Characterizing protein G B1 orientation and its effect on immunoglobulin G antibody binding using XPS, ToF-SIMS, and quartz crystal microbalance with dissipation monitoring.

IF 2.1 4区 医学 Q2 Physics and Astronomy Biointerphases Pub Date : 2020-03-13 DOI:10.1116/1.5142560
Elisa T Harrison, Yung-Chen Wang, Lauren Carter, David G Castner
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引用次数: 10

Abstract

Controlling how proteins are immobilized (e.g., controlling their orientation and conformation) is essential for developing and optimizing the performance of in vitro protein-binding devices, such as enzyme-linked immunosorbent assays. Characterizing the identity, orientation, etc., of proteins in complex mixtures of immobilized proteins requires a multitechnique approach. The focus of this work was to control and characterize the orientation of protein G B1, an immunoglobulin G (IgG) antibody-binding domain of protein G, on well-defined surfaces and to measure the effect of protein G B1 orientation on IgG antibody binding. The surface sensitivity of time-of-flight secondary ion mass spectrometry (ToF-SIMS) was used to distinguish between different proteins and their orientation on both flat and nanoparticle gold surfaces by monitoring intensity changes of characteristic amino acid mass fragments. Amino acids distributed asymmetrically were used to calculate peak intensity ratios from ToF-SIMS data to determine the orientation of protein G B1 cysteine mutants covalently attached to a maleimide surface. To study the effect of protein orientation on antibody binding, multilayer protein films on flat gold surfaces were formed by binding IgG to the immobilized protein G B1 films. Quartz crystal microbalance with dissipation monitoring and x-ray photoelectron spectroscopy analysis revealed that coverage and orientation affected the antibody-binding process. At high protein G B1 coverage, the cysteine mutant immobilized in an end-on orientation with the C-terminus exposed bound 443 ng/cm2 of whole IgG (H + L) antibodies. In comparison, the high coverage cysteine mutant immobilized in an end-on orientation with the N-terminus exposed did not bind detectable amounts of whole IgG (H + L) antibodies.

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利用XPS、ToF-SIMS和石英晶体微天平与耗散监测表征蛋白gb1取向及其对免疫球蛋白G抗体结合的影响
控制蛋白质的固定方式(例如,控制它们的取向和构象)对于开发和优化体外蛋白质结合装置(如酶联免疫吸附测定)的性能至关重要。表征的身份,取向等,在复杂的固定蛋白混合物的蛋白质需要多种技术的方法。本工作的重点是控制和表征蛋白G B1(免疫球蛋白G (IgG)抗体结合域)在定义明确的表面上的取向,并测量蛋白G B1取向对IgG抗体结合的影响。利用飞行时间二次离子质谱(ToF-SIMS)的表面灵敏度,通过监测特征氨基酸质量片段的强度变化来区分不同的蛋白质及其在平面和纳米颗粒金表面的取向。利用不对称分布的氨基酸计算ToF-SIMS数据的峰值强度比,以确定共价附着在马来酰亚胺表面的蛋白质gb1半胱氨酸突变体的取向。为了研究蛋白质取向对抗体结合的影响,我们将IgG与固定的蛋白gb1膜结合,在平坦的金表面形成多层蛋白膜。石英晶体微天平耗散监测和x射线光电子能谱分析显示,覆盖和取向影响抗体结合过程。在高蛋白gb1覆盖下,半胱氨酸突变体以端对端定向固定,c端暴露443 ng/cm2的全IgG (H + L)抗体。相比之下,高覆盖率的半胱氨酸突变体以端对端定向固定,暴露n端,不能结合可检测到的全IgG (H + L)抗体。
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来源期刊
Biointerphases
Biointerphases BIOPHYSICS-MATERIALS SCIENCE, BIOMATERIALS
CiteScore
4.10
自引率
0.00%
发文量
35
审稿时长
>12 weeks
期刊介绍: Biointerphases emphasizes quantitative characterization of biomaterials and biological interfaces. As an interdisciplinary journal, a strong foundation of chemistry, physics, biology, engineering, theory, and/or modelling is incorporated into originated articles, reviews, and opinionated essays. In addition to regular submissions, the journal regularly features In Focus sections, targeted on specific topics and edited by experts in the field. Biointerphases is an international journal with excellence in scientific peer-review. Biointerphases is indexed in PubMed and the Science Citation Index (Clarivate Analytics). Accepted papers appear online immediately after proof processing and are uploaded to key citation sources daily. The journal is based on a mixed subscription and open-access model: Typically, authors can publish without any page charges but if the authors wish to publish open access, they can do so for a modest fee. Topics include: bio-surface modification nano-bio interface protein-surface interactions cell-surface interactions in vivo and in vitro systems biofilms / biofouling biosensors / biodiagnostics bio on a chip coatings interface spectroscopy biotribology / biorheology molecular recognition ambient diagnostic methods interface modelling adhesion phenomena.
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