Site-Specific Labeling of Cysteine-Tagged Camelid Single-Domain Antibody-Fragments for Use in Molecular Imaging

被引:121
|
作者
Massa, Sam [1 ,2 ,3 ]
Xavier, Catarina [1 ]
De Vos, Jens [1 ,2 ,3 ]
Caveliers, Vicky [1 ,4 ]
Lahoutte, Tony [1 ,4 ]
Muyldermans, Serge [2 ,3 ]
Devoogdt, Nick [1 ,2 ]
机构
[1] Vrije Univ Brussel, Vivo Cellular & Mol Imaging Lab, B-1090 Brussels, Belgium
[2] Vrije Univ Brussel, Lab Cellular & Mol Immunol, B-1050 Brussels, Belgium
[3] Vrije Univ Brussel, VIB Struct Biol Res Ctr, B-1050 Brussels, Belgium
[4] Vrije Univ Brussel, Univ Ziekenhuis Brussel, Dept Nucl Med, B-1090 Brussels, Belgium
关键词
MACROPHAGE MANNOSE RECEPTOR; DISULFIDE BOND; NANOBODIES; CONJUGATION; TUMOR; PINHOLE; DRUG; RADIOIMMUNOTHERAPY; BIODISTRIBUTION; REDUCTION;
D O I
10.1021/bc500111t
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Site-specific labeling of molecular imaging probes allows the development of a homogeneous tracer population. The resulting batch-to-batch reproducible pharmacokinetic and pharmacodynamic properties are of great importance for clinical translation. Came lid single-domain antibody-fragments (sdAbs)-the recombinantly produced antigen-binding domains of heavy-chain antibodies, also called Nanobodies-are proficient probes for molecular imaging. To safeguard their intrinsically high binding specificity and affinity and to ensure the tracer's homogeneity, we developed a generic strategy for the site-specific labeling of sdAbs via a thio-ether bond. The unpaired cysteine was introduced at the carboxyl-terminal end of the sdAb to eliminate the risk of antigen binding interference. The spontaneous dimerization and capping of the unpaired cysteine required a reduction step prior to conjugation. This was optimized with the mild reducing agent 2-mercaptoethylamine in order to preserve the domain's stability. As a proof-of-concept the reduced probe was subsequently conjugated to maleimide-DTPA, for labeling with indium-111. A single conjugated tracer was obtained and confirmed via mass spectrometry. The specificity and affinity of the new sdAb-based imaging probe was validated in a mouse xenograft tumor model using a modified clinical lead compound targeting the human epidermal growth factor receptor 2 (HER2) cancer biomarker. These data provide a versatile and standardized strategy for the site-specific labeling of sdAbs. The conjugation to the unpaired cysteine results in the production of a homogeneous group of tracers and is a multimodal alternative to the technetium-99m labeling of sdAbs.
引用
收藏
页码:979 / 988
页数:10
相关论文
共 49 条
  • [31] Mass spectrometry-complemented molecular modeling predicts the interaction interface for a camelid single-domain antibody targeting the Plasmodium falciparum circumsporozoite protein's C-terminal domain
    Opuni, Kwabena F. M.
    Russ, Manuela
    Geens, Rob
    De Vocht, Line
    Van Wielendaele, Pieter
    Debuy, Christophe
    Sterckx, Yann G. -J.
    Glocker, Michael O.
    [J]. COMPUTATIONAL AND STRUCTURAL BIOTECHNOLOGY JOURNAL, 2024, 23 : 3300 - 3314
  • [32] Molecular Basis of Contribution of Intramolecular Interactions between Complementarity Determining Region 3 (CDR3) and Framework Region on Biophysical Properties in Camelid Single-Domain Antibody
    Kinoshita, Seisho
    Nakakido, Makoto
    Kuroda, Daisuke
    Caaveiro, Jose M. M.
    Tsumoto, Kouhei
    [J]. PROTEIN SCIENCE, 2023, 32
  • [33] Site-Specific Fluorescent Labeling of the Cysteine-Rich Toxin, DkTx, for TRPV1 Ion Channel Imaging and Membrane Binding Studies
    Sarkar, Debayan
    Mishra, Satyajit
    Nisal, Rahul
    Majhi, Sumita
    Shrivas, Rohit
    Singh, Yashaswi
    Anusree, V. S.
    Kalia, Jeet
    [J]. BIOCONJUGATE CHEMISTRY, 2022, 33 (09) : 1761 - 1770
  • [34] Imaging and Monitoring HER2 Expression in Tumors during HER2 Antibody-Drug Conjugate Therapy Utilizing a Radiolabeled Site-Specific Single-Domain Antibody Probe: 68Ga-NODAGA-SNA004-GSC
    Ge, Shushan
    Wang, Chao
    You, Xuyang
    He, Huihui
    Zhang, Bin
    Jia, Tongtong
    Cai, Xiaowei
    Sang, Shibiao
    Xu, Tao
    Deng, Shengming
    [J]. JOURNAL OF MEDICINAL CHEMISTRY, 2024, 67 (15) : 12855 - 12867
  • [35] A Dual-Modality Linker Enables Site-Specific Conjugation of Antibody Fragments for 18F-Immuno-PET and Fluorescence Imaging
    Zettlitz, Kirstin A.
    Waldmann, Christopher M.
    Tsai, Wen-Ting K.
    Tavare, Richard
    Collins, Jeffrey
    Murphy, Jennifer M.
    Wu, Anna M.
    [J]. JOURNAL OF NUCLEAR MEDICINE, 2019, 60 (10) : 1467 - 1473
  • [36] A Vulnerable, Membrane-Proximal Site in Human Respiratory Syncytial Virus F Revealed by a Prefusion-Specific Single-Domain Antibody
    Rossey, Iebe
    Hsieh, Ching-Lin
    Sedeyn, Koen
    Ballegeer, Marlies
    Schepens, Bert
    Mclellan, Jason S.
    Saelens, Xavier
    [J]. JOURNAL OF VIROLOGY, 2021, 95 (11)
  • [37] Single-cell FRET imaging of transferrin receptor trafficking dynamics by Sfp-catalyzed, site-specific protein labeling
    Yin, J
    Lin, AJ
    Buckett, PD
    Wessling-Resnick, M
    Golan, DE
    Walsh, CT
    [J]. CHEMISTRY & BIOLOGY, 2005, 12 (09): : 999 - 1006
  • [38] Site-Specific Dinitrophenylation of Single-Chain Antibody Fragments for Redirecting a Universal CAR-T Cell against Cancer Antigens
    Rong, Liang
    Lim, Rebecca M.
    Yin, Xiaosuo
    Tan, Liyao
    Yang, Jae H.
    Xie, Jianming
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 2022, 434 (08)
  • [39] Site-specific modification of single cysteine Pax 3 mutants reveals reciprocal regulation of DNA binding activity of the paired and homeo domain
    Apuzzo, S
    Gros, P
    [J]. BIOCHEMISTRY, 2002, 41 (40) : 12076 - 12085
  • [40] In vivo biotinylation and incorporation of a photo-inducible unnatural amino acid to an antibody-binding domain improve site-specific labeling of antibodies
    Kanje, Sara
    Hober, Sophia
    [J]. BIOTECHNOLOGY JOURNAL, 2015, 10 (04) : 564 - U272