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首页> 外文期刊>Scientific reports. >Atroposelective antibodies as a designed protein scaffold for artificial metalloenzymes
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Atroposelective antibodies as a designed protein scaffold for artificial metalloenzymes

机译:AtropoSelective抗体作为用于人造金属酶的设计蛋白质支架

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Design and engineering of protein scaffolds are crucial to create artificial metalloenzymes. Herein we report the first example of C-C bond formation catalyzed by artificial metalloenzymes, which consist of monoclonal antibodies (mAbs) and Csub2/sub symmetric metal catalysts. Prepared as a tailored protein scaffold for a binaphthyl derivative (BN), mAbs bind metal catalysts bearing a 1,1'-bi-isoquinoline (BIQ) ligand to yield artificial metalloenzymes. These artificial metalloenzymes catalyze the Friedel-Crafts alkylation?reaction. In the presence of mAb R44E1, the reaction proceeds with 88%?ee. The reaction catalyzed by Cu-catalyst incorporated into the binding?site of mAb R44E1 is found to show excellent enantioselectivity with 99% ee. The protein environment also enables the use of BIQ-based catalysts as asymmetric catalysts for the first time.
机译:蛋白质支架的设计和工程至关重要,以创造人造金属酶。在此,我们报告了通过人造金属酶催化的C-C键形成的第一个实施例,其由单克隆抗体(mAb)和C 2 /亚>对称金属催化剂组成。制备为甲基萘基衍生物(BN)的定制蛋白质支架,MAb结合携带1,1'-Bi-Isoquinoline(BIQ)配体的金属催化剂,得到人工金属酶。这些人工金属酶酶催化Friedel-Crafts烷基化α-反应。在MAB R 4 4E1的存在下,反应与88%η进行。 Cu-催化剂催化到结合中的反应催化在结合α中,发现MAB R44E1的位点,表现出与99%EE的优异对映选择性。蛋白质环境也使得能够首次使用基于BIQ的催化剂作为不对称催化剂。

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