Laboratory of Physical Chemistry and Colloid Science, Wageningen University, Dreijenplein 6, NL-6703 HB Wageningen, The Netherlands.
Biomacromolecules. 2013 Jan 14;14(1):48-55. doi: 10.1021/bm3011775. Epub 2012 Dec 27.
In this report, we study the self-assembly of two silk-elastin-like proteins: one is a diblock S(24)E(40) composed of 24 silk-like (S) repeats and 40 elastin-like (E) repeats; the other is a triblock S(12)C(4)E(40), in which the S and E blocks are separated by a random coil block (C(4)). Upon lowering the pH, the acidic silk-like blocks fold and self-assemble into fibrils by a nucleation-and-growth process. While silk-like polymers without elastin-like blocks form fibrils by heterogeneous nucleation, leading to monodisperse populations, the elastin-like blocks allow for homogeneous nucleation, which gives rise to polydisperse length distributions, as well as a concentration-dependent fibril length. Moreover, the elastin-like blocks introduce temperature sensitivity: at high temperature, the fibrils become sticky and tend to bundle and aggregate in an irreversible manner. Concentrated solutions of S(12)C(4)E(40) form weak gels at low pH that irreversibly lose elasticity in temperature cycling; this is also attributed to fibril aggregation.
在本报告中,我们研究了两种丝弹性蛋白样蛋白的自组装:一种是由 24 个丝重复序列和 40 个弹性蛋白重复序列组成的二嵌段 S(24)E(40);另一种是三嵌段 S(12)C(4)E(40),其中 S 和 E 块由无规卷曲块 (C(4))隔开。在降低 pH 值时,酸性丝状块折叠并通过成核-生长过程自组装成原纤维。虽然没有弹性蛋白样块的丝状聚合物通过异质成核形成原纤维,导致单分散群体,但弹性蛋白样块允许均相成核,从而导致多分散长度分布,以及浓度依赖性原纤维长度。此外,弹性蛋白样块引入了温度敏感性:在高温下,原纤维变得粘稠,并且容易以不可逆转的方式束集和聚集。在低 pH 值下,S(12)C(4)E(40)的浓缩溶液形成弱凝胶,在温度循环中不可逆地失去弹性;这也归因于原纤维聚集。