直于孔轴的平面结合。结合位点是由Leu37和Thr40形成的两个内环之间,指向COMP卷曲螺旋结构域的孔。视黄醇β-紫罗兰酮环位于Thr40附近的疏水环境中,长1.1 nm的异戊二烯尾部跟随孔的完全疏水区域。它的末端羟基与Gln54五个侧链的环络合。其中Gln54被Ile取代的突变体以与野生型相似的亲和力结合了全反式视黄醇,表明疏水相互作用是主要的。

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