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Identification and reconstitution of the rubber biosynthetic machinery on rubber particles from Hevea brasiliensis

机译:巴西橡胶树橡胶颗粒上橡胶生物合成机械的鉴定与重构

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摘要

Natural rubber (NR) is stored in latex as rubber particles (RPs), rubber molecules surrounded by a lipid monolayer. Rubber transferase (RTase), the enzyme responsible for NR biosynthesis, is believed to be a member of the cis-prenyltransferase (cPT) family. However, none of the recombinant cPTs have shown RTase activity independently. We show that HRT1, a cPT from Heveabrasiliensis, exhibits distinct RTase activity in vitro only when it is introduced on detergent-washed HeveaRPs (WRPs) by a cell-free translation-coupled system. Using this system, a heterologous cPT from Lactucasativa also exhibited RTase activity, indicating proper introduction of cPT on RP is the key to reconstitute active RTase. RP proteomics and interaction network analyses revealed the formation of the protein complex consisting of HRT1, rubber elongation factor (REF) and HRT1-REF BRIDGING PROTEIN. The RTase activity enhancement observed for the complex assembled on WRPs indicates the HRT1-containing complex functions as the NR biosynthetic machinery.>DOI:
机译:天然橡胶(NR)以橡胶颗粒(RPs)的形式存储在胶乳中,橡胶颗粒被脂质单分子膜包围。橡胶转移酶(RTase)是负责NR生物合成的酶,被认为是顺式戊二烯基转移酶(cPT)家族的成员。但是,没有重组cPTs独立显示RTase活性。我们显示,HRT1,来自Heveabrasiliensis的cPT,仅当其通过无细胞翻译偶联系统引入去污剂洗涤的HeveaRPs(WRPs)时,才在体外表现出独特的RTase活性。使用该系统,来自乳杆菌的异源cPT也表现出RTase活性,表明在RP上正确导入cPT是重组活性RTase的关键。 RP蛋白质组学和相互作用网络分析揭示了由HRT1,橡胶延伸因子(REF)和HRT1-REF桥蛋白组成的蛋白质复合物的形成。在WRP上组装的复合物观察到的RTase活性增强表明,含有HRT1的复合物起着NR生物合成机制的作用。> DOI:

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