Site-directed in vitro immunization leads to a complete human monoclonal IgG4 lambda that binds specifically to the CDR2 region of CTLA-4 (CD152) without interfering the engagement of natural ligands
BMC BIOTECHNOLOGY
Authors: Chin, Li-Te; Chu, Chishih; Chen, Han-Min; Hsu, Shu-Ching; Weng, Bor-Chun; Chu, Chi-Hong
Abstract
Background: The ability to acquire fully human monoclonal antibodies ( mAbs) with pre-defined specificities is critical to the development of molecular tags for the analysis of receptor function in addition to promising immunotherapeutics. Yet most of the arriving affinity maturated and complete human immunoglobulin G (IgG) molecules, which are actually derived from single human B cells, have not widely been used to study the conserved self antigens (Ags) such as CD152 ( cytotoxic T lymphocyte antigen-4, CTLA-4) because proper hosts are lacking. Results: Here we developed an optimized protocol for site-directed in vitro immunizing peripheral blood mononuclear cells (PBMC) by using a selected epitope of human CD152, an essential receptor involved in down-regulation of T cell activation. The resultant stable trioma cell lines constantly produce anti-CD152 mAb (gamma 4 lambda huCD152), which contains variable (V) regions of the heavy chain and the light chain derived from the VH3 and V lambda human germline genes, respectively, and yet displays an unusual IgG4 isotype. Interestingly,gamma 4 lambda huCD152 has a basic pI not commonly found in myeloid monoclonal IgG4 lambda s as revealed by the isoelectric focusing ( IEF) analysis. Furthermore,gamma 4 lambda huCD152 binds specifically, with nanomolar affinity, to an extracellular constituency encompassing the putative second complementarity determining region (CDR2) of CD152, whereby it can react to activated CD3(+) cells. Conclusion: In a context of specific cell depletion and conditioned medium, in vitro induction of human Abs against a conserved self Ag was successfully acquired and a relatively basic mAb,gamma 4 lambda huCD152, with high affinity to CDR2 of CD152 was thus obtained. Application of such a human IgG4 lambda mAb with designated CDR2 specificity may impact upon and prefer for CD152 labeling both in situ and ex situ, as it does not affect the binding of endogenous B7 ligands and can localize into the confined immunological synapse which may otherwise prevent the access of whole IgG1 molecules.
Bacterial production and functional characterization of the Fab fragment of the murine IgG1/lambda monoclonal antibody cmHsp70.1, a reagent for tumour diagnostics
PROTEIN ENGINEERING DESIGN & SELECTION
Authors: Friedrich, Lars; Stangl, Stefan; Hahne, Hannes; Kuester, Bernhard; Koehler, Peter; Multhoff, Gabriele; Skerra, Arne
Abstract
Hsp70, the major stress-inducible member of the 70 kDa heat shock protein family, is frequently exposed on the plasma membrane of human tumours and, even more pronounced, on metastases but not detectable on normal tissues. The mouse monoclonal antibody cmHsp70.1, which recognizes a peptide epitope in the C-terminal substrate binding domain of both human and murine Hsp70, provides a promising reagent for the monitoring of Hsp70-positive tumours during cancer therapy. Here, we describe the variable domain sequences of the antibody produced by the hybridoma cell line and attempts to secrete the corresponding recombinant Fab fragment in Escherichia coli. Initially, the yield of soluble functional Fab fragment that could be purified from the periplasmic cell extract was extremely low, even when preparing different chimeric versions with constant domains of human or murine origin or with the light chain constant domain belonging to the kappa or lambda class. Surprisingly, this yield could be raised dramatically by more than a factor 100 in the presence of the folding helper plasmid pTUM4, which overexpresses two periplasmic disulphide oxido-reductases as well as two chaperones with proline-cis/trans-isomerase activity. Thus, more than 15 mg functional recombinant Fab fragment could be purified per litre E. coli culture from a bench top fermenter. This Fab fragment showed high and specific Hsp70 binding activity in ELISA and SPR measurements, revealing a dissociation constant of 35 nM. Notably, the Fab fragment sensitively recognizes the membrane-associated Hsp70 on tumour cell lines both in immunofluorescence microscopy and flow cytometry, thus showing potential for tumour detection in vitro and in vivo.