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用于双砷多用途亲和探针的正交肽结合基序的鉴定。

Identification of an orthogonal peptide binding motif for biarsenical multiuse affinity probes.

作者信息

Chen Baowei, Cao Haishi, Yan Ping, Mayer M Uljana, Squier Thomas C

机构信息

Cell Biology and Biochemistry Group, Biological Sciences Division, Pacific Northwest National Laboratory, Richland, Washington 99352, USA.

出版信息

Bioconjug Chem. 2007 Jul-Aug;18(4):1259-65. doi: 10.1021/bc0603900. Epub 2007 Jun 15.

DOI:10.1021/bc0603900
PMID:17569496
Abstract

Biarsenical multiuse affinity probes (MAPs) complexed with ethanedithiol (EDT) permit the selective cellular labeling of proteins engineered with tetracysteine motifs, but are limited by the availability of a single binding motif (i.e., CCPGCC or PG tag) that prevents the differential labeling of coexpressed proteins. To overcome this problem, we have used a high-throughput peptide screen to identify an alternate binding motif (i.e., CCKACC or KA tag), which has a similar brightness to the classical sequence upon MAP binding, but displays altered rates and affinities of association that permit the differential labeling of these peptide sequences by the red probe 4,5-bis(1,3,2-dithiarsolan-2-yl)-resorufin (ReAsH-EDT2) or its green cognate 4',5'-bis(1,3,2-dithoarsolan-2-yl)fluorescein (FLAsH-EDT2). The utility of this labeling strategy was demonstrated following the expression of PG- and KA-tagged subunits of RNA polymerase in E. coli. Specific labeling of two subunits of RNA polymerase in cellular lysates was achieved, whereby ReAsH-EDT2 is shown to selectively label the PG-tag on RNA polymerase alpha-subunit prior to the labeling of the KA-tag sequence of the beta-subunit of RNA polymerase with FlAsH-EDT2. These results demonstrate the ability to selectively label multiple individual proteins with orthogonal sequence tags in complex cellular lystates with spectroscopically distinct MAPs, and indicate the absolute specificity of ReAsH to target expressed proteins with essentially no nonspecific binding interactions.

摘要

与乙二硫醇(EDT)复合的双砷多用途亲和探针(MAPs)能够对用四半胱氨酸基序工程改造的蛋白质进行选择性细胞标记,但受到单一结合基序(即CCPGCC或PG标签)可用性的限制,这使得共表达蛋白质的差异标记受到阻碍。为了克服这个问题,我们使用了高通量肽筛选来鉴定一种替代结合基序(即CCKACC或KA标签),该基序在MAP结合时与经典序列具有相似的亮度,但显示出不同的结合速率和亲和力,从而允许红色探针4,5-双(1,3,2-二硫砷杂环戊烷-2-基)-试卤灵(ReAsH-EDT2)或其绿色同源物4',5'-双(1,3,2-二硫砷杂环戊烷-2-基)荧光素(FLAsH-EDT2)对这些肽序列进行差异标记。在大肠杆菌中表达RNA聚合酶的PG和KA标签亚基后,证明了这种标记策略的实用性。实现了细胞裂解物中RNA聚合酶两个亚基的特异性标记,其中ReAsH-EDT2被证明在RNA聚合酶β亚基的KA标签序列被FlAsH-EDT2标记之前,选择性地标记RNA聚合酶α亚基上的PG标签。这些结果证明了在复杂的细胞裂解物中用光谱上不同的MAPs对具有正交序列标签的多个单个蛋白质进行选择性标记的能力,并表明ReAsH对靶标表达蛋白质具有绝对特异性,基本上没有非特异性结合相互作用。

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