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经实验验证的治疗性抗体的等电点、净电荷及氨基酸分析

Isoelectric point, net charge and amino acid analysis of experimentally validated therapeutic antibodies.

作者信息

Nagraj Anil Kumar, Patel Riya, Gavade Akshata, Pais Roylan, Verma Pratibha, Patil Jaspal

机构信息

Innoplexus Consulting Services Pvt Ltd, Floor 7 th, Midas Tower, Rajiv Gandhi Infotech Park, Hinjawadi, Pune, Maharashtra 411057 India.

出版信息

In Silico Pharmacol. 2025 Apr 17;13(2):66. doi: 10.1007/s40203-025-00356-y. eCollection 2025.

Abstract

UNLABELLED

The isoelectric point (pI) of an antibody is known to affect its non-specific interactions and repulsive self-interactions. However, analytical outcomes for the pI of a large number of therapeutic antibodies remain unexplored. In this study, we explored the pI and net charge of variable heavy (VH), variable light (VL), CDR (complementarity determining regions) and whole IgG on a large number of therapeutic antibodies, additionally amino acids distribution in the CDR regions were also analyzed. A total of 708 experimentally validated antibodies from the Thera-SAbDab database were analyzed in this study. Analysis of the antibody dataset showed that the pI of the whole IgG sequence is between 5 and 9, while the majority was in the intermediate range between 7 and 9 (86.7%). The charge had a wide range from - 10 to 12, with the majority falling between the charges 2-6 (53.4%). However, the combined pI score of the CDRs of light chains (60%) as well as for the heavy chains (67%) was observed in the range of 4-6. The amino acid composition analysis of CDR regions revealed that most of the amino acids in the light chain are uncharged-polar (46.3%) followed by hydrophobic-aliphatic (28.4%), while in the heavy chain; it is hydrophobic-aliphatic (35.2%) followed by uncharged-polar (24.6%). In conclusion, the pI and net charge analysis of therapeutic antibodies are crucial for understanding pharmacokinetic properties. Moreover, amino acid composition of the light and heavy chain CDR regions has a significant impact on the pI and charge of the entire IgG antibody.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s40203-025-00356-y.

摘要

未标记

已知抗体的等电点(pI)会影响其非特异性相互作用和排斥性自身相互作用。然而,大量治疗性抗体的pI分析结果仍未得到探索。在本研究中,我们探究了大量治疗性抗体的重链可变区(VH)、轻链可变区(VL)、互补决定区(CDR)和完整IgG的pI及净电荷,此外还分析了CDR区域的氨基酸分布。本研究共分析了来自Thera-SAbDab数据库的708种经实验验证的抗体。抗体数据集分析表明,完整IgG序列的pI在5至9之间,而大多数处于7至9的中间范围(86.7%)。电荷范围从 - 10到12,大多数落在2 - 6的电荷区间(53.4%)。然而,轻链CDR的组合pI分数(60%)以及重链CDR的组合pI分数(67%)在4 - 6范围内。CDR区域的氨基酸组成分析表明,轻链中大多数氨基酸是不带电的极性氨基酸(46.3%),其次是疏水脂肪族氨基酸(28.4%),而在重链中;是疏水脂肪族氨基酸(35.2%),其次是不带电的极性氨基酸(24.6%)。总之,治疗性抗体的pI和净电荷分析对于理解药代动力学性质至关重要。此外,轻链和重链CDR区域的氨基酸组成对整个IgG抗体的pI和电荷有显著影响。

补充信息

在线版本包含可在10.1007/s40203-025-00356-y获取的补充材料。

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