Livi G P, Kmetz P, McHale M M, Cieslinski L B, Sathe G M, Taylor D P, Davis R L, Torphy T J, Balcarek J M
Department of Gene Expression Sciences, SmithKline Beecham Pharmaceuticals, King of Prussia, Pennsylvania 19406.
Mol Cell Biol. 1990 Jun;10(6):2678-86. doi: 10.1128/mcb.10.6.2678-2686.1990.
We have isolated cDNA clones representing cyclic AMP (cAMP)-specific phosphodiesterases (PDEases) from a human monocyte cDNA library. One cDNA clone (hPDE-1) defines a large open reading frame of ca. 2.1 kilobases, predicting a 686-amino-acid, ca. 77-kilodalton protein which contains significant homology to both rat brain and Drosophila cAMP PDEases, especially within an internal conserved domain of ca. 270 residues. Amino acid sequence divergence exists at the NH2 terminus and also within a 40- to 100-residue domain near the COOH-terminal end. hPDE-1 hybridizes to a major 4.8-kilobase mRNA transcript from both human monocytes and placenta. The coding region of hPDE-1 was engineered for expression in COS-1 cells, resulting in the overproduction of cAMP PDEase activity. The hPDE-1 recombinant gene product was identified as a low-Km cAMP phosphodiesterase on the basis of several biochemical properties including selective inhibition by the antidepressant drug rolipram. Known inhibitors of other PDEases (cGMP-specific PDEase, cGMP-inhibited PDEase) had little or no effect on the hPDE-1 recombinant gene product. Human genomic Southern blot analysis suggests that this enzyme is likely to be encoded by a single gene. The presence of the enzyme in monocytes may be important for cell function in inflammation. Rolipram sensitivity, coupled with homology to the Drosophila cAMP PDEase, which is required for learning and memory in flies, suggests an additional function for this enzyme in neurobiochemistry.
我们从人单核细胞cDNA文库中分离出了代表环磷酸腺苷(cAMP)特异性磷酸二酯酶(PDE酶)的cDNA克隆。一个cDNA克隆(hPDE - 1)确定了一个约2.1千碱基的大开放阅读框,预测其编码一个686个氨基酸、约77千道尔顿的蛋白质,该蛋白质与大鼠脑和果蝇cAMP PDE酶具有显著同源性,尤其是在一个约270个残基的内部保守结构域内。在氨基末端以及靠近羧基末端的一个40至100个残基的结构域内存在氨基酸序列差异。hPDE - 1与来自人单核细胞和胎盘的一个主要的4.8千碱基mRNA转录本杂交。hPDE - 1的编码区经改造后可在COS - 1细胞中表达,导致cAMP PDE酶活性过量产生。基于包括被抗抑郁药咯利普兰选择性抑制在内的几种生化特性,hPDE - 1重组基因产物被鉴定为一种低Km的cAMP磷酸二酯酶。其他PDE酶(cGMP特异性PDE酶、cGMP抑制性PDE酶)的已知抑制剂对hPDE - 1重组基因产物几乎没有影响。人基因组Southern印迹分析表明该酶可能由单个基因编码。该酶在单核细胞中的存在可能对炎症中的细胞功能很重要。咯利普兰敏感性以及与果蝇cAMP PDE酶的同源性(果蝇学习和记忆所需)表明该酶在神经生物化学中具有额外功能。