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用于亮氨酸拉链稳定性和二聚化特异性的热力学标度:e和g螺旋间相互作用

A thermodynamic scale for leucine zipper stability and dimerization specificity: e and g interhelical interactions.

作者信息

Krylov D, Mikhailenko I, Vinson C

机构信息

Laboratory of Biochemistry, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892.

出版信息

EMBO J. 1994 Jun 15;13(12):2849-61. doi: 10.1002/j.1460-2075.1994.tb06579.x.

Abstract

The leucine zipper is a dimeric coiled-coil protein structure composed of two amphipathic alpha-helices with the hydrophobic surfaces interacting to create the dimer interface. This structure has been found to mediate the dimerization of two abundant classes of DNA binding proteins: the bZIP and bHLH-Zip proteins. Several workers have reported that amino acids in the e and g positions of the coiled coil can modulate dimerization stability and specificity. Using the bZIP protein VBP as a host molecule, we report a thermodynamic scale (delta delta G) for 27 interhelical interactions in 35 proteins between amino acids in the g and the following e positions (g<==>e') of a leucine zipper coiled coil. We have examined the four commonly occurring amino acids in the e and g positions of bZIP proteins, lysine (K), arginine (R), glutamine (Q), glutamic acid (E), as well as the only other remaining charged amino acid aspartic acid (D), and finally alanine (A) as a reference amino acid. These results indicate that E<==>R is the most stable interhelical pair, being 0.35 kcal/mol more stable than E<==>K. A thermodynamic cycle analysis shows that the E<==>R pair is 1.33 kcal/mol more stable than A<==>A with -1.14 kcal/mol of coupling energy (delta delta Gint) coming from the interaction of E with R. The E<==>K coupling energy is only -0.14 kcal/mol. E interacts with more specificity than Q. The R<==>R pair is less stable than the K<==>K by 0.24 kcal/mol. R interacts with more specificity than K. Q forms more stable pairs with the basic amino acids K and R rather than with E. Changing amino acids in the e position to A creates bZIP proteins that form tetramers.

摘要

亮氨酸拉链是一种二聚体卷曲螺旋蛋白结构,由两个两亲性α螺旋组成,其疏水表面相互作用形成二聚体界面。已发现这种结构介导两类丰富的DNA结合蛋白的二聚化:碱性亮氨酸拉链(bZIP)蛋白和碱性螺旋-环-螺旋-拉链(bHLH-Zip)蛋白。几位研究人员报告称,卷曲螺旋的e位和g位氨基酸可调节二聚化稳定性和特异性。我们以bZIP蛋白VBP作为宿主分子,报告了亮氨酸拉链卷曲螺旋中g位氨基酸与后续e位(g<==>e')之间35种蛋白质中27种螺旋间相互作用的热力学尺度(ΔΔG)。我们研究了bZIP蛋白e位和g位常见的四种氨基酸,赖氨酸(K)、精氨酸(R)、谷氨酰胺(Q)、谷氨酸(E),以及另一种带电荷的氨基酸天冬氨酸(D),最后以丙氨酸(A)作为参考氨基酸。这些结果表明,E<==>R是最稳定的螺旋间配对,比E<==>K稳定0.35千卡/摩尔。热力学循环分析表明,E<==>R配对比A<==>A稳定1.33千卡/摩尔,耦合能(ΔΔGint)为-1.14千卡/摩尔,来自E与R的相互作用。E<==>K耦合能仅为-0.14千卡/摩尔。E的相互作用比Q更具特异性。R<==>R配对比K<==>K不稳定0.24千卡/摩尔。R的相互作用比K更具特异性。Q与碱性氨基酸K和R形成的配对比与E形成的更稳定。将e位氨基酸替换为A会产生形成四聚体的bZIP蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4079/395166/48f0f732ab69/emboj00060-0122-a.jpg

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