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首页> 外文期刊>The Biochemical Journal >SECONDARY STRUCTURE AND BIOPHYSICAL ACTIVITY OF SYNTHETIC ANALOGUES OF THE PULMONARY SURFACTANT POLYPEPTIDE SP-C
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SECONDARY STRUCTURE AND BIOPHYSICAL ACTIVITY OF SYNTHETIC ANALOGUES OF THE PULMONARY SURFACTANT POLYPEPTIDE SP-C

机译:肺表面活性剂多肽SP-C的合成类似物的二级结构和生物物理活性

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摘要

Native pulmonary-surfactant-associated lipopolypeptide SP-C, its chemically depalmitoylated form and several synthetic analogues lacking the palmitoylcysteine residues were analysed for secondary structure in phospholipid micelles and for biophysical activity in 1,2-dipalmitoyl-sn-glycero-3-phosphocholine/phosphatidylglycerol/palmitic acid (68:22:9, by wt.). Compared with the native molecule, with the entire poly-valyl part in a known alpha-helical conformation, depalmitoylated SP-C was found to be still mainly alpha-helical, but with an approx. 20% decrease in the helical content. A synthetic hybrid polypeptide where the entire poly-valyl alpha-helical part of native SP-C had been replaced with the amino acid sequence of a transmembrane helix of bacteriorhodopsin is also predominantly alpha-helical, In contrast, synthetic SP-C analogues lacking only the palmitoyl groups, by replacement of the palmitoylcysteine residues with cysteine, phenylalanine or serine, or lacking the positively charged amino acids by replacement with alanine, are considerably less alpha-helical than both native and depalmitoylated SP-C. The data indicate that the SP-C palmitoyl groups are important for maintenance of the alpha-helical conformation in parts of the polypeptide, and that the poly-valyl alpha-helical conformation is not fully formed in synthetic SP-C polypeptides. Furthermore, the helical structure of both native and depalmitoylated SP-C in dodecylphosphocholine micelles is very resistant to thermal denaturation, exhibiting ordered structure at 90 degrees C. The alpha-helical content grossly parallels the peptide-induced acceleration of the spreading of phospholipids at an air/water interface and the increase of surface pressure. The data suggest that the alpha-helical conformation itself, rather than just the covalent structure, is of prime importance for the biological function of synthetic pulmonary-surfactant peptides.
机译:分析了天然肺表面活性剂相关的脂多肽SP-C,其化学去棕榈酰化形式和几种缺乏棕榈酰半胱氨酸残基的合成类似物的磷脂微团二级结构以及1,2-二棕榈酰-sn-甘油-3-磷酸胆碱/磷脂酰甘油/棕榈酸(68:22:9,按重量计)。与天然分子相比,具有已知α-螺旋构象的整个聚戊二烯部分,去棕榈酰化的SP-C仍主要是α-螺旋,但是具有约。螺旋含量降低20%。合成的杂合多肽,其中天然SP-C的整个多戊基α-螺旋部分已被细菌视紫红质的跨膜螺旋的氨基酸序列取代,而α-螺旋则是主要的。相反,合成SP-C类似物仅缺少通过用半胱氨酸,苯丙氨酸或丝氨酸代替棕榈酰半胱氨酸残基,或者通过用丙氨酸代替而缺少带正电荷的氨基酸,棕榈酰基的α-螺旋比天然的和去棕榈酰的SP-C少得多。数据表明SP-C棕榈酰基对于维持多肽的部分中的α-螺旋构象很重要,并且在合成的SP-C多肽中未完全形成多戊基α-螺旋构象。此外,十二烷基磷酸胆碱胶束中的天然和去棕榈酸酯化的SP-C的螺旋结构都非常抗热变性,在90°C时显示有序结构。α-螺旋含量大致与肽诱导的磷脂在细胞中的铺展加速相平行。空气/水界面和表面压力的增加。数据表明,α-螺旋构象本身,而不只是共价结构,对于合成的肺表面活性剂肽的生物学功能至关重要。

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