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An E. coli over-expression system for multiply-phosphorylated proteins and its use in a study of calcium phosphate sequestration by novel recombinant phosphopeptides

机译:一种用于多磷酸化蛋白的大肠杆菌过表达系统及其在新型重组磷酸肽螯合磷酸钙的研究中的应用

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摘要

Phosphoproteins and phosphopeptides were expressed by E. coli to give yields of 30-200 mg of purified protein per litre with an average degree of phosphorylation at multiple sites of 61-83%. The method employed two compatible cohabiting plasmids having low and high copy number, expressing a protein kinase and, more abundantly, the substrate (poly)peptide, respectively. It was used to phosphorylate recombinant β-casein or osteopontin at multiple casein kinase-2 sites. Two constructs were designed to produce shorter peptides containing one or more clusters of phosphorylation sites resembling the phosphate centres of caseins. In the first, a 53-residue 6-His tagged phosphopeptide was expressed at a 5-fold higher molar yield. The second had multiple tandem repeats of a tryptic phosphopeptide sequence to give a similar increase in efficiency. Each recombinant phosphopeptide was purified (30-100 mg) and small-angle X-ray scattering measurements showed that they, like certain casein and osteopontin phosphopeptides, sequester amorphous calcium phosphate to form calcium phosphate nanoclusters. In principle, the method can provide novel phosphopeptides for the control of biocalcification or be adapted for use with other kinases and cognate proteins or peptides to study the effect of specific phosphorylations on protein structure. Moreover, the insertion of a phosphate centre sequence, possibly with a linker peptide, may allow thermodynamically stable, biocompatible nanoparticles to be made from virtually any sequence.
机译:磷酸蛋白和磷酸肽在大肠杆菌中表达,每升纯化蛋白的产量为30-200 mg,在多个位点的平均磷酸化程度为61-83%。该方法使用了两个具有低拷贝数和高拷贝数的相容的同居质粒,分别表达蛋白激酶和更丰富的底物(多肽)肽。它用于在多个酪蛋白激酶2位点磷酸化重组β-酪蛋白或骨桥蛋白。设计两个构建体以产生较短的肽,该较短的肽包含一个或多个类似于酪蛋白磷酸中心的磷酸化位点簇。首先,表达53个残基的6-His标记的磷酸肽的摩尔产率提高了5倍。第二个具有胰蛋白酶磷酸肽序列的多个串联重复序列,以提高效率。纯化每种重组磷酸肽(30-100 mg),小角X射线散射测量表明它们像某些酪蛋白和骨桥蛋白磷酸肽一样,螯合无定形磷酸钙形成磷酸钙纳米簇。原则上,该方法可提供用于控制生物钙化的新型磷酸肽,或适于与其他激酶和同源蛋白质或肽一起使用,以研究特定磷酸化对蛋白质结构的影响。此外,可能带有接头肽的磷酸中心序列的插入可以允许从几乎任何序列制备热力学稳定的生物相容性纳米颗粒。

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