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发现 PKA 单克隆抗体的强抑制特性,并利用该抗体和竞争性光致发光正位探针分析蛋白激酶。

Discovery of strong inhibitory properties of a monoclonal antibody of PKA and use of the antibody and a competitive photoluminescent orthosteric probe for analysis of the protein kinase.

机构信息

Institute of Chemistry, University of Tartu, 14A Ravila St., 50411 Tartu, Estonia.

Institute of Chemistry, University of Tartu, 14A Ravila St., 50411 Tartu, Estonia.

出版信息

Biochim Biophys Acta Proteins Proteom. 2020 Aug;1868(8):140427. doi: 10.1016/j.bbapap.2020.140427. Epub 2020 Apr 10.

DOI:10.1016/j.bbapap.2020.140427
PMID:32283249
Abstract

We show that the antibody, clone mAb(D38C6), of the α isoform of the catalytic subunit of PKA (PKAcα) inhibits the kinase-catalyzed phosphorylation with low-nanomolar inhibitory potency (K = 2.4 nM). This property of the antibody was established by its capacity to displace a synthetic small-molecule active site-binding (orthosteric) photoluminescent ARC-Lum(Fluo) probe from the complex with PKAcα. Likely, the competitiveness of association of the two binders with the protein is coming from two excluding conformations of PKAcα to which the binders bind. mAb(D38C6) possesses a linear peptide epitope and it binds to the disordered C-tail of unliganded inactive conformer of PKAcα. ARC-Lum(Fluo) probes bind to the ordered and active conformation of PKAcα with Phe327 residue from the C-tail taking part in the formation of the active core. Consecutive application of these competitive PKAcα binders was used to develop an immunoassay allowing the determination of PKAcα concentration in complex biological solutions. At first, PKAcα was captured from the solution by the isoform-specific antibody and thereafter a high-affinity ARC-Lum(Fluo) probe was used to displace PKAcα from the binary complex. The developed immunoassay could be used for quantification of small amounts (starting from 93 pg, 2.3 fmol) of PKAcα in cell lysates.

摘要

我们证明了针对蛋白激酶 A(PKA)催化亚基 α 同工型的抗体 mAb(D38C6) 能够以低纳摩尔抑制效力(K=2.4 nM)抑制激酶催化的磷酸化作用。该抗体的这一特性是通过其从与 PKAcα 形成的复合物中置换合成小分子活性位点结合(变构)光致发光 ARC-Lum(Fluo) 探针的能力来确定的。很可能,两种结合物与蛋白质的结合物的竞争性结合来自于 PKAcα 的两种排除构象,结合物与之结合。mAb(D38C6) 具有线性肽表位,它与无配体的失活构象的 PKAcα 的无序 C 尾结合。ARC-Lum(Fluo) 探针与 PKAcα 的有序和活性构象结合,PKAcα 的 C 尾中的 Phe327 残基参与活性核心的形成。连续应用这些竞争性 PKAcα 结合物开发了一种免疫测定法,可用于测定复杂生物溶液中 PKAcα 的浓度。首先,通过同工型特异性抗体从溶液中捕获 PKAcα,然后使用高亲和力的 ARC-Lum(Fluo) 探针从二元复合物中置换 PKAcα。开发的免疫测定法可用于定量细胞裂解物中少量(起始量为 93 pg,2.3 fmol)的 PKAcα。

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