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用于表达单体和二聚体双特异性单链双抗体的优化连接子序列。

Optimized linker sequences for the expression of monomeric and dimeric bispecific single-chain diabodies.

作者信息

Völkel T, Korn T, Bach M, Müller R, Kontermann R E

机构信息

Institut für Molekularbiologie und Tumorforschung, Philipps-Universität Marburg, Emil-Mannkopff-Strasse 2, 35033 Marburg, Germany.

出版信息

Protein Eng. 2001 Oct;14(10):815-23. doi: 10.1093/protein/14.10.815.

Abstract

Bispecific single-chain diabodies (scDb) consist of the variable heavy and light chain domains of two antibodies connected by three linkers. The structure of an scDb in the V(H)-V(L) orientation is V(H)A-linkerA-V(L)B-linkerM-V(H)B-linkerB-V(L)A, with linkers A and B routinely chosen to be 5-6 residues and linker M 15-20 residues. Here, we applied display of scDb on filamentous phage to analyse the composition of optimal linker sequences. The three linkers were randomized in length and sequence using degenerated triplets coding for only six hydrophilic or aliphatic amino acids (Thr, Ser, Asp, Asn, Gly, Ala). Antigen-binding clones were then isolated by one to two rounds of selection on the two different antigens recognized by the bispecific scDb. Using an scDb directed against carcinoembryonic antigen (CEA) and beta-galactosidase (Gal), we found that monomeric scDb had a preferred length of 15 or more amino acid residues for the middle linker M and of 3-6 residues for the linkers A and B. No obvious bias towards a preferred linker sequence was observed. Reduction of the middle linker below 13 residues led to the formation of dimeric scDb, which most likely results from interchain pairing between all the V(H) and V(L) domains. Dimeric scDb were also formed by fragments possessing a long linker M and linkers A and B of 0 or 1 residue. We assume that these dimeric scDb are formed by intrachain pairing of the central variable domains and interchain pairing of the flanking variable domains. Thus, the latter molecules represent a novel format of bispecific and tetravalent molecules. The described strategy allows for the isolation of both optimized and minimal linker sequences for the assembly of monomeric or dimeric single-chain diabodies.

摘要

双特异性单链双抗体(scDb)由通过三个连接子相连的两种抗体的可变重链和轻链结构域组成。以V(H)-V(L)方向排列的scDb结构为V(H)A-连接子A-V(L)B-连接子M-V(H)B-连接子B-V(L)A,连接子A和B通常选择为5-6个残基,连接子M为15-20个残基。在此,我们应用丝状噬菌体展示scDb来分析最佳连接子序列的组成。使用仅编码六种亲水性或脂肪族氨基酸(苏氨酸、丝氨酸、天冬氨酸、天冬酰胺、甘氨酸、丙氨酸)的简并三联体,对三个连接子的长度和序列进行随机化。然后通过对双特异性scDb识别的两种不同抗原进行一到两轮筛选,分离出抗原结合克隆。使用针对癌胚抗原(CEA)和β-半乳糖苷酶(Gal)的scDb,我们发现单体scDb的中间连接子M的优选长度为15个或更多氨基酸残基,连接子A和B的优选长度为3-6个残基。未观察到对优选连接子序列的明显偏好。将中间连接子减少到13个残基以下会导致二聚体scDb的形成,这很可能是由于所有V(H)和V(L)结构域之间的链间配对所致。具有长连接子M以及0或1个残基的连接子A和B的片段也会形成二聚体scDb。我们假设这些二聚体scDb是由中央可变结构域的链内配对和侧翼可变结构域的链间配对形成的。因此,后一种分子代表了一种新型的双特异性和四价分子形式。所描述的策略允许分离用于组装单体或二聚体单链双抗体的优化和最小化连接子序列。

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