首页> 外文期刊>Molecular Systems Design & Engineering >Heterogeneous protein co-assemblies with tunable functional domain stoichiometry
【24h】

Heterogeneous protein co-assemblies with tunable functional domain stoichiometry

机译:异构蛋白质co-assemblies可调功能域化学计量学

获取原文
获取原文并翻译 | 示例
           

摘要

In nature, the precise heterogeneous co-assembly of different protein domains gives rise to supramolecular machines that perform complex functions through the co-integrated activity of the individual protein subunits. A synthetic approach capable of mimicking this process would afford access to supramolecular machines with new or improved functional capabilities. Here we show that the distinct peptide strands of a heterotrimeric α-helical coiled-coil (i.e., peptides “A”, “B”, and “C”) can be used as fusion tags for heterogeneous co-assembly of proteins into supramolecular structures with tunable subunit stoichiometry. In particular, we demonstrate that recombinant fusion of A with NanoLuc luciferase (NL-A), B with superfolder green fluorescent protein (sfGFP-B), and C with mRuby (mRuby-C) enables formation of ternary complexes capable of simultaneously emitting blue, green, and red light via sequential bioluminescence and fluorescence resonance energy transfer (BRET/FRET). Fusion of galectin-3 onto the C-terminus of NL-A, sfGFP-B, and mRuby-C endows the ternary complexes with lactose-binding affinity that can be tuned by varying the number of galectin-3 domains integrated into the complex from one to three, while maintaining BRET/FRET function. The modular nature of the fusion protein design, the precise control of domain stoichiometry, and the multiplicity afforded by the three-stranded coiled-coil scaffold provides access to a greater range of subunit combinations than what is possible with heterodimeric coiled-coils used previously. We envision that access to this expanded range of co-integrated protein domain diversity will be advantageous for future development of designer supramolecular machines for therapeutic, diagnostic, and biotechnology applications.
机译:在自然界中,精确的异构co-assembly产生不同的蛋白质域执行复杂的超分子机器通过co-integrated活动功能单独的蛋白质亚基。方法能够模拟这个过程承受访问与新的超分子机器或改进的功能。的不同的肽链heterotrimericα螺旋卷曲螺旋(例如,肽“A”、“B”和“C”)可以用作融合标签的异构co-assembly蛋白质用可调成超分子结构亚基化学计量学。表明重组与融合与superfolder NanoLuc荧光素酶(NL-A), B绿色荧光蛋白(sfGFP-B)和CmRuby (mRuby-C)使三元的形成复合物的能力同时发射通过连续的蓝色、绿色和红色光生物荧光和荧光共振能量转移(BRET /烦恼)。NL-A的糖基,sfGFP-B, mRuby-C赋予lactose-binding的三元配合物亲和力,可以调整不同的数量galectin-3域集成到复杂从1到3,同时保持BRET /烦恼函数。蛋白质设计,精确地控制域化学计量学和提供的多样性三股的卷曲螺旋支架提供了获得更大范围的亚基组合与heterodimeric比什么是可能的coiled-coils之前使用。访问这个co-integrated范围扩大蛋白质域多样性将是有利的未来发展的设计师超分子机器治疗、诊断和生物技术的应用程序。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号