| Literature DB >> 27882339 |
Hiroshi Imamura1, Shinya Honda1.
Abstract
This article presented the data related to the research article entitled "Calibration-free concentration analysis for an analyte prone to self-association" (H. Imamura, S. Honda, 2017) [1]. The data included surface plasmon resonance (SPR) responses of the variants of protein G with different masses under mass transport limitation. The friction factors of the proteins analyzed by an ultracentrifugation were recorded. Calculation of the SPR response of the proteins was also described.Entities:
Year: 2016 PMID: 27882339 PMCID: PMC5114526 DOI: 10.1016/j.dib.2016.10.029
Source DB: PubMed Journal: Data Brief ISSN: 2352-3409
Fig. 1Sensorgrams of the analytes, the variants of Protein G, under a flow rate of 30 μL/min over a ligand surface consisting of immunoglobulin G1. The protein solutions of the monomer (red circles), the linked dimer (cyan triangle), and their mixture (dark orange square), the composition of which was γ=0.43, were analyzed. R is the response signal. [Pbulk]W represents the concentration of the analytes. A linear function was used to fit the data, indicated by the solid line. The theoretical slopes calculated by Eqs. (10), (11), (12), (13), (14) are indicated by the dotted lines (sP1/sP2=1) and the dashed lines (sP1/sP2=1.24 calculated by using the parameters, (f/f0)P1=1.25, (f/f0)P2=1.57, vP1=0.730 cm3/g, and vP2=0.716 cm3/g); the slope of (dRP1/dt) / [P1bulk]W, experimentally determined, was used as a reference to calculate the theoretical slopes of (dRP2/dt) / [P2bulk]W and (dR/dt) / [Pbulk]W. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article).
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