Centre for Protolife Research and Centre for Organized Matter Chemistry, School of Chemistry, University of Bristol, Bristol, BS8 1TS, UK.
Angew Chem Int Ed Engl. 2019 Jul 1;58(27):9120-9124. doi: 10.1002/anie.201903756. Epub 2019 May 22.
The integration of molecularly crowded microenvironments into membrane-enclosed protocell models represents a step towards more realistic representations of cellular structure and organization. Herein, the membrane diffusion-mediated nucleation of either negatively or positively charged coacervate microdroplets within the aqueous lumen of individual proteinosomes is used to prepare nested hybrid protocells with spatially organized and chemically coupled enzyme activities. The location and reconfiguration of the entrapped droplets are regulated by tuning the electrostatic interactions between the encapsulated coacervate and surrounding negatively charged proteinosome membrane. As a consequence, alternative modes of a cascade reaction involving membrane- and coacervate-segregated enzymes can be implemented within the coacervate-in-proteinosome protocells.
将分子拥挤的微环境整合到膜封闭的原细胞模型中,代表了朝着更真实地再现细胞结构和组织迈出的一步。在此,通过膜扩散介导的在单个蛋白囊泡的水腔中的带负电或带正电的凝聚体微滴的成核作用,用于制备具有空间组织和化学偶联酶活性的嵌套混合原细胞。通过调节包封的凝聚体与周围带负电荷的蛋白囊泡膜之间的静电相互作用,可以调节包埋液滴的位置和重排。结果,可以在凝聚体-蛋白囊泡原细胞内实现涉及膜和凝聚体分离酶的级联反应的替代模式。