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通过化学偶联到 XTEN 蛋白聚合物来延长生物活性肽的体内半衰期。

Extension of in vivo half-life of biologically active peptides via chemical conjugation to XTEN protein polymer.

机构信息

Amunix Operating Inc., 500 Ellis Street, Mountain View, CA 94043, USA.

出版信息

Protein Eng Des Sel. 2013 Nov;26(11):743-53. doi: 10.1093/protein/gzt048. Epub 2013 Oct 16.

Abstract

XTEN, unstructured biodegradable proteins, have been used to extend the in vivo half-life of genetically fused therapeutic proteins and peptides. To expand the applications of XTEN technology to half-life extension of other classes of molecules, XTEN protein polymers and methods for chemical XTENylation were developed. Two XTEN precursors were engineered to contain enzymatically removable purification tags. The proteins were readily expressed in bacteria and purified to homogeneity by chromatography techniques. As proof-of-principle, GLP2-2G peptide was chemically conjugated to each of the two XTEN protein polymers using maleimide-thiol chemistry. The monodisperse nature of XTEN protein polymer enabled reaction monitoring as well as the detection of peptide modifications in the conjugated state using reverse phase-high performance liquid chromatography (RP-HPLC) and electrospray ionization mass spectrometry. The resulting GLP2-2G-XTEN conjugates were purified by preparative RP-HPLC to homogeneity. In comparison with recombinantly fused GLP2-2G-XTEN, chemically conjugated GLP2-2G-XTEN molecules exhibited comparable in vitro activity, in vitro plasma stability and pharmacokinetics in rats. These data suggest that chemical XTENylation could effectively extend the half-life of a wide spectrum of biologically active molecules, therefore broadening its applicability.

摘要

XTEN 是一种无规可降解蛋白质,用于延长基因融合治疗性蛋白质和肽的体内半衰期。为了将 XTEN 技术的应用扩展到其他类分子的半衰期延长,开发了 XTEN 蛋白聚合物和化学 XTENylation 方法。设计了两种 XTEN 前体,使其包含可酶切的纯化标签。这些蛋白质可以在细菌中容易地表达,并通过色谱技术纯化至均一性。作为原理验证,使用马来酰亚胺-巯基化学将 GLP2-2G 肽化学偶联到两种 XTEN 蛋白聚合物中的每一种上。XTEN 蛋白聚合物的单分散性使得可以进行反应监测,并且可以使用反相高效液相色谱 (RP-HPLC) 和电喷雾电离质谱 (ESI-MS) 检测在偶联状态下的肽修饰。通过制备性 RP-HPLC 将所得 GLP2-2G-XTEN 缀合物纯化至均一性。与重组融合的 GLP2-2G-XTEN 相比,化学偶联的 GLP2-2G-XTEN 分子表现出可比的体外活性、体外血浆稳定性和在大鼠中的药代动力学。这些数据表明,化学 XTENylation 可以有效地延长广泛的生物活性分子的半衰期,从而扩大其适用性。

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