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Biomedical subjects

S D Wagner

Publications and source records attributed to S D Wagner.

13 recordsLinked to original sources

Preferential selection of receptor-binding variants of influenza virus hemagglutinin by the neutralizing antibody repertoire of transgenic mice expressing a human immunoglobulin mu minigene.

An analysis was made of the neutralizing antibody repertoire, for influenza virus hemagglutinin (HA) of transgenic mice expressing a human immunoglobulin mu (IgH) minigene, by monoclonal antibody (MAb) selection and sequencing of the HA genes of X31 (H3N2 subtype) laboratory variants. Whereas previously reported laboratory variants, selected in ovo with high-affinity murine MAbs of the IgG class, differed from wild-type virus by a single amino acid residue change in one of the major antigenic sites, neutralizing MAbs from transgenic donors selected novel variant viruses with altered receptor-binding specificity and contained residue changes in both the receptor-binding pocket (HA1 225 or HA1 226) and an antigenic site (HA1 135, HA1 145, or HA1 158). Changes in receptor-binding specificities of the variant viruses were confirmed by their resistance to inhibition by horse serum glycoproteins and altered binding to neoglycoproteins. The residue changes in variant virus V-21.2 (HA1 135 G-->R, 225 G-->D) abrogated neutralization by each of the MAbs; nevertheless V-21.2 was recognized by its own selecting MAb in enzyme-linked immunosorbent assay and therefore qualified as an adsorptive mutant rather than an antigenic variant. We consider that a low-affinity neutralizing antibody response may preferentially select for receptor-binding variants of influenza virus HA.

Animals↗

Antibody expression from the core region of the human IgH locus reconstructed in transgenic mice using bacteriophage P1 clones.

Mice carrying transgenic human immunoglobulin gene miniloci can be used for the production of human monoclonal antibodies. The human variable region (V) gene segments in these miniloci undergo productive rearrangement in mouse lymphoid tissue to yield a population of B lymphocytes expressing a repertoire of antibodies. Many of the miniloci studied to date have included only a small number of germline gene segments in an artificially compact configuration. Here we describe the use of the bacteriophage P1 cloning system to create mice carrying the core region of the human immunoglobulin heavy chain (IgH) locus. Three P1 clones carrying overlapping regions of the human IgH locus (spanning the five JH-proximal VH segments, the entire DH and JH clusters, and the C mu and C delta constant regions) were injected into mouse eggs and appear to have reconstituted the core region of the locus (> 180 kb) following homologous recombination with each other. While this translocus yielded a titer of serum immunoglobulin similar to that obtained with a smaller plasmid-based minilocus, the P1-based locus gave rise to substantially greater diversification by somatic hypermutation. Such diversification is important for obtaining high-affinity antibodies. The results show the usefulness of the P1 system in facilitating the manipulation and recreation of large transgenes.

Amino Acid Sequence↗

The targeting of somatic hypermutation.

Somatic hypermutation does not occur randomly within immunoglobulin V genes but, rather, is preferentially targeted to certain nucleotide positions (hot spots) and away from others (cold spots). Cold spots often coincide with residues essential for V gene folding. Hotspots, which appear to be strategically located to favour affinity maturation, are most frequently located in the CDRs (particularly CDR1) though conserved hotspots are also found at the base of FR3. Hotspots are in part created by local DNA sequence and the strong biases of codon usage in V genes indicate that the genes have evolved such that somatic hypermutation is targeted to those parts of the V where it is likely to prove most useful. These features of mutational hotspots and biased codon usage are also evident in V genes of lower animals suggesting that diversification by strategic targeting of non-templated mutation may have evolved early in antigen receptor evolution.

Animals↗

Somatic hypermutation of Ig genes in patients with xeroderma pigmentosum (XP-D).

Antibody diversification by somatic hypermutation occurs by the introduction of nucleotide substitutions in and around the rearranged Ig V gene segments. Several characteristics of the process suggest that the introduction of mutations is linked to Ig gene transcription. Since there is a connection between mutation and repair with indications that both processes might show linkage to transcription, we asked whether defects in a component of the transcription factor TFIIH which lead to an inability to carry out nucleotide excision repair also affect somatic hypermutation. A PCR strategy was devised that required small samples of peripheral blood and enabled us to monitor hypermutation of a single, abundantly used VH gene. However, the results showed that in xeroderma pigmentosum patients (complementation group D), somatic hypermutaton appears to take place unaffected as regard both extent and distribution.

Genes, Immunoglobulin↗

Somatic hypermutation of immunoglobulin genes.

The relationship between somatic hypermutation and affinity maturation in the mouse is delineated. Recent work on the anatomical and cellular site of this process is surveyed. The molecular characteristics of somatic hypermutation are described in terms of the region mutated and the distinctive patterns of nucleotide changes that are observed. The results of experiments utilizing transgenic mice to find out the minimum cis-acting sequences required to recruit hypermutation are summarized. The hypothesis that V gene sequences have evolved in order to target mutation to certain sites but not others is discussed. The use that different species make of somatic hypermutation to generate either the primary or secondary B cell repertoire is considered. Possible molecular mechanisms for the hypermutation process and future goals of research are outlined.

Animals↗

Similar patterns of V kappa gene usage but different degrees of somatic mutation in hairy cell leukemia, prolymphocytic leukemia, Waldenstrom's macroglobulinemia, and myeloma.

To compare V kappa gene usage and the amount of somatic mutation in rearranged Ig genes from patients with lymphoproliferative disorders, we have polymerase chain reaction-amplified and sequenced a total of 26 V kappa genes from a total of 55 cases. Six sequences were obtained both from six cases of prolymphocytic leukemia (PLL) and from nine cases of hairy cell leukemia (HCL). Seven sequences were obtained both from 11 cases of Waldenström's macroglobulinemia (WM) and 29 cases of multiple myeloma (MM). Eleven different germline genes have been used in this series, indicating a wide but nonrandom usage of germline Ig gene rearrangements in these disorders. Comparison of the nucleotide sequences of V kappa genes obtained from B-cell malignancies with germline V kappa genes shows that somatic mutation is rare in PLL and HCL and common in WM and MM. Analysis of the pattern of mutations suggests that WM and MM are derived from B cells that have been selected by antigen at a relatively late stage of differentiation.

Amino Acid Sequence↗

Antibodies generated from human immunoglobulin miniloci in transgenic mice.

One approach to the production of human monoclonal antibodies focusses on the creation of transgenic mice bearing human immunoglobulin gene miniloci. Whilst such loci undergo lymphoid-specific gene rearrangement, only a small proportion of mouse B cells express the human immunoglobulin chains; the miniloci thus contribute poorly to serum immunoglobulin. Attributing this poor performance to competition between the transgenic and endogenous immunoglobulin loci, we crossed mice bearing a human immunoglobulin heavy-chain (HulgH) minilocus with animals that had been rendered B cell-deficient by disruption of their endogenous heavy-chain locus. The results were dramatic: the human minilocus rescued B cell differentiation such that effectively all B cells now expressed human mu chains. The concentration of antibody in the mouse serum recognised by anti-human mu increased to a concentration about one sixth that in human serum. The HulgH antibodies are heterogenous with diversity being generated by both combinatorial and junctional processes. Following antigen challenge, specific antibody is elicited but at low titre.

Amino Acid Sequence↗

The diversity of antigen-specific monoclonal antibodies from transgenic mice bearing human immunoglobulin gene miniloci.

An approach to the preparation of antigen-specific human monoclonal antibodies focuses on mice transgenic for human immunoglobulin gene miniloci; the V gene segments in these miniloci undergo productive rearrangement to yield mouse B cells expressing human immunoglobulin (Ig) chains. The general usefulness of this strategy hinges on whether it is feasible to obtain specific, high-affinity antibodies following immunization of such animals with a variety of antigens. To test this, we have investigated the antigen-specific responses in mice which carry human IgH miniloci (constaining just one or two VH segments) instead of a functional mouse IgH locus. Although serum responses were relatively weak, monoclonal antibodies were readily obtained to all immunogens tested (a hapten, foreign proteins and human lymphoma cells). The affinities of two of the hapten-specific (anti-2-phenyl-oxazol-5-one) antibodies were 60 and 160 nM, values intermediate between what is typically obtained in the primary and secondary response of normal mice. Sequence analysis of the rearranged V genes revealed that junctional events made a major contribution to diversity with a considerable amount of apparently non-templated sequence at the V-D and D-J borders. Somatic hypermutation was also evident within the expressed V gene segments of many of the antigen-specific hybridomas. These findings augur well for the general usefulness of the transgenic approach for the isolation of high-affinity human antibodies to a wide range of antigens and suggests that the miniloci need not be particularly large.

Amino Acid Sequence↗

V kappa gene segments rearranged in chronic lymphocytic leukemia are distributed over a large portion of the V kappa locus and do not show somatic mutation.

The structure of the human V kappa locus has been thoroughly investigated, but how the germ-line V kappa gene segment repertoire is actually sampled in kappa chain gene rearrangements is not known. In order to begin to answer this question we have polymerase chain reaction (PCR) amplified the rearranged V kappa genes from 26 kappa-expressing cases of chronic lymphocytic leukemia (CLL), followed by cloning and sequencing of the PCR product. All four V kappa gene families were represented amongst rearranged genes. In 25 out of 32 cases, the sequence of the rearranged gene matches perfectly that of 1 of 11 different known germ-line V kappa genes, indicating that no somatic mutation has occurred. Of the remaining 7 rearranged V kappa genes, 4 differ from known germ-line genes by only one or two amino acid residues; and 3 differ from each other and from all known sequences by 5 or more residues, suggesting that somatic mutation has occurred in these 3 cases. We conclude that: (a) in at least three-quarters of cases the rearranged genes are unmutated; (b) there is preferential usage of individual V kappa genes but not of V kappa gene families; and (c) the V kappa genes used are widely dispersed in the V kappa locus.

Aged↗

von Willebrand heterotopic osteochondrofibrosis in Doberman pinschers: five cases (1980-1987).

Five cases involving female Doberman Pinschers, each with a mass composed of osseous, chondrous, or fibrous tissue, or a combination thereof, formed in or around the muscles of the hip, were reviewed. In each dog, the mass severely limited the coxofemoral joint range or motion, especially when the joint was extended. Surgical debulking resulted in a favorable outcome. All dogs tested had plasma concentrations of von Willebrand factor antigen below established normal limits. We believe that the low concentrations of von Willebrand factor antigen commonly found in Doberman Pinschers may predispose them to the development of this condition and its resulting pelvic limb lameness, presumably because of increased risk of microvascular bleeding. This association is presumptive because 2 dogs in our study had a history of excessive bleeding either before or after being treated for the hip condition. Trauma was associated in 2 cases. All 5 dogs, however, bled more than usual during the curative surgery. These 5 cases, plus additional reported cases, confirm this syndrome, which warrants recognition. The name von Willebrand heterotopic osteochondrofibrosis of Doberman Pinschers was selected because it identified the basic features of the syndrome.

Animals↗

Radiographic and histologic changes after thoracolumbar disc curettage.

Forty-eight thoracolumbar disc spaces were approached by a dorsolateral muscle-separating technique in six mature dogs. Twenty-four of the discs were fenestrated and curetted, and the changes were followed radiographically and histologically for 16 weeks. Disc space collapse was visible radiographically immediately after the surgical procedure, and those disc spaces remained narrow throughout the observation period. Histologically, there was evidence of chondrocyte activation within 2 weeks in the excavated disc spaces. By 16 weeks, fibrocartilage had filled the void in the curetted disc spaces.

Animals↗

Effect of distal femoral growth plate fusion on femoral-tibial length.

Unilateral distal femoral epiphysiodesis in seven 10 week old crossbred Doberman Pinscher littermates resulted in a significant (p less than or equal to 0.0001) femoral length deficit of 23.5% without clinically detectable alterations in gait up to 42 weeks after surgery. In addition to compensatory hyperextension of the stifle joint, the ipsilateral tibia showed significant (p less than or equal to 0.0001) acceleration in longitudinal growth. The combined femoral-tibial length at necropsy was still significantly shorter (p less than or equal to 0.0001) in the treated leg than in the control leg despite the increased tibial growth. Unlike other species, neither of the other two femoral growth plates produced any significant compensatory increase in length after fusion of the distal growth plate. The femoral condyles of the treated legs rotated caudally and degenerative joint disease developed in all stifle joints of the treated legs. No contralateral limb abnormalities were evident radiographically.

Animals↗