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Thermodynamic Roles of Basic Amino Acids in Statherin Recognition of Hydroxyapatite

机译:碱性氨基酸在羟基磷灰石鉴定中的碱性氨基酸的热力学作用

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摘要

Salivary statherin is a highly acidic, 43 amino acid residue protein that functions as an inhibitor of primary and secondary crystallization of the biomineral hydroxyapatite. The acidic domain at the N-terminus was previously shown to be important in the binding of statherin to hydroxyapatite surfaces. This acidic segment is followed by a basic segment whose role is unclear. In this study, the role of the basic amino acids in the hydroxyapatite adsorption thermodynamics has been determined using isothermal titration calorimetry and equilibrium adsorption isotherm analysis. Single point mutations of the basic side chains to alanine lowered the binding affinity to the surface but did not perturb the maximal surface coverage and the adsorption enthalpy. The structural and dynamic properties of the single point mutants as characterized by solid-state NMR techniques were not altered either. Simultaneous replacement of all four basic amino acids with alanine lowered the adsorption equilibrium constant by 5-fold and the maximal surface coverage by nearly 2-fold. The initial exothermic phase of adsorption exhibited by native statherin is preserved in this mutant, along with the alpha-helical structure and the dynamic properties of the N-terminal domain. These results help to refine the two binding site model of statherin adsorption proposed earlier in our study of wild-type statherin (Goobes, R., Goobes, G., Campbell, C.T., and Stayton, P.S. (2006) Biochemistry 45, 5576-5586). The basic charges function to reduce protein-protein charge repulsion on the HAP surface, and in their absence, there is a considerable decrease in statherin packing density on the surface at binding saturation.
机译:唾液测定素是一种高度酸性的43个氨基酸残基蛋白,其用作生物霉素羟基磷灰石的初级和二次结晶的抑制剂。先前,N-末端的酸性结构域在羟基粘蛋白对羟基磷灰石表面的结合中表明是重要的。该酸性段之后是作用不明朗的基本段。在该研究中,使用等温滴定热量测定和平衡吸附等温线测定,基本氨基酸在羟基磷灰石吸附热力学中的作用。基本侧链对丙氨酸的单点突变降低了对表面的结合亲和力,但没有扰乱最大表面覆盖和吸附焓。单点突变体的结构和动态性质,其特征在于固态NMR技术也没有改变。用丙氨酸同时置换所有四种碱性氨基酸将吸附平衡恒定降低5倍,最大表面覆盖率近2倍。本突变体在该突变体中呈现出天然法蛋白呈现的初始放热阶段,以及N-末端结构域的α-螺旋结构和动态性质。这些结果有助于改善我们对野生型静脉素的研究(Goobes,R.,Goobes,G.,Campbell,CT和vistton,PS(2006)生物化学45,5576 - 5586)。基本充电功能可以减少在HAP表面上的蛋白质 - 蛋白质电荷排斥,并且在其缺失中,在结合饱和度下表面上的桑椹蛋白填料密度大大降低。

著录项

  • 来源
    《Biochemistry》 |2007年第16期|共9页
  • 作者单位

    Departments of Bioengineering and Chemistry University of Washington Seattle Washington 98195 and Pacific Northwest National Laboratory Richland Washington 99352;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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