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Bioinformatic design of A-kinase anchoring protein-in silico: A potent and selective peptide antagonist of type II protein kinase A anchoring

机译:A激酶锚定蛋白在计算机上的生物信息学设计:一种有效的选择性II型蛋白激酶A锚定肽拮抗剂

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摘要

Compartmentalization of the cAMP-dependent protein kinase (PKA) is coordinated through association with A-kinase anchoring proteins (AKAPs). A defining characteristic of most AKAPs is a 14- to 18-aa sequence that binds to the regulatory subunits (RI or RII) of the kinase. Cellular delivery of peptides to these regions disrupts PKA anchoring and has been used to delineate a physiological role for AKAPs in the facilitation of certain cAMP-responsive events. Here, we describe a bioinformatic approach that yields an RII-selective peptide, called AKAP-in silico (AKAP-IS), that binds RII with a Kd of 0.4 nM and binds RI with a Kd of 277 nM. AKAP-IS associates with the type II PKA holoenzyme inside cells and displaces the kinase from natural anchoring sites. Electrophysiological recordings indicate that perfusion of AKAP-IS evokes a more rapid and complete attenuation of α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptor currents than previously described anchoring inhibitor peptides. Thus, computer-based and peptide array screening approaches have generated a reagent that binds PKA with higher affinity than previously described AKAPs.
机译:通过与A激酶锚定蛋白(AKAP)的结合来协调cAMP依赖性蛋白激酶(PKA)的区室化。大多数AKAP的定义特征是与激酶的调节亚基(RI或RII)结合的14至18-aa序列。肽向这些区域的细胞递送破坏了PKA锚定,并已被用于描绘AKAP在促进某些cAMP反应事件中的生理作用。在这里,我们描述了一种生物信息学方法,该方法产生一种RII选择性肽,称为AKAP-in silico(AKAP-IS),该肽以0.4 nM的Kd结合RII并以277 nM的Kd结合RI。 AKAP-IS与细胞内部的II型PKA全酶相关,并从天然锚定位点置换了激酶。电生理记录表明,与先前描述的锚定抑制剂肽相比,AKAP-IS的灌注引起α-氨基-3-羟基-5-甲基-5-甲基-4-异恶唑丙酸(AMPA)受体电流更快速,更完全的衰减。因此,基于计算机的和肽阵列筛选方法已经产生了一种与PKA结合的试剂,其亲和力高于先前描述的AKAP。

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