Ali J, Younus H
Interdisciplinary Biotechnology Unit, Aligarh Muslim University, Aligarh, 202002, India.
Biochemistry (Mosc). 2006 Dec;71(12):1336-40. doi: 10.1134/s000629790612008x.
Using succinic anhydride, a succinylated derivative of anti-urease IgG having 49 +/- 6% modification was prepared and its physicochemical and immunological properties were studied. IgG undergoes substantial changes in its native conformation on succinylation, which was mainly attributed to electrostatic destabilization of the native protein conformation. The modified IgG exhibited a decrease in its cross-reactivity with urease. This decrease is attributed to the conformational change in IgG upon succinylation and/or is due to the disruption of the lysine residues in the antigen-binding site of IgG upon succinylation, which may be involved in binding the antigen. IgG was able to bind to the specific antigen although its conformation was partially modified. Therefore, partial modification of the conformation of the antigen-binding site of IgG is permissible in order to bind to the antigen.
使用琥珀酸酐制备了修饰度为49±6%的抗脲酶IgG的琥珀酰化衍生物,并对其理化和免疫学性质进行了研究。IgG在琥珀酰化后其天然构象发生了显著变化,这主要归因于天然蛋白质构象的静电不稳定。修饰后的IgG与脲酶的交叉反应性降低。这种降低归因于琥珀酰化后IgG的构象变化和/或由于琥珀酰化后IgG抗原结合位点中赖氨酸残基的破坏,这可能参与抗原的结合。尽管IgG的构象被部分修饰,但它仍能够结合特异性抗原。因此,为了结合抗原,IgG抗原结合位点构象的部分修饰是允许的。