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抗流感肽抗体Fab 26/9的肽复合物晶体结构。两种结合相同肽抗原的不同抗体的比较。

Crystal structure of a peptide complex of anti-influenza peptide antibody Fab 26/9. Comparison of two different antibodies bound to the same peptide antigen.

作者信息

Churchill M E, Stura E A, Pinilla C, Appel J R, Houghten R A, Kono D H, Balderas R S, Fieser G G, Schulze-Gahmen U, Wilson I A

机构信息

Department of Molecular Biology, Scripps Research Institute, La Jolla, CA 92037.

出版信息

J Mol Biol. 1994 Aug 26;241(4):534-56. doi: 10.1006/jmbi.1994.1530.

DOI:10.1006/jmbi.1994.1530
PMID:7520084
Abstract

The three-dimensional structure of the complex of a second anti-peptide antibody (Fab 26/9) that recognizes the same six-residue epitope of an immunogenic peptide from influenza virus hemagglutinin (HA1; 75-110) as Fab 17/9 with the peptide has been determined at 2.8 A resolution. The amino acid sequence of the variable region of the 26/9 antibody differs in 24 positions from that of 17/9, the first antibody in this series for which several ligand-bound and free structures have been determined and refined. Comparison of the 26/9-peptide with the 17/9-peptide complex structures shows that the two Fabs are very similar (r.m.s.d. 0.5 to 0.8 A) and that the peptide antigen (101-107) has virtually the same conformation (r.m.s.d. 0.3 to 0.8 A) when bound to both antibodies. A sequence difference in the 26/9 binding pocket (L94; His in 26/9, Asn in 17/9) results in an interaction with a bound water molecule that is not seen in the 17/9 structures. Epitope mapping shows that the relative specificity of 26/9 and 17/9 antibodies for individual positions of the peptide antigen are slightly different. Amino acid substitutions in the peptide, particularly at position SerP107, are tolerated to different extents by 17/9 and 26/9. Structural and sequence analysis suggests that amino acid differences near the peptide-binding site are responsible for altering slightly the specificity of 26/9 for three peptide residues and illustrates how amino acid substitutions can modify antibody-antigen interactions and thereby modulate antibody specificity.

摘要

已确定第二种抗肽抗体(Fab 26/9)与该肽的复合物的三维结构,其分辨率为2.8埃。Fab 26/9识别来自流感病毒血凝素(HA1;75 - 110)的免疫原性肽的相同六残基表位,与Fab 17/9相同。26/9抗体可变区的氨基酸序列与17/9在24个位置不同,17/9是该系列中首个已确定并优化了多个配体结合和游离结构的抗体。26/9 - 肽与17/9 - 肽复合物结构的比较表明,两种Fab非常相似(均方根偏差为0.5至0.8埃),并且肽抗原(101 - 107)与两种抗体结合时具有几乎相同的构象(均方根偏差为0.3至0.8埃)。26/9结合口袋中的序列差异(L94;26/9中为组氨酸,17/9中为天冬酰胺)导致与一个结合水分子发生相互作用,而在17/9结构中未观察到这种相互作用。表位作图表明,26/9和17/9抗体对肽抗原各个位置的相对特异性略有不同。肽中的氨基酸取代,特别是SerP107位置的取代,17/9和26/9的耐受程度不同。结构和序列分析表明,肽结合位点附近的氨基酸差异导致26/9对三个肽残基的特异性略有改变,并说明了氨基酸取代如何修饰抗体 - 抗原相互作用,从而调节抗体特异性。

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