Department of Physics, Bernal Institute, University of Limerick, V94 T9PX, Ireland.
Nanoscale. 2018 May 24;10(20):9653-9663. doi: 10.1039/c8nr01634h.
Collagen piezoelectricity has been the focus of a large number of experimental and theoretical studies for over fifty years. Less is known about the piezoelectric properties of its building blocks, in particular but not limited to, proline and hydroxyproline. Spurred by the recent upsurge of interest in piezoelectricity in organic crystals including our own report of unprecedentedly high piezoelectricity in amino acid glycine, we predict and measure the piezoelectric properties of collagen subcomponents in single crystalline forms and the collagen-like alanine-hydroxyproline-glycine trimer peptide. We map the modulation of piezoelectric charge constants in collagen building blocks as the crystal symmetry is lowered and the molecule size increases, finding strong evidence for amino acid-level barcoding of collagen piezoelectricity that can in turn be tuned using very simple chemistry. The simple addition of an -OH group can increase piezoelectric constants by up to two orders of magnitude (d25 = 25 ± 5 pC N-1) as measured in Y-cut hydroxyproline crystals. The value is similar to that obtained from thermoelectrically poled commercial polyvinylidene di fluoride (PVDF) films. Overall, our findings support a simple block by block approach in which first principles calculations can guide the understanding and re-engineering of piezoelectric biomolecules.
胶原蛋白的压电性是五十多年来大量实验和理论研究的焦点。关于其结构单元的压电特性,人们知之甚少,特别是脯氨酸和羟脯氨酸,但也不仅限于此。最近,人们对有机晶体中的压电性产生了浓厚的兴趣,包括我们自己报告的在氨基酸甘氨酸中发现了前所未有的高压电性,这激发了我们对胶原蛋白亚基在单晶形式和类似胶原蛋白的丙氨酸-羟脯氨酸-甘氨酸三肽中的压电性能进行预测和测量。我们研究了胶原蛋白结构单元的压电电荷常数随晶体对称性降低和分子尺寸增加的调制情况,发现了胶原蛋白压电性的氨基酸级条码的有力证据,而这种条码可以通过非常简单的化学方法进行调整。如在 Y 切羟脯氨酸晶体中测量到的,简单地添加一个-OH 基团可以将压电常数提高多达两个数量级(d25 = 25 ± 5 pC N-1)。这个值与热电极化的商用聚偏二氟乙烯(PVDF)薄膜的测量值相似。总的来说,我们的研究结果支持一种简单的积木式方法,其中第一性原理计算可以指导对压电生物分子的理解和重新设计。