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首页> 外文期刊>Cellular Signalling >In resting COS1 cells a dominant negative approach shows that specific, anchored PDE4 cAMP phosphodiesterase isoforms gate the activation, by basal cyclic AMP production, of AKAP-tethered protein kinase - A type II located in the centrosomal region
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In resting COS1 cells a dominant negative approach shows that specific, anchored PDE4 cAMP phosphodiesterase isoforms gate the activation, by basal cyclic AMP production, of AKAP-tethered protein kinase - A type II located in the centrosomal region

机译:在静止的COS1细胞中,一种主要的阴性方法表明,特定的,锚定的PDE4 cAMP磷酸二酯酶同工型通过基底环AMP产生激活了AKAP拴系的蛋白激酶-位于中心体区域的II型激活

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摘要

We employ a novel, dominant negative approach to identify a key role for certain tethered cyclic AMP specific phosphodiesterase-4 (PDE4) isoforms in regulating cyclic AMP dependent protein kinase A (PKA) sub-populations in resting COS1 cells. A fraction of PKA is clearly active in resting COS1 cells and this activity increases when cells are treated with the selective PDE4 inhibitor, rolipram. Point mutation of a critical, conserved aspartate residue in the catalytic site of long PDE4A4, PDE4B1, PDE4C2 and PDE4D3 isoforms renders them catalytically inactive. Overexpressed in resting COS I cells, catalytically inactive forms of PDE4C2 and PDE4D3, but not PDE4A4 and PDE4B1, are constitutively PKA phosphorylated while overexpressed active versions of all these isoforms are not. Inactive and active versions of all these isoforms are PKA phosphorylated in cells where protein kinase A is maximally activated with forskolin and IBMX. By contrast, rolipram challenge of COS1 cells selectively triggers the PKA phosphorylation of recombinant, active PDE4D3 and PDE4C2 but not recombinant, active PDE4A4 and PDE4B1. Purified, recombinant PDE4D3 and PDE4A4 show a similar dose-dependency for in vitro phosphorylation by PKA. Disruption of the tethering of PKA type-II to PKA anchor proteins (AKAPs), achieved using the peptide Ht31, prevents inactive forms of PDE4C2 and PDE4D3 being constitutively PKA phosphorylated in resting cells as does siRNA-mediated knockdown of PKA-RII, but not PKA-RI. PDE4C2 and PDE4D3 co-immunoprecipitate from COS1 cell lysates with 250 kDa and 450 kDa AKAPs that tether PKA type-II and not PKA type-I. PKA type-II co-localises with AKAP450 in the centrosornal region of COS1 cells. The perinuclear distribution of recombinant, inactive PDE4D3, but not inactive PDE4A4, overlaps with AKAP450 and PKA type-II. The distribution of PKA phosphorylated inactive PDE4D3 also overlaps with that of AK-AP450 in the centrosomal region of COS1 cells. We propose that a novel role for PDE4D3 and PDE4C2 is to gate the activation of AKAP450-tethered PKA type-II localised in the perinuclear region under conditions of basal cAMP generation in resting cells. (c) 2005 Elsevier Inc. All rights reserved.
机译:我们采用一种新颖的,显性的负性方法来确定某些拴环环状AMP特异性磷酸二酯酶4(PDE4)亚型在调节COS1细胞中的环状AMP依赖性蛋白激酶A(PKA)亚群中的关键作用。 PKA的一部分显然在静止的COS1细胞中具有活性,当用选择性PDE4抑制剂rolipram处理细胞时,这种活性会增加。在长PDE4A4,PDE4B1,PDE4C2和PDE4D3同工型的催化位点中,一个关键的,保守的天冬氨酸残基的点突变使它们失去催化活性。在静止的COS I细胞中过表达,PDE4C2和PDE4D3而不是PDE4A4和PDE4B1的非催化形式被PKA磷酸化,而所有这些亚型的过表达的活性形式则没有。所有这些同工型的非活性和活性形式均在细胞中被PKA磷酸化,其中蛋白激酶A被福司可林和IBMX最大限度地激活。相比之下,咯利普兰对COS1细胞的攻击选择性地触发了重组,活性PDE4D3和PDE4C2的PKA磷酸化,但没有触发重组,活性PDE4A4和PDE4B1的PKA磷酸化。纯化的重组PDE4D3和PDE4A4在体外通过PKA磷酸化显示出相似的剂量依赖性。使用肽Ht31破坏PKA II型与PKA锚定蛋白(AKAPs)的束缚,可以阻止PDE4C2和PDE4D3的非活性形式在静息细胞中组成性地被PKA磷酸化,就像siRNA介导的PKA-RII敲除一样。 PKA-RI。来自COS1细胞裂解物的PDE4C2和PDE4D3与250 kDa和450 kDa AKAP共同免疫沉淀,这些AKAP束缚了PKA II型而非PKA I型。 PKA II型与AKAP450共同定位在COS1细胞的中心角区域。重组的,无活性的PDE4D3而不是无活性的PDE4A4的核周分布与AKAP450和II型PKA重叠。在COS1细胞的中心体区域,PKA磷酸化的失活PDE4D3的分布也与AK-AP450的分布重叠。我们提出,PDE4D3和PDE4C2的新作用是控制在静止细胞中基础cAMP生成的条件下定位于核周区域的AKAP450拴系的PKA II型的激活。 (c)2005 Elsevier Inc.保留所有权利。

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