Center for Nanospace-confined Chemical Reactions (NCCR) and Department of Chemistry, Pohang University of Science and Technology (POSTECH), Pohang, 37673, South Korea.
Institute for Convergence Research and Education in Advanced Technology (I-CREATE), Yonsei University, Seoul, 03722, South Korea.
Angew Chem Int Ed Engl. 2021 Jul 19;60(30):16337-16342. doi: 10.1002/anie.202103165. Epub 2021 Jun 24.
Nanodevices, harvesting the power of synthetic catalysts and enzymes to perform enantioselective synthesis inside cell, have never been reported. Here, we synthesized round bottom jar-like silica nanostructures (SiJARs) with a chemo-responsive metal-silicate lid. This was isolated as an intermediate structure during highly controlled solid-state nanocrystal-conversion at the arc-section of silica shell. Different catalytic noble metals (Pt, Pd, Ru) were selectively modified on the lid-section through galvanic reactions. And, lid aperture-opening was regulated by mild acidic conditions or intracellular environment which accommodated the metal nanocrystals and enzymes, and in turn created an open-mouth nanoreactor. Distinct from the free enzymes, SiJARs performed asymmetric aldol reactions with high activity and enantioselectivity (yield >99 %, ee=95 %) and also functioned as the artificial catalytic organelles inside living cells. This work bridges the enormous potential of sophisticated nanocrystal-conversion chemistry and advanced platforms for new-to-nature catalysis.
纳米器件利用合成催化剂和酶的能量,在细胞内进行对映选择性合成,这是从未有过的报道。在这里,我们合成了具有化学响应性的金属硅酸盐盖的圆底罐状二氧化硅纳米结构(SiJAR)。这是在二氧化硅壳的弧形段进行高度可控的固态纳米晶转化过程中分离出来的中间结构。通过电化学反应,选择性地在盖段修饰了不同的催化贵金属(Pt、Pd、Ru)。并且,通过温和的酸性条件或细胞内环境来调节盖的开口,从而容纳金属纳米晶和酶,进而创造出一个开口纳米反应器。与游离酶不同,SiJAR 以高活性和对映选择性(产率 >99%,ee=95%)进行不对称羟醛反应,并且还可以作为活细胞内的人工催化细胞器发挥作用。这项工作结合了复杂的纳米晶转化化学和新型天然催化的先进平台的巨大潜力。