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非生理性免疫球蛋白可变结构域支架具有卓越的淀粉样β肽水解活性。

Exceptional amyloid beta peptide hydrolyzing activity of nonphysiological immunoglobulin variable domain scaffolds.

作者信息

Taguchi Hiroaki, Planque Stephanie, Sapparapu Gopal, Boivin Stephane, Hara Mariko, Nishiyama Yasuhiro, Paul Sudhir

机构信息

Chemical Immunology Research Center, Department of Pathology and Laboratory Medicine, University of Texas Houston Medical School, Houston, Texas 77030, USA.

出版信息

J Biol Chem. 2008 Dec 26;283(52):36724-33. doi: 10.1074/jbc.M806766200. Epub 2008 Oct 30.

Abstract

Nucleophilic sites in the paired variable domains of the light and heavy chains (VL and VH domains) of Ig can catalyze peptide bond hydrolysis. Amyloid beta (Abeta)-binding Igs are under consideration for immunotherapy of Alzheimer disease. We searched for Abeta-hydrolyzing human IgV domains (IgVs) in a library containing a majority of single chain Fv clones mimicking physiological VL-VH-combining sites and minority IgV populations with nonphysiological structures generated by cloning errors. Random screening and covalent selection of phage-displayed IgVs with an electrophilic Abeta analog identified rare IgVs that hydrolyzed Abeta mainly at His14-Gln15. Inhibition of IgV catalysis and irreversible binding by an electrophilic hapten suggested a nucleophilic catalytic mechanism. Structural analysis indicated that the catalytic IgVs are nonphysiological structures, a two domain heterodimeric VL (IgVL2-t) and single domain VL clones with aberrant polypeptide tags (IgVL-t'). The IgVs hydrolyzed Abeta at rates superior to naturally occurring Igs by 3-4 orders of magnitude. Forced pairing of the single domain VL with VH or VL domains resulted in reduced Abeta hydrolysis, suggesting catalysis by the unpaired VL domain.Angstrom level amino acid displacements evident in molecular models of the two domain and unpaired VL domain clones explain alterations of catalytic activity. In view of their superior catalytic activity, the VL domain IgVs may help attain clearance of medically important antigens more efficiently than natural Igs.

摘要

免疫球蛋白(Ig)轻链和重链的配对可变结构域(VL和VH结构域)中的亲核位点可催化肽键水解。与β淀粉样蛋白(Aβ)结合的Ig正被考虑用于阿尔茨海默病的免疫治疗。我们在一个文库中搜索能水解Aβ的人IgV结构域(IgVs),该文库包含大多数模拟生理性VL - VH结合位点的单链Fv克隆以及少数因克隆错误产生的具有非生理性结构的IgV群体。通过用亲电Aβ类似物对噬菌体展示的IgVs进行随机筛选和共价选择,鉴定出了罕见的IgVs,它们主要在His14 - Gln15处水解Aβ。亲电半抗原对IgV催化作用的抑制和不可逆结合提示了一种亲核催化机制。结构分析表明,具有催化活性的IgVs是非生理性结构,即一种两结构域异二聚体VL(IgVL2 - t)和带有异常多肽标签的单结构域VL克隆(IgVL - t')。这些IgVs水解Aβ的速率比天然存在的Ig快3 - 4个数量级。单结构域VL与VH或VL结构域的强制配对导致Aβ水解减少,这表明未配对的VL结构域具有催化作用。在两结构域和未配对VL结构域克隆的分子模型中明显的埃级氨基酸位移解释了催化活性的改变。鉴于其卓越的催化活性,VL结构域IgVs可能比天然Ig更有效地帮助实现医学上重要抗原的清除。

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