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残基特异性脯氨酸类似物在荧光蛋白中的交换:骨架的“分子手术”如何影响折叠和稳定性。

Residue-Specific Exchange of Proline by Proline Analogs in Fluorescent Proteins: How "Molecular Surgery" of the Backbone Affects Folding and Stability.

机构信息

Institute of Chemistry, Technische Universität Berlin.

Department of Chemistry, University of Manitoba.

出版信息

J Vis Exp. 2022 Feb 3(180). doi: 10.3791/63320.

Abstract

Replacement of proline (Pro) residues in proteins by the traditional site-directed mutagenesis by any of the remaining 19 canonical amino acids is often detrimental to protein folding and, in particular, chromophore maturation in green fluorescent proteins and related variants. A reasonable alternative is to manipulate the translation of the protein so that all Pro residues are replaced residue-specifically by analogs, a method known as selective pressure incorporation (SPI). The built-in chemical modifications can be used as a kind of "molecular surgery" to finely dissect measurable changes or even rationally manipulate different protein properties. Here, the study demonstrates the usefulness of the SPI method to study the role of prolines in the organization of the typical β-barrel structure of spectral variants of the green fluorescent protein (GFP) with 10-15 prolines in their sequence: enhanced green fluorescent protein (EGFP), NowGFP, and KillerOrange. Pro residues are present in connecting sections between individual β-strands and constitute the closing lids of the barrel scaffold, thus being responsible for insulation of the chromophore from water, i.e., fluorescence properties. Selective pressure incorporation experiments with (4R)-fluoroproline (R-Flp), (4S)-fluoroproline (S-Flp), 4,4-difluoroproline (Dfp), and 3,4-dehydroproline (Dhp) were performed using a proline-auxotrophic E. coli strain as expression host. We found that fluorescent proteins with S-Flp and Dhp are active (i.e., fluorescent), while the other two analogs (Dfp and R-Flp) produced dysfunctional, misfolded proteins. Inspection of UV-Vis absorption and fluorescence emission profiles showed few characteristic alterations in the proteins containing Pro analogs. Examination of the folding kinetic profiles in EGFP variants showed an accelerated refolding process in the presence of S-Flp, while the process was similar to wild-type in the protein containing Dhp. This study showcases the capacity of the SPI method to produce subtle modifications of protein residues at an atomic level ("molecular surgery"), which can be adopted for the study of other proteins of interest. It illustrates the outcomes of proline replacements with close chemical analogs on the folding and spectroscopic properties in the class of β-barrel fluorescent proteins.

摘要

用任何 19 种常见氨基酸通过传统的定点突变来取代蛋白质中的脯氨酸(Pro)残基,通常会对蛋白质折叠产生不利影响,特别是对绿色荧光蛋白及其相关变体中的生色团成熟产生不利影响。一种合理的替代方法是操纵蛋白质的翻译,使所有 Pro 残基都被特定的类似物取代,这种方法称为选择性压力掺入(SPI)。内置的化学修饰可以用作一种“分子手术”,精细剖析可测量的变化,甚至可以合理地操纵不同的蛋白质特性。在这里,该研究证明了 SPI 方法在研究 Pro 残基在绿色荧光蛋白(GFP)光谱变体的典型β-桶结构组织中的作用的有用性,这些变体的序列中含有 10-15 个 Pro 残基:增强型绿色荧光蛋白(EGFP)、NowGFP 和 KillerOrange。Pro 残基存在于单个β-链之间的连接部分,构成桶支架的封闭盖,从而负责将生色团与水隔离,即荧光特性。使用脯氨酸营养缺陷型大肠杆菌菌株作为表达宿主进行了(4R)-氟脯氨酸(R-Flp)、(4S)-氟脯氨酸(S-Flp)、4,4-二氟脯氨酸(Dfp)和 3,4-脱氢脯氨酸(Dhp)的选择性压力掺入实验。我们发现,含有 S-Flp 和 Dhp 的荧光蛋白是有活性的(即荧光),而其他两种类似物(Dfp 和 R-Flp)则产生功能失调、错误折叠的蛋白质。对含有 Pro 类似物的蛋白质的紫外-可见吸收和荧光发射谱的检查显示出很少的特征改变。在 EGFP 变体的折叠动力学谱的检查表明,在存在 S-Flp 的情况下,折叠过程加速,而在含有 Dhp 的蛋白质中,该过程与野生型相似。该研究展示了 SPI 方法在原子水平上产生蛋白质残基细微修饰的能力(“分子手术”),可用于研究其他感兴趣的蛋白质。它说明了用化学类似物取代 Pro 残基对β-桶荧光蛋白类的折叠和光谱特性的影响。

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