首页> 外文期刊>Journal of industrial microbiology & biotechnology >Self-aggregation of a recombinant form of the propeptide NH(2)-terminal of the precursor of pulmonary surfactant protein SP-B: a conformational study.
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Self-aggregation of a recombinant form of the propeptide NH(2)-terminal of the precursor of pulmonary surfactant protein SP-B: a conformational study.

机译:肺表面活性剂蛋白SP-B前体的前肽NH(2)末端重组形式的自聚集:构象研究。

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摘要

A recombinant form of the peptide N-terminally positioned from proSP-B (SP-B(N)) has been produced in Escherichia coli as fusion with the Maltose Binding Protein, separated from it by Factor Xa cleavage and purified thereafter. This protein module is thought to control assembly of mature SP-B, a protein essential for respiration, in pulmonary surfactant as it progress through the progressively acidified secretory pathway of pneumocytes. Self-aggregation studies of the recombinant propeptide have been carried out as the pH of the medium evolved from neutral to moderately acid, again to neutral and finally basic. The profile of aggregation versus subsequent changes in pH showed differences depending on the ionic strength of the medium, low or moderate, and the presence of additives such as L: -arginine (a known aggregation suppressor) and Ficoll 70 (a macromolecular crowder). Circular dichroism studies of SP-B(N) samples along the aggregation process showed a decrease in alpha-helical content and a concomitant increase in beta-sheet. Intrinsic fluorescence emission of SP-B(N) was dominated by the emission of Trp residues in neutral medium, being its emission maximum shifted to red at low pH, suggesting that the protein undergoes a pH-dependent conformational change that increases the exposure of their Trp to the environment. A marked increase in the fluorescence emission of the extrinsic probe bis-ANS indicated the exposure of hydrophobic regions of SP-B(N) at pH 5. The fluorescence of bis-ANS decreased slightly at low ionic strength, but to a great extent at moderate ionic strength when the pH was reversed to neutrality, suggesting that self-aggregation properties of the SP-B(N) module could be tightly modulated by the conditions of pH and the ionic environment encountered by pulmonary surfactant during assembly and secretion.
机译:在大肠埃希氏菌中已经产生了与proSP-B N-末端定位的肽的重组形式(SP-B(N)),与麦芽糖结合蛋白融合,并通过Xa因子裂解与之分离,然后纯化。该蛋白质模块被认为可以控制成熟的SP-B(一种呼吸必需的蛋白质)在肺表面活性剂中的组装,因为它通过肺细胞的逐渐酸化的分泌途径而进展。重组前肽的自聚集研究已经进行,因为培养基的pH值从中性变为中度酸性,再次变为中性,最后变为碱性。聚集的概况与随后的pH变化显示出差异,这取决于中等,低或中等的离子强度,以及添加剂的存在,例如L:-精氨酸(已知的聚集抑制剂)和Ficoll 70(大分子拥挤剂)。 SP-B(N)样品沿聚集过程的圆二色性研究表明,α-螺旋含量降低,β-片层随之增加。 SP-B(N)的内在荧光发射主要由中性介质中的Trp残基发出,在低pH下其最大发射变为红色,表明该蛋白质经历了pH依赖的构象变化,从而增加了其暴露的程度。 Trp到环境。外在探针bis-ANS的荧光发射显着增加表明SP-B(N)的疏水区域在pH 5下暴露。bis-ANS的荧光在低离子强度下略有下降,但在80℃下有很大程度的下降。当pH值恢复到中性时,离子强度适中,这表明SP-B(N)模块的自聚集特性可能会受到pH条件和在组装和分泌过程中肺表面活性剂遇到的离子环境的严格调节。

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