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IL-15 拮抗剂 MutIL-15/Fc 人融合蛋白的分子特征和功能活性。

Molecular characterization and functional activity of an IL-15 antagonist MutIL-15/Fc human fusion protein.

机构信息

Biopharmaceutical Development Program, SAIC-Frederick, Inc. , Frederick National Laboratory for Cancer Research, Frederick, Maryland 21702, United States.

出版信息

Mol Pharm. 2013 Feb 4;10(2):717-27. doi: 10.1021/mp300513j. Epub 2013 Jan 22.

DOI:10.1021/mp300513j
PMID:23311475
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3573692/
Abstract

Fc fusion proteins are a new emerging class of molecules for immune-targeted delivery of therapeutic proteins. Biophysical and bioanalytical characterization is critical for clinical development and delivery of therapeutic proteins. Here we report molecular and functional characterization of a recombinant human fusion protein Mutant IL-15/Fc. MutIL-15/Fc has a molecular weight of ∼95 kDa as determined by multiangle laser light scattering with online size exclusion chromatography and migrated at a faster rate (lower retention time) in gel filtration column. The kinetics of binding of MutIL-15/Fc to Fcγ receptor is best fitted in a bivalent modal with K(D1) 5 μM and K(D2) 9 μM determined by surface plasmon resonance (BIAcore). N-Glycoprofiling analysis revealed extensive glycosylation of MutIL-15/Fc. The Fc and IL-15 components in the MutIL-15/Fc are detected using the dual mode ELISA. The HT-2 cell proliferation inhibition assay is qualified as a quantitative in vitro marker functional assay. Molecular state changes associated with forced stress analyzed by SEC-MALS resulted in changes in bioactivity and Fc:Fcγ receptor interaction affinity. These data provide a systematic approach to molecular and functional characterization of the MutIL-15/Fc to establish product consistency and stability monitoring during storage and under drug delivery conditions.

摘要

Fc 融合蛋白是一类新兴的分子,可用于将治疗性蛋白靶向递送至免疫部位。生物物理和生物分析特性对于治疗性蛋白的临床开发和递送至关重要。在此,我们报告了重组人融合蛋白 Mutant IL-15/Fc 的分子和功能特征。MutIL-15/Fc 的分子量约为 95 kDa,这是通过多角度激光光散射与在线分子筛凝胶过滤色谱联用确定的,并且在凝胶过滤柱中迁移速度更快(保留时间更短)。MutIL-15/Fc 与 Fcγ 受体结合的动力学以二价模式拟合最佳,通过表面等离子体共振(BIAcore)确定的 K(D1)为 5 μM,K(D2)为 9 μM。N-糖基化分析显示 MutIL-15/Fc 发生了广泛的糖基化。MutIL-15/Fc 的 Fc 和 IL-15 成分可通过双模式 ELISA 检测到。HT-2 细胞增殖抑制测定被鉴定为定量的体外标记功能测定。通过 SEC-MALS 分析与强制应激相关的分子状态变化导致生物活性和 Fc:Fcγ 受体相互作用亲和力的变化。这些数据提供了一种系统的方法来对 MutIL-15/Fc 进行分子和功能表征,以在储存和药物递送条件下建立产品一致性和稳定性监测。

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