首页> 外文期刊>Molecular pharmacology. >Molecular cloning, genomic positioning, promoter identification, and characterization of the novel cyclic amp-specific phosphodiesterase PDE4A10.
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Molecular cloning, genomic positioning, promoter identification, and characterization of the novel cyclic amp-specific phosphodiesterase PDE4A10.

机译:分子克隆,基因组定位,启动子鉴定和新型环状amp特异性磷酸二酯酶PDE4A10的表征。

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摘要

We describe the cloning and expression of HSPDE4A10, a novel long form splice variant of the human cAMP phosphodiesterase PDE4A gene. The 825 amino acid HSPDE4A10 contains a unique N terminus of 46 amino acids encoded by a unique 5' exon. Exon-1(4A10) lies approximately 11 kilobase pairs (kb) downstream of exon-1(4A4) and approximately 13.5 kb upstream of the PDE4A common exon 2. We identify a rat PDE4A10 ortholog and reveal a murine ortholog by nucleotide sequence database searching. PDE4A10 transcripts were detected in various human cell lines and tissues. The 5' sequence flanking exon-1(4A10) exhibited promoter activity with the minimal functional promoter region being highly conserved in the corresponding mouse genomic sequence. Transient expression of the engineered human PDE4A10 open reading frame in COS7 cells allowed detection of a 121-kDa protein in both soluble and particulate fractions. PDE4A10 was localized primarily to the perinuclear region of COS7 cells. Soluble and particulate forms exhibited similar K(m) values for cAMP hydrolysis (3-4 microM) and IC(50) values for inhibition by rolipram (50 nM) but the V(max) value of the soluble form was approximately 3-fold greater than that of the particulate form. At 55 degrees C, soluble HSPDE4A10 was more thermostable (T(0.5) = 11 min) than the particulate enzyme (T(0.5) = 5 min). HSPDE4A10 and HSPDE4A4B are shown here to be similar in size and exhibit similar maximal activities but differ with respect to sensitivity to inhibition by rolipram, thermostability, interaction with the SRC homology 3 domain of LYN, an SRC family tyrosyl kinase, and subcellular localization. We suggest that the unique N-terminal regions of PDE4A isoforms confer distinct properties upon them.
机译:我们描述了人类cAMP磷酸二酯酶PDE4A基因的新型长形式剪接变体HSPDE4A10的克隆和表达。 825个氨基酸的HSPDE4A10包含一个由独特的5'外显子编码的46个氨基酸的独特N末端。外显子1(4A10)位于外显子1(4A4)下游约11 kb,位于PDE4A共同外显子2上游约13.5 kb。我们鉴定出大鼠PDE4A10直向同源物,并通过核苷酸序列数据库搜索揭示了鼠源直向同源物。在各种人类细胞系和组织中检测到PDE4A10转录本。位于外显子1(4A10)侧翼的5'序列具有启动子活性,最小的功能性启动子区域在相应的小鼠基因组序列中高度保守。工程化的人PDE4A10开放阅读框在COS7细胞中的瞬时表达,可检测可溶性和颗粒级分中的121 kDa蛋白。 PDE4A10主要定位在COS7细胞的核周区域。可溶性和颗粒形式对cAMP水解表现出相似的K(m)值(3-4 microM),对咯利普兰的抑制作用表现出IC(50)值(50 nM),但可溶性形式的V(max)值约为3倍大于颗粒形式。在55摄氏度下,可溶性HSPDE4A10比颗粒酶(T(0.5)= 5分钟)更稳定(T(0.5)= 11分钟)。 HSPDE4A10和HSPDE4A4B的大小相似,并且具有相似的最大活性,但在对咯利普兰抑制的敏感性,热稳定性,与LYN的SRC同源3结构域,SRC家族酪氨酸激酶的相互作用以及亚细胞定位方面有所不同。我们建议PDE4A亚型的独特的N末端区域赋予他们不同的属性。

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