...
首页> 外文期刊>BMC Biochemistry >Structural plasticity of green fluorescent protein to amino acid deletions and fluorescence rescue by folding-enhancing mutations
【24h】

Structural plasticity of green fluorescent protein to amino acid deletions and fluorescence rescue by folding-enhancing mutations

机译:绿色荧光蛋白对氨基酸缺失的结构可塑性和通过折叠增强突变的荧光拯救

获取原文
           

摘要

Green fluorescent protein (GFP) and its derivative fluorescent proteins (FPs) are among the most commonly used reporter systems for studying gene expression and protein interaction in biomedical research. Most commercially available FPs have been optimized for their oligomerization state to prevent potential structural constraints that may interfere with the native function of fused proteins. Other approach to reducing structural constraints may include minimizing the structure of GFPs. Previous studies in an enhanced GFP variant (EGFP) identified a series of deletions that can retain GFP fluorescence. In this study, we interrogated the structural plasticity of a UV-optimized GFP variant (GFPUV) to amino acid deletions, characterized the effects of deletions and explored the feasibility of rescuing the fluorescence of deletion mutants using folding-enhancing mutations. Transposon mutagenesis was used to screen amino acid deletions in GFP that led to fluorescent and nonfluorescent phenotypes. The fluorescent GFP mutants were characterized for their whole-cell fluorescence and fraction soluble. Fluorescent GFP mutants with internal deletions were purified and characterized for their spectral and folding properties. Folding-ehancing mutations were introduced to deletion mutants to rescue their compromised fluorescence. We identified twelve amino acid deletions that can retain the fluorescence of GFPUV. Seven of these deletions are either at the N- or C- terminus, while the other five are located at internal helices or strands. Further analysis suggested that the five internal deletions diminished the efficiency of protein folding and chromophore maturation. Protein expression under hypothermic condition or incorporation of folding-enhancing mutations could rescue the compromised fluorescence of deletion mutants. In addition, we generated dual deletion mutants that can retain GFP fluorescence. Our results suggested that a “size-minimized” GFP may be developed by iterative incorporation of amino acid deletions, followed by fluorescence rescue with folding-enhancing mutations.
机译:绿色荧光蛋白(GFP)及其衍生荧光蛋白(FPs)是在生物医学研究中研究基因表达和蛋白相互作用的最常用的报告基因系统之一。大多数市售FP的低聚状态已得到优化,以防止可能干扰融合蛋白天然功能的潜在结构限制。减少结构约束的其他方法可以包括最小化GFP的结构。以前在增强型GFP变体(EGFP)中的研究确定了一系列可以保留GFP荧光的缺失。在这项研究中,我们审视了紫外线优化的GFP变体(GFPUV)对氨基酸缺失的结构可塑性,表征了缺失的影响,并探讨了使用折叠增强突变来拯救缺失突变体的荧光的可行性。转座子诱变用于筛选GFP中导致荧光和非荧光表型的氨基酸缺失。表征荧光GFP突变体的全细胞荧光和可溶级分。具有内部缺失的荧光GFP突变体被纯化并表征其光谱和折叠特性。将折叠增强突变引入缺失突变体中以挽救其受损的荧光。我们鉴定出可以保留GFPUV荧光的十二个氨基酸缺失。这些缺失中的七个位于N或C末端,而其他五个位于内部螺旋或链中。进一步的分析表明,这五个内部缺失降低了蛋白质折叠和发色团成熟的效率。低温条件下的蛋白质表达或折叠增强突变的掺入可以挽救缺失突变体受损的荧光。另外,我们产生了可以保留GFP荧光的双重缺失突变体。我们的结果表明,可以通过反复整合氨基酸缺失,然后通过折叠增强突变的荧光拯救来开发“最小化”的GFP。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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