Centre for Organismal Studies, Department of Molecular Evolution and Genomics, Heidelberg University, 69120, Heidelberg, Germany.
Physical Chemistry of Biosystems, Institute of Physical Chemistry, Heidelberg University, 69120, Heidelberg, Germany.
Sci Rep. 2019 Dec 13;9(1):19116. doi: 10.1038/s41598-019-55655-0.
Nematocysts, the stinging organelles of cnidarians, have remarkable mechanical properties. Hydra nematocyst capsules undergo volume changes of 50% during their explosive exocytosis and withstand osmotic pressures of beyond 100 bar. Recently, two novel protein components building up the nematocyst capsule wall in Hydra were identified. The cnidarian proline-rich protein 1 (CPP-1) characterized by a "rigid" polyproline motif and the elastic Cnidoin possessing a silk-like domain were shown to be part of the capsule structure via short cysteine-rich domains that spontaneously crosslink the proteins via disulfide bonds. In this study, recombinant Cnidoin and CPP-1 are expressed in E. coli and the elastic modulus of spontaneously crosslinked bulk proteins is compared with that of isolated nematocysts. For the fabrication of uniform protein nanofibers by electrospinning, the preparative conditions are systematically optimized. Both fibers remain stable even after rigorous washing and immersion into bulk water owing to the simultaneous crosslinking of cysteine-rich domains. This makes our nanofibers clearly different from other protein nanofibers that are not stable without chemical crosslinkers. Following the quantitative assessment of mechanical properties, the potential of Cnidoin and CPP-1 nanofibers is examined towards the maintenance of human mesenchymal stem cells.
刺细胞是刺胞动物的蜇刺细胞器,具有显著的机械特性。水螅刺细胞囊在其爆发性胞吐过程中经历 50%的体积变化,并能承受超过 100 巴的渗透压。最近,在水螅中鉴定出两种构建刺细胞囊壁的新型蛋白成分。富含脯氨酸的刺胞动物蛋白 1(CPP-1)的特征是具有“刚性”聚脯氨酸基序,而弹性 Cnidoin 具有丝氨酸样结构域,通过短的富含半胱氨酸的结构域被证明是囊结构的一部分,这些结构域通过二硫键自动交联蛋白质。在这项研究中,重组 Cnidoin 和 CPP-1 在大肠杆菌中表达,并比较了自发交联的块状蛋白质的弹性模量与分离的刺细胞的弹性模量。为了通过静电纺丝制备均匀的蛋白质纳米纤维,系统地优化了制备条件。由于富含半胱氨酸的结构域的同时交联,两种纤维即使在经过严格的洗涤和浸入 bulk 水后仍然保持稳定。这使得我们的纳米纤维明显不同于其他没有化学交联剂就不稳定的蛋白质纳米纤维。在对机械性能进行定量评估后,研究了 Cnidoin 和 CPP-1 纳米纤维在维持人类间充质干细胞方面的潜力。