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Src-Abl 酪氨酸激酶嵌合体:用 v-Src 替换 c-Abl 的腺嘌呤结合口袋以交换核苷酸和抑制剂特异性。

Src-Abl tyrosine kinase chimeras: replacement of the adenine binding pocket of c-Abl with v-Src to swap nucleotide and inhibitor specificities.

作者信息

Liu Y, Witucki L A, Shah K, Bishop A C, Shokat K M

机构信息

Department of Chemistry, Princeton University, Princeton, New Jersey 08544, USA.

出版信息

Biochemistry. 2000 Nov 28;39(47):14400-8. doi: 10.1021/bi000437j.

Abstract

Engineered protein kinases with unnatural nucleotide specificity and inhibitor sensitivity have been developed to trace kinase substrate targets. We first engineered unnatural nucleotide specificity into v-Src by mutating one residue, isoleucine 338, to alanine. This position is highly conserved among all kinases in the sense that it is always occupied by either a large hydrophobic residue or threonine. Because of the conservation of this residue and the highly conserved fold of the kinase family, we have attempted to generalize the engineering of all kinases on the basis of our success with v-Src. Although many kinases can be similarly engineered using v-Src as a blueprint, we encountered one kinase, c-Abl, which when mutated, does not display the ability to accept unnatural ATP analogues. To overcome this failure of the engineered c-Abl (T315A) to accept unnatural nucleotides, we developed a new strategy for introducing unnatural nucleotide specificity into kinases. We generated a chimeric kinase in which regions of the kinase domain of c-Abl were swapped with the corresponding regions of v-Src (I338A). Specifically, we engineered two chimeras in which the N-terminal lobe of the SH1 domain of c-Abl was swapped with that of v-Src. These kinase chimeras were found to have the same unnatural nucleotide specificity as that of v-Src (I338A), while retaining the peptide specificity of c-Abl. Thus, these chimeric kinases are suitable for identifying the direct substrates of c-Abl. These engineered chimeric enzymes provide a new strategy for constructing kinases with tailor-made ligand binding properties.

摘要

为了追踪激酶底物靶点,已开发出具有非天然核苷酸特异性和抑制剂敏感性的工程化蛋白激酶。我们首先通过将一个残基异亮氨酸338突变为丙氨酸,将非天然核苷酸特异性引入v-Src。在所有激酶中,这个位置高度保守,因为它总是被一个大的疏水残基或苏氨酸占据。由于这个残基的保守性以及激酶家族高度保守的折叠结构,我们试图在v-Src工程化成功的基础上,对所有激酶进行工程化改造。虽然许多激酶可以以v-Src为蓝本进行类似的工程化改造,但我们遇到了一种激酶c-Abl,当其发生突变时,不具备接受非天然ATP类似物的能力。为了克服工程化的c-Abl(T315A)无法接受非天然核苷酸的问题,我们开发了一种将非天然核苷酸特异性引入激酶的新策略。我们构建了一种嵌合激酶,其中c-Abl激酶结构域的区域与v-Src(I338A)的相应区域进行了交换。具体来说,我们构建了两种嵌合体,其中c-Abl的SH1结构域的N端叶与v-Src的进行了交换。发现这些激酶嵌合体具有与v-Src(I338A)相同的非天然核苷酸特异性,同时保留了c-Abl的肽特异性。因此,这些嵌合激酶适用于鉴定c-Abl的直接底物。这些工程化的嵌合酶为构建具有定制配体结合特性的激酶提供了一种新策略。

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