Turko I V, Francis S H, Corbin J D
Department of Molecular Physiology and Biophysics, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-0615, USA.
Biochemistry. 1998 Mar 24;37(12):4200-5. doi: 10.1021/bi972448r.
The mechanism of discrimination between cGMP and cAMP in the catalytic site of the cGMP-binding cGMP-specific phosphodiesterase (BTPDE5A1 or PDE5) has been investigated. A hydropathy analysis of the catalytic domains of different families of PDEs suggests that substrate selectivity of PDEs could result from the pattern of hydrophobic/hydrophilic residues in a short segment surrounding a conserved Glu that has been shown to be critical for cGMP binding in the catalytic domain of PDE5. This implies that the substrate selectivity of PDE5 could be altered by replacing the residues within this segment that are conserved in cGMP-specific PDEs with the conserved residues in the corresponding positions of cAMP-specific PDEs. The A769T/L771R, W762L/Q765Y, and W762L/Q765Y/A769T/L771R mutant PDE5s were expressed in High Five cells, and their substrate selectivities were compared with that of wild-type PDE5. The results indicate that the substrate-binding site of PDE5 contains positive elements for accommodating cGMP, as well as negative elements that discriminate against binding of cAMP, and that the cGMP/cAMP selectivity of PDE5 can be shifted 106-fold by substituting four residues of PDE5 with the residues in the corresponding positions of PDE4.
对结合cGMP的cGMP特异性磷酸二酯酶(BTPDE5A1或PDE5)催化位点区分cGMP和cAMP的机制进行了研究。对不同家族磷酸二酯酶催化结构域的亲水性分析表明,磷酸二酯酶的底物选择性可能源于保守谷氨酸周围短片段中疏水/亲水残基的模式,该谷氨酸已被证明对PDE5催化结构域中的cGMP结合至关重要。这意味着通过用cAMP特异性磷酸二酯酶相应位置的保守残基替换cGMP特异性磷酸二酯酶中该片段内保守的残基,可以改变PDE5的底物选择性。A769T/L771R、W762L/Q765Y和W762L/Q765Y/A769T/L771R突变型PDE5在High Five细胞中表达,并将它们的底物选择性与野生型PDE5进行比较。结果表明,PDE5的底物结合位点包含容纳cGMP的正性元件以及区分cAMP结合的负性元件,并且通过用PDE4相应位置的残基替换PDE5的四个残基,PDE5的cGMP/cAMP选择性可以改变106倍。