Leveson-Gower Reuben B, Tiessler-Sala Laura, Rozeboom Henriette J, Thunnissen Andy-Mark W H, Maréchal Jean-Didier, Roelfes Gerard
Stratingh Institute for Chemistry, University of Groningen, 9747AG Groningen, The Netherlands.
Insilichem, Departament de Química, Universitat Autònoma de Barcelona, 08193 Cerdanyola del Vallès, Spain.
ACS Catal. 2025 Jan 13;15(3):1544-1552. doi: 10.1021/acscatal.4c06409. eCollection 2025 Feb 7.
The evolution of a promiscuous enzyme for its various activities often results in catalytically specialized variants. This is an important natural mechanism to ensure the proper functioning of natural metabolic networks. It also acts as both a curse and blessing for enzyme engineers, where enzymes that have undergone directed evolution may exhibit exquisite selectivity at the expense of a diminished overall catalytic repertoire. We previously performed two independent directed evolution campaigns on a promiscuous designer enzyme that leverages the unique properties of a noncanonical amino acid (ncAA) -aminophenylalanine (pAF) as catalytic residue, resulting in two evolved variants which are both catalytically specialized. Here, we combine mutagenesis, crystallography, and computation to reveal the molecular basis of the specialization phenomenon. In one evolved variant, an unexpected change in quaternary structure biases substrate dynamics to promote enantioselective catalysis, while the other demonstrates synergistic cooperation between natural side chains and the pAF residue to form semisynthetic catalytic machinery.
一种具有多种活性的多用途酶的进化通常会产生催化专一性的变体。这是确保天然代谢网络正常运作的重要自然机制。它对酶工程师来说既是诅咒也是福音,经过定向进化的酶可能会表现出极高的选择性,但代价是整体催化功能有所减少。我们之前对一种利用非天然氨基酸(ncAA)——对氨基苯丙氨酸(pAF)作为催化残基的独特性质的多用途设计酶进行了两次独立的定向进化实验,得到了两个催化专一性的进化变体。在这里,我们结合诱变、晶体学和计算方法来揭示这种专一化现象的分子基础。在一个进化变体中,四级结构的意外变化使底物动力学发生偏差,从而促进对映选择性催化,而另一个变体则展示了天然侧链与pAF残基之间的协同合作,形成了半合成催化机制。