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Rubber Elongation Factor (REF) a Major Allergen Component in Hevea brasiliensis Latex Has Amyloid Properties

机译:橡胶延长因子(REF)一个主要过敏原成分在橡胶树乳胶的淀粉样属性

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摘要

REF (Hevb1) and SRPP (Hevb3) are two major components of Hevea brasiliensis latex, well known for their allergenic properties. They are obviously taking part in the biosynthesis of natural rubber, but their exact function is still unclear. They could be involved in defense/stress mechanisms after tapping or directly acting on the isoprenoid biosynthetic pathway. The structure of these two proteins is still not described. In this work, it was discovered that REF has amyloid properties, contrary to SRPP. We investigated their structure by CD, TEM, ATR-FTIR and WAXS and neatly showed the presence of β-sheet organized aggregates for REF, whereas SRPP mainly fold as a helical protein. Both proteins are highly hydrophobic but differ in their interaction with lipid monolayers used to mimic the monomembrane surrounding the rubber particles. Ellipsometry experiments showed that REF seems to penetrate deeply into the monolayer and SRPP only binds to the lipid surface. These results could therefore clarify the role of these two paralogous proteins in latex production, either in the coagulation of natural rubber or in stress-related responses. To our knowledge, this is the first report of an amyloid formed from a plant protein. This suggests also the presence of functional amyloid in the plant kingdom.
机译:REF(Hevb1)和SRPP(Hevb3)是巴西橡胶树胶乳的两个主要成分,以其致敏特性而闻名。它们显然参与了天然橡胶的生物合成,但其确切功能仍不清楚。在敲击或直接作用于类异戊二烯生物合成途径后,它们可能参与防御/应激机制。这两种蛋白质的结构仍未描述。在这项工作中,发现REF具有与SRPP相反的淀粉样蛋白特性。我们通过CD,TEM,ATR-FTIR和WAXS研究了它们的结构,并巧妙地显示了REF的β-折叠有组织的聚集体的存在,而SRPP主要折叠为螺旋蛋白。两种蛋白都具有高度疏水性,但它们与用于模拟橡胶颗粒周围单膜的脂质单层的相互作用不同。椭偏实验表明,REF似乎深深渗透到单层中,而SRPP仅与脂质表面结合。因此,这些结果可以阐明这两种旁系蛋白在乳胶生产中的作用,无论是在天然橡胶的凝结中还是在应力相关的响应中。据我们所知,这是由植物蛋白形成的淀粉样蛋白的首次报道。这表明植物界中也存在功能性淀粉样蛋白。

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