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首页> 外文期刊>The Journal of biological chemistry >The C-terminal peptide of Aquifex aeolicus riboflavin synthase directs encapsulation of native and foreign guests by a cage-forming lumazine synthase
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The C-terminal peptide of Aquifex aeolicus riboflavin synthase directs encapsulation of native and foreign guests by a cage-forming lumazine synthase

机译:Aquifex aeolicus核黄素合酶的C末端肽通过形成笼子的lumazine合酶指导天然和外来客人的包裹

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Encapsulation of specific enzymes in self-assembling protein cages is a hallmark of bacterial compartments that function as counterparts to eukaryotic organelles. The cage-forming enzyme lumazine synthase (LS) from Bacillus subtilis (BsLS), for example, encapsulates riboflavin synthase (BsRS), enabling channeling of lumazine from the site of its generation to the site of its conversion to vitamin B2. Elucidating the molecular mechanisms underlying the assembly of these supramolecular complexes could help inform new approaches for metabolic engineering, nanotechnology, and drug delivery. To that end, we investigated a thermostable LS from Aquifex aeolicus (AaLS) and found that it also forms cage complexes with the cognate riboflavin synthase (AaRS) when both proteins are co-produced in the cytosol of Escherichia coli. A 12-amino acid-long peptide at the C terminus of AaRS serves as a specific localization sequence responsible for targeting the guest to the protein compartment. Sequence comparisons suggested that analogous peptide segments likely direct RS complexation by LS cages in other bacterial species. Covalent fusion of this peptide tag to heterologous guest molecules led to their internalization into AaLS assemblies both in vivo and in vitro, providing a firm foundation for creating tailored biomimetic nanocompartments for medical and biotechnological applications.
机译:自组装蛋白笼中特定酶的包封是细菌隔室的标志,可充当真核细胞器的对应物。例如,来自枯草芽孢杆菌(BsLS)的形成笼子的酶lumazine合酶(LS)封装了核黄素合酶(BsRS),从而使lumazine从其生成位点到其转化为维生素B2的位点得以通道化。阐明这些超分子复合物组装的分子机制可能有助于为代谢工程,纳米技术和药物输送提供新方法。为此,我们研究了来自Aquifex aeolicus(AaLS)的热稳定LS,发现当两种蛋白均在大肠杆菌的细胞质中共同产生时,它也与同源核黄素合酶(AaRS)形成了笼状复合物。在AaRS的C末端有一个12个氨基酸长的肽,是一个特定的定位序列,负责将客人定向到蛋白质区室。序列比较表明,类似的肽段可能通过其他细菌种类的LS笼直接引导RS络合。该肽标签与异源客体分子的共价融合导致它们在体内和体外均被内在化为AaLS组件,为为医学和生物技术应用创造量身定制的仿生纳米隔室提供了坚实的基础。

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