Crystal Structure of PG16 and Chimeric Dissection with Somatically Related PG9: Structure-Function Analysis of Two Quaternary-Specific Antibodies That Effectively Neutralize HIV-1

被引:183
作者
Pancera, Marie [1 ]
McLellan, Jason S. [1 ]
Wu, Xueling [1 ]
Zhu, Jiang [1 ]
Changela, Anita [1 ]
Schmidt, Stephen D. [1 ]
Yang, Yongping [1 ]
Zhou, Tongqing [1 ]
Phogat, Sanjay [2 ]
Mascola, John R. [1 ]
Kwong, Peter D. [1 ]
机构
[1] NIAID, Vaccine Res Ctr, NIH, Bethesda, MD 20892 USA
[2] Int AIDS Vaccine Initiat, AIDS Vaccine Design & Dev Lab, Brooklyn, NY USA
关键词
PROTEIN MODELS; COMBINING SITE; DENSITY MAPS; ENV CLONES; BROAD; PYROPHOSPHORYLASE; GLYCOPROTEIN; EVOLUTIONARY; RECOGNITION; INFECTIONS;
D O I
10.1128/JVI.00966-10
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
HIV-1 resists neutralization by most antibodies. Two somatically related human antibodies, PG9 and PG16, however, each neutralize 70 to 80% of circulating HIV-1 isolates. Here we present the structure of the antigen-binding fragment of PG16 in monoclinic and orthorhombic lattices at 2.4 and 4.0 angstrom, respectively, and use a combination of structural analysis, paratope dissection, and neutralization assessment to determine the functional relevance of three unusual PG9/PG16 features: N-linked glycosylation, extensive affinity maturation, and a heavy chain-third complementarity-determining region (CDR H3) that is one of the longest observed in human antibodies. Glycosylation extended off the side of the light chain variable domain and was not required for neutralization. The CDR H3 formed an axe-shaped subdomain, which comprised 42% of the CDR surface, with the axe head looming similar to 20 angstrom above the other combining loops. Comprehensive sets of chimeric swaps between PG9 and PG16 of light chain, heavy chain, and CDR H3 were employed to decipher structure-function relationships. Chimeric swaps generally complemented functionally, with differences in PG9/PG16 neutralization related primarily to residue differences in CDR H3. Meanwhile, chimeric reversions to genomic V genes showed isolate-dependent effects, with affinity maturation playing a significant role in augmenting neutralization breadth (P = 0.036) and potency (P < 0.0001). The structural and functional details of extraordinary CDR H3 and extensive affinity maturation provide insights into the neutralization mechanism of and the elicitation pathway for broadly neutralizing antibodies like PG9 and PG16.
引用
收藏
页码:8098 / 8110
页数:13
相关论文
共 65 条
[41]   Relationship between Antibody 2F5 Neutralization of HIV-1 and Hydrophobicity of Its Heavy Chain Third Complementarity-Determining Region [J].
Ofek, Gilad ;
McKee, Krisha ;
Yang, Yongping ;
Yang, Zhi-Yong ;
Skinner, Jeff ;
Guenaga, F. Javier ;
Wyatt, Richard ;
Zwick, Michael B. ;
Nabel, Gary J. ;
Mascola, John R. ;
Kwong, Peter D. .
JOURNAL OF VIROLOGY, 2010, 84 (06) :2955-2962
[42]   Processing of X-ray diffraction data collected in oscillation mode [J].
Otwinowski, Z ;
Minor, W .
MACROMOLECULAR CRYSTALLOGRAPHY, PT A, 1997, 276 :307-326
[43]  
PEJCHAL R, 2010, P NATL ACAD SCI US
[44]   Crystal structures of two human pyrophosphorylase isoforms in complexes with UDPGlc(Gal)NAc: role of the alternatively spliced insert in the enzyme oligomeric assembly and active site architecture [J].
Peneff, C ;
Ferrari, P ;
Charrier, V ;
Taburet, Y ;
Monnier, C ;
Zamboni, V ;
Winter, J ;
Harnois, M ;
Fassy, F ;
Bourne, Y .
EMBO JOURNAL, 2001, 20 (22) :6191-6202
[45]   Using multiple structure alignments, fast model building, and energetic analysis in fold recognition and homology modeling [J].
Petrey, D ;
Xiang, ZX ;
Tang, CL ;
Xie, L ;
Gimpelev, M ;
Mitros, T ;
Soto, CS ;
Goldsmith-Fischman, S ;
Kernytsky, A ;
Schlessinger, A ;
Koh, IYY ;
Alexov, E ;
Honig, B .
PROTEINS-STRUCTURE FUNCTION AND GENETICS, 2003, 53 (06) :430-435
[46]   A BROADLY NEUTRALIZING HUMAN MONOCLONAL-ANTIBODY AGAINST GP41 OF HUMAN-IMMUNODEFICIENCY-VIRUS TYPE-1 [J].
PURTSCHER, M ;
TRKOLA, A ;
GRUBER, G ;
BUCHACHER, A ;
PREDL, R ;
STEINDL, F ;
TAUER, C ;
BERGER, R ;
BARRETT, N ;
JUNGBAUER, A ;
KATINGER, H .
AIDS RESEARCH AND HUMAN RETROVIRUSES, 1994, 10 (12) :1651-1658
[47]   Structure and function in rhodopsin:: High-level expression of rhodopsin with restricted and homogeneous N-glycosylation by a tetracycline-inducible N-acetylglucosaminyltransferase I-negative HEK293S stable mammalian cell line [J].
Reeves, PJ ;
Callewaert, N ;
Contreras, R ;
Khorana, HG .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (21) :13419-13424
[48]   Evolution of Enzymatic Activities in the Enolase Superfamily: Stereochemically Distinct Mechanisms in Two Families of cis,cis-Muconate Lactonizing Enzymes [J].
Sakai, Ayano ;
Fedorov, Alexander A. ;
Fedorov, Elena V. ;
Schnoes, Alexandra M. ;
Glasner, Margaret E. ;
Brown, Shoshana ;
Rutter, Marc E. ;
Bain, Kevin ;
Chang, Shawn ;
Gheyi, Tarun ;
Sauder, J. Michael ;
Burley, Stephen K. ;
Babbitt, Patricia C. ;
Almo, Steven C. ;
Gerlt, John A. .
BIOCHEMISTRY, 2009, 48 (07) :1445-1453
[49]   Factors Associated with the Development of Cross-Reactive Neutralizing Antibodies during Human Immunodeficiency Virus Type 1 Infection [J].
Sather, D. Noah ;
Armann, Jakob ;
Ching, Lance K. ;
Mavrantoni, Angeliki ;
Sellhorn, George ;
Caldwell, Zachary ;
Yu, Xuesong ;
Wood, Blake ;
Self, Steve ;
Kalams, Spyros ;
Stamatatos, Leonidas .
JOURNAL OF VIROLOGY, 2009, 83 (02) :757-769
[50]   Broad diversity of neutralizing antibodies isolated from memory B cells in HIV-infected individuals [J].
Scheid, Johannes F. ;
Mouquet, Hugo ;
Feldhahn, Niklas ;
Seaman, Michael S. ;
Velinzon, Klara ;
Pietzsch, John ;
Ott, Rene G. ;
Anthony, Robert M. ;
Zebroski, Henry ;
Hurley, Arlene ;
Phogat, Adhuna ;
Chakrabarti, Bimal ;
Li, Yuxing ;
Connors, Mark ;
Pereyra, Florencia ;
Walker, Bruce D. ;
Wardemann, Hedda ;
Ho, David ;
Wyatt, Richard T. ;
Mascola, John R. ;
Ravetch, Jeffrey V. ;
Nussenzweig, Michel C. .
NATURE, 2009, 458 (7238) :636-640