固相合成和表征人唾液施他汀蛋白:一种富含酪氨酸的磷酸钙沉淀磷蛋白抑制剂。

Peptide research Pub Date : 1996-11-01
T L Gururaja, M J Levine
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引用次数: 0

摘要

采用标准固相Fmoc化学方法,首次成功合成了主要由唾液腺分泌的低分子量(m5380 Da. 43个氨基酸残基)富含酪氨酸的酸性磷蛋白。该磷酸化蛋白的合成是使用预成型的丝氨酸蛋白构建块完成的。将合成的磷酸化蛋白与天然分子进行分析和比较,发现其整体特征完全相同,这一点通过包括质谱分析在内的各种分析方法得到证实。通过圆二色光谱对合成的和天然的石蜡蛋白进行分析,发现加入有机共溶剂三氟乙醇(50%,vol/vol)后螺旋度增加,表明存在潜在的两亲螺旋区。对该合成磷酸化蛋白的圆二色性研究和疏水力矩计算表明,该分子在与长聚l -脯氨酸II型片段连接的n端呈两亲螺旋构象,而该片段又与延伸的β链相连。与之前的研究相关。startherin对羟基磷灰石的强结合亲和性似乎主要归因于n端序列,该序列倾向于采用螺旋构象,并提供静电和氢键相互作用,从而抑制其矿化。用化学方法生产这种高度均匀的合成甾体磷脂,可以避免在各种生理条件下进行三级结构研究时遇到的普遍障碍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solid-phase synthesis and characterization of human salivary statherin: a tyrosine-rich phosphoprotein inhibitor of calcium phosphate precipitation.

Human statherin, at low molecular weight (M 5380 Da. 43 amino acid residues) acidic tyrosine-rich phosphoprotein secreted mainly by salivary glands, has been synthesized successfully for the first time following standard solid-phase Fmoc chemistry. Synthesis of this phosphoprotein was accomplished using preformed phosphoserin building blocks. The phosphorylated protein thus synthesized was analyzed and compared with the native molecule and was found to have identical characteristics in its entirety, is evidenced by various analytical methods including mass spectral analysis. Analysis of both the synthetic and native statherin by circular dichroism spectroscopy showed an increase in helicity upon the addition of an organic cosolvent, trifluoroethanol (50%, vol/vol), indicating the presence of potentially amphipathic helical regions. Circular dichroism studies and hydrophobic moment calculations on this synthetic phosphoprotein revealed that the molecule adopts an amphipathic helical conformation at the N-terminus connected to a long poly-L-proline type II segment, which, in turn, is linked to an extended beta-strand. In correlation with previous studies. It appears that the strong binding affinity of statherin for hydroxyapatite can be attributed primarily to the N-terminal sequence, which prefers to adopted helical conformation and provides both electrostatic and hydrogen bonding interactions, thereby inhibiting its mineralization. Production of this highly homogenous synthetic statherin by chemical means may circumvent the prevailing obstacles encountered in conducting its tertiary structural investigations under various physiological conditions.

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