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除了SH3结合区域外,环磷酸腺苷特异性磷酸二酯酶PDE4A5的N端非催化部分内的多个区域也有助于其细胞内定位。

In addition to the SH3 binding region, multiple regions within the N-terminal noncatalytic portion of the cAMP-specific phosphodiesterase, PDE4A5, contribute to its intracellular targeting.

作者信息

Beard Matthew B, Huston Elaine, Campbell Lachlan, Gall Irene, McPhee Ian, Yarwood Stephen, Scotland Grant, Houslay Miles D

机构信息

Molecular Pharmacology Group, Division of Biochemistry and Molecular Biology, Davidson Building, Institute of Biomedical and Life Sciences, University of Glasgow, G12 8QQ, Scotland, Glasgow, UK.

出版信息

Cell Signal. 2002 May;14(5):453-65. doi: 10.1016/s0898-6568(01)00264-9.

Abstract

The long cyclic AMP (cAMP)-specific phosphodiesterase isoform, PDE4A5 (PDE4A subfamily isoform variant 5), when transiently expressed in COS-7 cells, was shown in subcellular fractionation studies to be associated with both membrane and cytosol fractions, with immunofluorescence analyses identifying PDE4A5 as associated both with ruffles at the cell margin and also at a distinct perinuclear localisation. Deletion of the first nine amino acids of PDE4A5 (1) ablated its ability to interact with the SH3 domain of the tyrosyl kinase, LYN; (2) reduced, but did not ablate, membrane association; and (3) disrupted the focus of PDE4A5 localisation within ruffles at the cell margin. This deleted region contained a Class I SH3 binding motif of similar sequence to those identified by screening a phage display library with the LYN-SH3 domain. Truncation to remove the PDE4A5 isoform-specific N-terminal region caused a further reduction in membrane association and ablated localisation at the cell margin. Progressive truncation to delete the PDE4A long isoform common region and then the long isoform-specific UCR1 did not cause any further change in membrane association or intracellular distribution. However, deletion up to the super-short form splice junction generated an entirely soluble 'core' PDE4A species. We propose that multiple sites in the N-terminal noncatalytic portion of PDE4A5 have the potential to associate with intracellular structures and thus define its intracellular localisation. At least two such sites lie within the PDE4A5 isoform-specific N-terminal region and these appear to be primarily responsible for targeting PDE4A5 to, and organising it within, the cell margin; one is an SH3 binding motif able to interact with LYN kinase and the other lies within the C-terminal portion of the PDE4A5 unique region. A third membrane association region is located within the N-terminal portion of UCR2 and appears to be primarily responsible for targeting to the perinuclear region. Progressive N-terminal truncation, to delete defined regions of PDE4A5, identified activity changes occurring upon deletion of the SH3 binding site region and then upon deletion of the membrane association site region located within UCR2. This suggests that certain of these anchor sites may not only determine intracellular targeting but may also transduce regulatory effects on PDE4A5 activity.

摘要

长链环磷酸腺苷(cAMP)特异性磷酸二酯酶同工型PDE4A5(PDE4A亚家族同工型变体5)在COS-7细胞中瞬时表达时,亚细胞分级分离研究表明它与膜和胞质溶胶部分均相关,免疫荧光分析确定PDE4A5既与细胞边缘的褶皱相关,也与核周的一个独特定位相关。删除PDE4A5的前九个氨基酸(1)消除了其与酪氨酸激酶LYN的SH3结构域相互作用的能力;(2)降低了膜结合能力,但并未消除;(3)破坏了PDE4A5在细胞边缘褶皱内的定位焦点。该缺失区域包含一个I类SH3结合基序,其序列与通过用LYN-SH3结构域筛选噬菌体展示文库鉴定的基序相似。截断以去除PDE4A5同工型特异性的N末端区域导致膜结合进一步减少,并消除了在细胞边缘的定位。逐步截断以删除PDE4A长同工型共同区域,然后是长同工型特异性的UCR1,并未导致膜结合或细胞内分布的任何进一步变化。然而,删除直至超短形式剪接连接点产生了一种完全可溶的“核心”PDE4A物种。我们提出,PDE4A5的N末端非催化部分中的多个位点有可能与细胞内结构相关联,从而确定其细胞内定位。至少有两个这样的位点位于PDE4A5同工型特异性的N末端区域内,这些位点似乎主要负责将PDE4A5靶向细胞边缘并在其中进行组织;一个是能够与LYN激酶相互作用的SH3结合基序,另一个位于PDE4A5独特区域的C末端部分内。第三个膜结合区域位于UCR2的N末端部分内,似乎主要负责靶向核周区域。逐步进行N末端截断以删除PDE4A5的特定区域,确定了在删除SH3结合位点区域以及随后删除位于UCR2内的膜结合位点区域时发生的活性变化。这表明这些锚定位点中的某些位点不仅可能决定细胞内靶向,还可能转导对PDE4A5活性的调节作用。

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