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摘要

Phosphodiesterase catalyzes the hydrolysis of the intracellular second messenger 3',5'-cyclic AMP (cAMP) into the corresponding 5'-nucleotide. Phosphodiesterase 4 (PDE4), the major cAMP-specific PDE in inflammatory and immune cells, is an attractive target for the treatment of asthma and COPD. We have determined crystal structures of the catalytic domain of PDE4B complexed with AMP (2.0A), 8-Br-AMP (2.13A) and the potent inhibitor rolipram (2.0A). All the ligands bind in the same hydrophobic pocket and can interact directly with the active site metal ions. The identity of these metal ions was examined using X-ray anomalous difference data. The structure of the AMP complex confirms the location of the catalytic site and allowed us to speculate about the detailed mechanism of catalysis. The high-resolution structures provided the experimental insight into the nucleotide selectivity of phosphodiesterase. 8-Br-AMP binds in the syn conformation to the enzyme and demonstrates an alternative nucleotide-binding mode. Rolipram occupies much of the AMP-binding site and forms two hydrogen bonds with Gln443 similar to the nucleotides.
机译:磷酸二酯酶催化细胞内第二信使3',5'-环AMP(cAMP)水解成相应的5'-核苷酸。磷酸二酯酶4(PDE4)是炎性和免疫细胞中主要的cAMP特异性PDE,是治疗哮喘和COPD的有吸引力的靶标。我们已经确定了与AMP(2.0A),8-Br-AMP(2.13A)和强效抑制剂咯利普兰(2.0A)复合的PDE4B催化域的晶体结构。所有配体都结合在同一个疏水口袋中,并且可以直接与活性位点金属离子相互作用。使用X射线异常差异数据检查了这些金属离子的身份。 AMP配合物的结构确定了催化位点的位置,并允许我们推测催化的详细机理。高分辨率结构为磷酸二酯酶的核苷酸选择性提供了实验见识。 8-Br-AMP以顺式构象与酶结合,并显示出另一种核苷酸结合模式。咯利普兰占据了大部分AMP结合位点,并与Gln443形成了两个类似于核苷酸的氢键。

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