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Proteins in Load-Bearing Junctions: The Histidine-Rich Metal-Binding Protein of Mussel Byssus

机译:承重连接处的蛋白质:贻贝组织富含组氨酸的金属结合蛋白

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摘要

Building complex load-bearing scaffolds depends on effective ways of joining functionally different biomacromolecules. The junction between collagen fibers and foamlike adhesive plaques in mussel byssus is robust despite the strikingly dissimilar connected structures. mcfp-4, the matrix protein from this junction, and its presecreted form from the foot tissue of Mytilus californianus were isolated and characterized. mcfp-4 has a mass of ∼93 kDa as determined by MALDI-TOF mass spectrometry. Its composition is dominated by histidine (22 mol %), but levels of lysine, arginine, and aspartate are also significant. A small amount of 3,4-dihydroxyphenyl-L-alanine (2 mol %) can be detected by amino acid analysis and redox cycling assays. The cDNA-deduced sequence of mcfp-4 reveals multiple variants with highly repetitive internal structures, including ∼36 tandemly repeated His-rich decapeptides (e.g., HVHTHRVLHK) in the N-terminal half and 16 somewhat more degenerate aspartate-rich undecapeptides (e.g., DDHVNDIAQTA) in the C-terminal half. Incubation of a synthetic peptide based on the His-rich decapeptide with Fe3+, Co2+, Ni2+, Zn2+, and Cu2+ indicates that only Cu is strongly bound. MALDI-TOF mass spectrometry of the peptide modified with diethyl pyrocarbonate before and after Cu binding suggests that histidine residues dominate Cu binding. In contrast, the aspartate-rich undecapeptides preferentially bind Ca2+. mcfp-4 is strategically positioned to function as a macromolecular bifunctional linker by using metal ions to couple its own His-rich domains to the His-rich termini of the preCOLs. Ca2+ may mediate coupling of the C-terminus to other calcium-binding plaque proteins.
机译:构建复杂的承重支架取决于连接功能不同的生物大分子的有效方法。尽管连接结构明显不同,但贻贝囊中的胶原纤维和泡沫状粘合斑之间的连接牢固。分离并鉴定了mcfp-4(来自该连接点的基质蛋白)及其从加州Mytilus californianus足部组织中分泌的形式。通过MALDI-TOF质谱测定,mcfp-4的质量约为93 kDa。其组成主要由组氨酸(22摩尔%)控制,但赖氨酸,精氨酸和天冬氨酸的含量也很重要。可以通过氨基酸分析和氧化还原循环测定法检测到少量的3,4-二羟基苯基-L-丙氨酸(2摩尔%)。 cDNA推断的mcfp-4序列揭示了多个具有高度重复内部结构的变异体,其中包括在N端一半左右重复串联的36个富含His的十肽(例如HVHTHRVLHK)和16个变性程度更高的富含天冬氨酸的十一肽(例如, DDHVNDIAQTA)在C端的一半。基于富含组氨酸的十肽的合成肽与Fe 3 + ,Co 2 + ,Ni 2 + ,Zn 一起孵育2 + 和Cu 2 + 表示仅Cu牢固结合。铜结合前后用焦碳酸二乙酯修饰的肽的MALDI-TOF质谱分析表明,组氨酸残基占Cu结合的主导。相反,富含天冬氨酸的十一肽优先结合Ca 2 + 。 mcfp-4在战略上定位为通过使用金属离子将其自身的富含His的结构域与preCOL的富含His的末端偶联而充当大分子双功能连接子。 Ca 2 + 可能介导C末端与其他钙结合斑块蛋白的偶联。

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  • 期刊名称 other
  • 作者

    Hua Zhao; J. Herbert Waite;

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  • 年(卷),期 -1(45),47
  • 年度 -1
  • 页码 14223–14231
  • 总页数 23
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