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Biomedical subjects

J S Crowe

Publications and source records attributed to J S Crowe.

At least 19 recordsLinked to original sources

Interactions of CD80 and CD86 with CD28 and CTLA4.

CD80 and CD86 are cell surface glycoproteins expressed on a variety of professional APCs. They have attracted much attention due to their function as potent costimulators of T lymphocyte function through their interaction with CD28 and possibly CTLA4. Because inhibitors of this interaction may have therapeutic relevance in human autoimmune disease, we investigated the properties of linear peptides derived from conserved regions of CTLA4 and CD80 known to be essential for binding. None of these peptides were sufficient to bind ligand, nor did they act as potent competitive inhibitors. Conformationally constrained versions of the CTLA4 motif were also inactive. These results suggested that other parts of the proteins are important in determining binding, so a series of modified CD80 and CD86 molecules were constructed in an attempt to identify other binding determinants. Insertion of two residues between the two Ig domains of CD80 resulted in decreased affinity for CTLA4, but a similar mutation in CD86 was without effect. We also identified another asymmetry between CD80 and CD86 in that the V domain of CD86 but not that of CD80 is sufficient for CTLA4 binding. The CD86-V domain appears to have CTLA4 binding properties equivalent to that of intact CD86. These data illustrate a fundamental difference between these costimulatory molecules and suggest a mechanism by which they may be differentially recognized by receptors on the T cell surface.

Abatacept

Transcription of interferon-alpha 2 alleles from virus-induced human leucocytes and lymphoblastoid cells of African origin.

It has been previously shown that the genomic DNA of both the lymphoblastoid cell line (Namalwa) and certain human donors (of African origin) contain sequences corresponding to two allelic variants, b and c, of the interferon-alpha 2 gene (IFNA2). Little is known however about the relative expression of these two alleles in heterozygous cells. We have therefore examined the transcription of allelic variants of the human IFNA2 locus by both normal human leucocytes (from a heterozygous donor) and Namalwa cells. Analysis of cDNA clones identified sequences of both allelic variants, IFNA2b and c, indicating active transcription by both cell types. Analysis of tryptic and peptic peptides derived from purified IFN-alpha 2 also demonstrated both IFN-alpha 2b and IFN-alpha 2c proteins. Populations of virus induced heterozygous cells can therefore effectively transcribe and secrete both forms of IFN-alpha 2 simultaneously, with no apparent restrictions on expression of either allele.

Alleles

Interferon system defects in human malignant melanoma.

We have examined the ability of melanoma cell lines and normal human melanocytes, which have demonstrable intact IFN genes, to secrete both IFN-alpha and IFN-beta in response to induction with virus. Normal melanocytes were found to secrete both IFN-alpha and IFN-beta after virus induction. In contrast, although all but one of the melanoma lines tested were capable of secreting IFN-beta, none were capable of IFN-alpha secretion. This phenomenon was not due to defects in either translation of IFN-alpha mRNA or secretion of IFN-alpha proteins, since transfection of melanoma lines with a constitutive IFN-alpha 2b expression vector resulted in the secretion of high levels of IFN. On further examination, this inability to express natural IFN-alpha appeared to be due to a defect in activation of the IFN-alpha promoters, since constructs containing the IFN-alpha promotor were completely unresponsive to viral infection in melanoma cells but inducible in melanocytes. These results show that there is a specific disruption of IFN-alpha gene activation rather than IFN-beta in melanoma lines and suggest that this is due to disruption of a trans-acting IFN-alpha gene transcription factor. Disruption of this factor and its consequences may be important in the development of malignant melanoma.

Base Sequence

Engineered anti-CD38 monoclonal antibodies for immunotherapy of multiple myeloma.

Multiple myeloma is a malignancy of plasma cells for which there is no effective treatment. To develop an immunotherapeutic agent, we have raised a high affinity mAb (AT13/5) against CD38, one of the few well-characterized surface Ags present on myeloma cells. Since murine monoclonals have many disadvantages as human therapeutics, we prepared two engineered forms of the Ab: a CDR-grafted humanized IgG1 and a chimeric FabFc2 (mouse Fab cross-linked to two human gamma 1 Fc). To retain affinity in the humanized Ab, a number of changes were required to the human framework regions of the heavy chain. In particular, through systematic mutagenesis and computer modeling, we identified a critical interaction between the side chains of residues 29 and 78, which may be important for the humanization of other Abs. The properties of the humanized IgG1 and FabFc2 constructs were compared in a series of in vitro tests. Both constructs efficiently directed Ab-dependent cellular cytotoxicity against CD38-positive cell lines, but C was activated only poorly. Neither construct caused down-modulation of CD38, nor did they affect the NADase activity of CD38. Despite their differing structures, both Abs showed similar activity in most assays, although the humanized IgG1 was more potent at inducing monocyte cytotoxicity. These data represent the first direct comparison of CDR-grafted and chimeric FabFc2 forms of the same Ab, and offer no support for the perceived advantages of the FabFc2. These Abs show promise for therapy of multiple myeloma and other diseases involving CD38-positive cells.

ADP-ribosyl Cyclase

Detection of rare allelic variants of the interferon-alpha 2 gene in human genomic DNA.

We have analyzed human donor DNA for the presence of sequences corresponding to allelic variants of the IFN-alpha 2 locus. Using both restriction enzyme digestion of PCR-amplified fragments and sequence analysis of these fragments, we have identified the three reported allelic variants, IFN-alpha 2a, IFN-alpha 2b, and IFN-alpha 2c, in genomic DNA derived from donors of African or Afro-Caribbean origin. This is the first report of the IFN-alpha 2a and IFN-alpha 2c alleles occurring in human donor DNA and supports the view that these are variants of the predominant IFN-alpha 2b allele rather than arising from mutations occurring in cultured cells.

Alleles

Generation and selection of monoclonal antibodies, single-chain Fv and antibody fusion phage specific for human melanoma-associated antigens.

A panel of 13 murine monoclonal antibodies (mAbs) recognizing antigens on human melanoma cells but not on melanocytes was generated. Two mAbs (LHM3 and LHM5) stained sections of melanoma but not normal tissues. mAbs LHM2 and LHM8 stained only a minority of normal tissues. The mAbs differed further in their staining patterns on melanoma cell lines HMB2, DX3 and SK23 in FACS. The mAbs recognize antigens of 34, 38, 57, 94, 190-200 and > 200 kD. One mAb each bound to each of the antigens HLA DR (LHM4) and high molecular weight proteoglycan (LHM2). The high molecular weight proteoglycan-specific mAb was used to construct a single-chain Fv (scFv) antibody fragment and an antibody fusion phage in Escherichia coli. Both the scFv and the fusion phage were shown to bind specifically to melanoma cells. A method for the selection of melanoma cell-binding phages from phage libraries is described.

Animals

Interferon (IFN)-alpha 2 genotype analysis of Chinese chronic hepatitis B patients undergoing recombinant IFN-alpha 2a therapy.

Sixteen Chinese chronic hepatitis B virus (HBV)-infected patients were treated with recombinant interferon-alpha 2a (rIFN-alpha 2a). Of these, 8 made a response to IFN, with titers of neutralizing antibody of 141-4525 as determined by an antiviral neutralization bioassay. To determine whether the immunogenicity of the IFN was directly linked to the patients' genotype, their genomic DNA was analyzed for the presence of the human IFN-alpha 2a gene. None of the patients possessed the gene for IFN-alpha 2a, but only 50% developed neutralizing antibodies. The hypothesis, therefore, of a direct link between antibody formation and genotype cannot be sustained. Alternative explanations of the immunogenicity of IFN-alpha 2a must be sought.

Adult

Comparison of expression of a humanized monoclonal antibody in mouse NSO myeloma cells and Chinese hamster ovary cells.

We report a detailed comparison of two commonly used stable, amplifiable mammalian expression systems (Chinese Hamster Ovary cells/dihydrofolate reductase and Mouse NSO myeloma/glutamine synthetase) used to express a humanized IgG1 monoclonal antibody. We compare copy number and steady state mRNA levels of both the selectable marker and heavy chain of the antibody throughout the selection and amplification process. In both cell lines, copy number and steady state levels of heavy chain and selectable marker increased during selection and were further increased during amplification. As expected, an increase in steady state mRNA levels of heavy chain correlated with an increase in expression of antibody whilst an increase in the steady state levels of mRNA of the selectable marker correlated with increased resistance to the selective agent. In NSO and CHO cells producing equivalent amounts of antibody, the copy number of the antibody genes and selectable marker was significantly higher in the CHO cells than in the NSO cells. However, the steady state mRNA levels of the heavy chain of the antibody were virtually identical. Rates of protein secretion in the two cell lines were also compared and found to be very similar. When the antibody purified from both systems was compared in a number of functional assays they behaved identically.

Animals

Rescue, expression, and analysis of a neutralizing human anti-hepatitis A virus monoclonal antibody.

A human anti-hepatitis A virus mAb was rescued from a hybridoma cell line by conventional cDNA cloning, and expressed in CHO cells. The full nucleotide sequences of the mAb H and L chains were determined, revealing a VHI/V lambda II V region combination. Comparisons with germline V genes suggest that the V regions had undergone somatic mutations characteristic of an Ag-driven immune response. A comparison of the binding to hepatitis A virus between mAb derived from the CHO cells and the original hybridoma cell line using ELISA, radioimmunoprecipitation, and solid-phase competition RIA, indicated that the CHO cell-derived mAb fully retained the specificity of the mAb produced by hybridoma cells. Analysis of viral neutralization using a radioimmunofocus inhibition assay demonstrated the retention of antibody functionality after expression in CHO cells, demonstrating the use of this technique in the rescue and high level expression of unstable efficacious human mAb.

Amino Acid Sequence

A humanized CD18 antibody can block function without cell destruction.

Leukocyte integrins are intimately involved in transient adherence of leukocytes to endothelium and to each other in the processes of extravasation and cell activation. In this study, seven mAb directed against human CD11a and two mAb directed against human CD18, the alpha- and beta-chains of the leukocyte functional Ag-1 molecule, respectively, were analyzed for their ability to inhibit several leukocyte functional Ag-1-mediated interactions. The best blocking mAb in these studies, a rat anti-human CD18, YFC51.1, was subsequently humanized by complementarily-determining region grafting, associated with human C regions and expressed. The humanized mAb was shown to maintain binding for human CD18. Even though the humanized mAb was an IgG1 isotype it still retained the functional blocking characteristics of the rat mAb while failing to mediate cell killing. The IgG1 mAb was unable to bind human Clq and could block but did not mediate antibody-dependent cellular cytotoxicity.

Animals

Immunogenicity of a hybrid Plasmodium falciparum malaria antigen.

A recombinant baculovirus-expressed hybrid protein containing epitopes for the C-terminal fragment of the Plasmodium falciparum precursor to the major merozoite surface antigens (PMMSA) and the tetrapeptide repeats of the circumsporozoite protein (CSP) was assessed for its immunogenicity. Murine MHC-II restriction of the antibody response to the CSP repeats was not overcome by the PMMSA component, the response to which showed no restriction. In an adjuvant trial the highest antibody titres in rabbits to both components of the hybrid were obtained using Freund's adjuvant. Lack of a boosting antibody response to the CSP repeats appeared to be linked to the conformation of the PMMSA component. Formulation of the hybrid protein into Iscoms gave antibody titres of only short duration to both components.

Adjuvants, Immunologic

Humanized monoclonal antibody CAMPATH-1H: myeloma cell expression of genomic constructs, nucleotide sequence of cDNA constructs and comparison of effector mechanisms of myeloma and Chinese hamster ovary cell-derived material.

Expression of CAMPATH-1H, a humanized MoAb directed against an abundant surface antigen on human lymphocytes, has been studied using transfected myeloma cells. As the site of chromosome integration of DNA transfected into a cell is random we investigated the feasibility and frequency of hitting a 'jackpot' site for expression after co-transfection with CAMPATH-1H heavy and light chain constructs in genomic context. A cell line generating 40 micrograms/ml of CAMPATH-1H in spent culture supernatant was achieved. The full nucleotide sequence of the CAMPATH-1H heavy and light chain cDNA clones is also shown, in addition a comparison of the effector mechanisms, antibody dependent cellular cytotoxicity and complement dependent cytotoxicity, of myeloma cell and Chinese hamster ovary (CHO) cell-derived CAMPATH-1H is reported.

Alemtuzumab

Rescue and expression of human immunoglobulin genes to generate functional human monoclonal antibodies.

Human monoclonal antibody production has been hampered for many years by the instability of cell lines and low levels of expression of the antibodies. We describe here the rescue of human immunoglobulin genes utilizing micro-mRNA preparation from a small number of human hybridoma cells and conventional cDNA cloning. This allows cloning and immediate high-level expression from full-length human heavy and light chain cDNA molecules and provides a mechanism to rescue whole human monoclonal antibodies of proven efficacy.

Antibodies, Monoclonal

Immunoglobulin complementarity-determining region grafting by recombinant polymerase chain reaction to generate humanised monoclonal antibodies.

We describe an approach to rapidly generate humanised monoclonal antibodies by grafting rodent complementarity-determining regions onto human immunoglobulin frameworks using recombinant polymerase chain reaction (PCR) methodology. The approach was applied to grafting a rat complementarily-determining region onto a human framework and amplifying the entire humanised heavy chain. The terminal oligodeoxyribonucleotide primers incorporated restriction sites to allow forced cloning into plasmid vectors for sequencing and expression. No nucleotide errors were introduced into the 1463-bp sequence even after sequential applications of PCR.

Animals

Protein retention in yeast rough endoplasmic reticulum: expression and assembly of human ribophorin I.

The RER retains a specific subset of ER proteins, many of which have been shown to participate in the translocation of nascent secretory and membrane proteins. The mechanism of retention of RER specific membrane proteins is unknown. To study this phenomenon in yeast, where no RER-specific membrane proteins have yet been identified, we expressed the human RER-specific protein, ribophorin I. In all mammalian cell types examined, ribophorin I has been shown to be restricted to the membrane of the RER. Here we ascertain that yeast cells correctly target, assemble, and retain ribophorin I in their RER. Floatation experiments demonstrated that human ribophorin I, expressed in yeast, was membrane associated. Carbonate (pH = 11) washing and Triton X-114 cloud-point precipitations of yeast microsomes indicated that ribophorin I was integrated into the membrane bilayer. Both chromatography on Con A and digestion with endoglycosidase H were used to prove that ribophorin I was glycosylated once, consistent with its expression in mammalian cells. Proteolysis of microsomal membranes and subsequent immunoblotting showed ribophorin I to have assumed the correct transmembrane topology. Sucrose gradient centrifugation studies found ribophorin I to be included only in fractions containing rough membranes and excluded from smooth ones that, on the basis of the distribution of BiP, included smooth ER. Ribosome removal from rough membranes and subsequent isopycnic centrifugation resulted in a shift in the buoyant density of the ribophorin I-containing membranes. Furthermore, the rough and density-shifted fractions were the exclusive location of protein translocation activity. Based on these studies we conclude that sequestration of membrane proteins to rough domains of ER probably occurs in a like manner in yeast and mammalian cells.

Endoplasmic Reticulum