Motta Nascimento Bruno, Nair Nikhil U
Department of Chemical and Biological Engineering, Tufts University, Medford, MA, 02155, USA.
Metab Eng Commun. 2020 Aug 28;11:e00144. doi: 10.1016/j.mec.2020.e00144. eCollection 2020 Dec.
Poly-γ-glutamic acid (PGA) produced by many species is a polymer with many distinct and desirable characteristics. However, the multi-subunit enzymatic complex responsible for its synthesis, PGA Synthetase (PGS), has not been well characterized yet, in native nor in recombinant contexts. Elucidating structural and functional properties are crucial for future engineering efforts aimed at altering the catalytic properties of this enzyme. This study focuses on expressing the enzyme heterologously in the membrane and characterizing localization, orientation, and activity of this heterooligomeric enzyme complex. In , we were able to produce high molecular weight PGA polymers with minimal degradation at titers of approximately 13 mg/L in deep-well microtiter batch cultures. Using fusion proteins, we observed, for the first time, the association and orientation of the different subunits with the inner cell membrane. These results provide fundamental structural information on this poorly studied enzyme complex and will aid future fundamental studies and engineering efforts.
许多物种产生的聚γ-谷氨酸(PGA)是一种具有许多独特且理想特性的聚合物。然而,负责其合成的多亚基酶复合物,即PGA合成酶(PGS),无论是在天然环境还是重组环境中,都尚未得到充分表征。阐明其结构和功能特性对于未来旨在改变该酶催化特性的工程努力至关重要。本研究重点在于在膜中异源表达该酶,并表征这种异源寡聚酶复合物的定位、取向和活性。在深孔微量滴定分批培养中,我们能够以约13毫克/升的滴度生产出降解最少的高分子量PGA聚合物。通过使用融合蛋白,我们首次观察到不同亚基与细胞膜内膜的缔合和取向。这些结果提供了关于这种研究较少的酶复合物的基本结构信息,并将有助于未来的基础研究和工程努力。