副镜
表位
噬菌体展示
单域抗体
单克隆抗体
对接(动物)
同源建模
模拟电影
肽库
表位定位
计算生物学
线性表位
分子生物学
化学
生物
抗体
基因
肽序列
遗传学
生物化学
医学
酶
护理部
作者
Xi Xi,Weihan Sun,Hang Su,Xitian Zhang,Fei Sun
标识
DOI:10.1016/j.molimm.2020.10.014
摘要
Since EGFR is an important and effective target for tumor therapy in the clinic. Several monoclonal antibodies and nanobodies were proved to target domain III of EGFR. Regarding the increased attention on nanobodies, the present study aimed to generate nanobodies specifically against domain III. After camel immunization, a gene repertoire of sdAb fragments with a diversity of 3×109 clones was produced. Following the construction of two sdAb phage display libraries, the successful epitope binning was carried out to identify the nanobody with the designated epitope. Modelling of the identified nanobody and molecular docking studies illustrated the paratope and epitope. Docking analysis revealed that the paratope focused on CDR2 loop of the identified nanobody. The identified nanobody potently cover part of the epitope of Matuzumab and Nb 9G8, which indicated that it blocked EGFR by preventing dimerization of the receptors.
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