首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Incorporation of short, charged peptide tags affects the temperature responsiveness of positively-charged elastin-like polypeptides
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Incorporation of short, charged peptide tags affects the temperature responsiveness of positively-charged elastin-like polypeptides

机译:结合短,带电的肽标签会影响正电荷的弹性蛋白样多肽的温度响应性

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摘要

Elastin-like polypeptides (ELPs) are recombinant protein domains exhibiting lower critical solution temperature (LCST) behavior. This LCST behavior is controlled not only by intrinsic factors including amino acid composition and polypeptide chain length but also by non-ELP fusion domains. Here, we report that the presence of a composite non-ELP sequence that includes both His and T7 tags or a short Ser-Lys-Gly-Pro-Gly (SKGPG) sequence can dramatically change the LCST behavior of a positively-charged ELP domain. Both the His and T7 tags have been widely used in recombinant protein design to enable affinity chromatography and serve as epitopes for protein detection. The SKGPG sequence has been used to improve the expression of ELPs. Both the composite tag and the SKGPG sequence are <15% of the total length of the ELP fusion proteins. Despite the small size of the composite tag, its incorporation imparted pH-sensitive LCST behavior to the positively-charged ELP fusion protein. This pH sensitivity was not observed with the incorporation of the SKGPG sequence. The pH sensitivity results from both electrostatic and hydrophobic interactions between the composite tag and the positively-charged ELP domain. The hydrophobicity of the composite tag also alters the ELP interaction with Hofmeister salts by changing the overall hydrophobicity of the fusion protein. Our results suggest that incorporation of short tag sequences should be considered when designing temperature-responsive ELPs and provide insights into utilizing both electrostatic and hydrophobic interactions to design temperature-responsive recombinant proteins as well as synthetic polymers.
机译:类似素状多肽(ELP)是具有表现出较低的临界溶液温度(LCST)行为的重组蛋白质结构域。该LCST行为不仅受到包括氨基酸组成和多肽链长的内在因子,而且由非ELP融合结构域同样控制。在这里,我们报告说,包括HIS和T7标签或短的SER-LYS-GLY-PLY-GLY(SKGPG)序列的复合非ELP序列的存在可以显着改变带正电荷的ELP域的LCST行为。他和T7标签已广泛用于重组蛋白设计,以使亲和层析能够作为蛋白质检测的表位。 SKGPG序列已被用于改善ELP的表达。复合标签和SKGPG序列均为ELP融合蛋白总长度的15%。尽管复合标签的尺寸小,但其将pH敏感的LCST行为赋予正电荷的ELP融合蛋白。利用SKGPG序列未观察到该pH敏感性。 pH敏感性来自复合标签和带正电的ELP结构域之间的静电和疏水相互作用。通过改变融合蛋白的整体疏水性,复合标签的疏水性也改变了与Hofmeister盐的ELP相互作用。我们的研究结果表明,在设计温度响应ELP时,应考虑掺入短标记序列,并在利用静电和疏水相互作用以设计温度响应重组蛋白以及合成聚合物的静电和疏水相互作用。

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