Schnitzer Tobias, Rackl Jonas W, Wennemers Helma
Laboratory of Organic Chemistry, ETH Zürich Vladimir-Prelog-Weg 3 8093 Zürich Switzerland
Chem Sci. 2022 Jun 14;13(31):8963-8967. doi: 10.1039/d2sc02044k. eCollection 2022 Aug 10.
Many stereoselective peptide catalysts have been established. They consist, like nature's catalysts, of amino acids but have significantly lower molecular weights than enzymes. Whereas enzymes operate with exquisite chemoselectivity in complex biological environments, peptide catalysts are used in pure organic solvents and at higher concentrations. Can a peptide catalyst exhibit chemoselectivity reminiscent of enzymes? Here, we investigated the properties of tripeptide catalysts in complex mixtures in hydrophobic and aqueous solvents. We challenged the catalysts with biomolecules bearing functional groups that could interfere by coordination or reaction with the peptide, the substrates, or intermediates. H-dPro-αMePro-Glu-NHCH emerged through tailoring of the / ratio of the tertiary amide as a conformationally well-defined tripeptide that catalyzes C-C bond formations with high reactivity and stereoselectivity - regardless of the solvent and compound composition. The chemoselectivity of the tripeptide is so high that it even catalyzes reactions in cell lysates. The findings provoke the question of the potential role of peptide catalysis in nature and during the evolution of enzymes.
许多立体选择性肽催化剂已经被开发出来。它们与天然催化剂一样,由氨基酸组成,但分子量比酶低得多。酶在复杂的生物环境中具有出色的化学选择性,而肽催化剂则用于纯有机溶剂中且浓度较高。肽催化剂能否表现出类似于酶的化学选择性呢?在这里,我们研究了三肽催化剂在疏水和水性溶剂的复杂混合物中的性质。我们用带有官能团的生物分子挑战这些催化剂,这些官能团可能通过与肽、底物或中间体配位或反应而产生干扰。通过调整叔酰胺的/比例,H-dPro-αMePro-Glu-NHCH成为一种构象明确的三肽,它能以高反应性和立体选择性催化碳-碳键的形成,而不受溶剂和化合物组成的影响。这种三肽的化学选择性非常高,甚至能在细胞裂解物中催化反应。这些发现引发了关于肽催化在自然界和酶的进化过程中潜在作用的问题。