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C Berek

Publications and source records attributed to C Berek.

At least 37 records · Page 2Linked to original sources

Anti-CD2 antibodies induce T cell unresponsiveness in vivo.

The CD2 receptor functions as an adhesion and signal molecule in T cell recognition. Multimeric binding of CD2 on T cells to its physiologic ligand LFA-3 on cognate partner cells in vitro efficiently augments the antigen-specific T cell signal delivered by the T cell receptor/CD3 complex. The precise contribution of the antigen-nonspecific CD2-LFA-3 interactions to T cell immune responses in vivo, however, has been difficult to assess. Here we analyzed the role of CD2 in the murine immune response using a nondepleting anti-CD2 monoclonal antibody that induces a marked, reversible modulation of CD2 expression on murine T and B cells in situ. This modulation is dose and time dependent, specific for CD2, and does not require the Fc portion of the antibody. Anti-CD2 antibodies [rat IgG1 or F(ab')2] significantly inhibit the CD4+ T cell-mediated response to hen egg lysozyme and the cytotoxic CD8+ T cell response to a syngeneic tumor cell line. In both cases, anti-CD2 antibodies are only effective when administered before or within 24 h after antigen priming. The suppression of the antitumor response corresponds to a sixfold reduction of specific cytotoxic T lymphocyte precursor cells and results in the abrogation of protective antitumor immunity. Anti-CD2 antibodies also affect the humoral immune response to oxazolone: the isotype switch from specific IgM to IgG1 antibodies is delayed, whereas the IgM response is unaltered. In addition, a single antibody injection results in sustained polyclonal unresponsiveness of T cells irrespective of antigen priming and CD2 modulation. These results document that CD2-mediated signals induce a state of T cell unresponsiveness in vivo.

Animals

A private idiotype can become recurrent through genetic recombination and gene(s) unlinked to the Igh locus governs its expression.

Any immune response is characterized by its idiotypic profile. Two different kinds of idiotype (Id) have been described. Private Id are restricted to a few individuals from a species while recurrent Id appear in a large majority of individuals from the same species immunized with the same antigen. We describe, in this report, an experimental model whereby a private Id can become recurrent through genetic recombination. The immune response of A mice against the hapten arsonate is characterized by a recurrent Id called cross-reactive idiotype A (CRIA). A strongly CRI, called CRIA-like, can be occasionally detected in some BALB/c mice (5% to 10%) immunized with arsonate. Molecular studies show that CRIA and CRIA-like antibodies have highly homologous D segments and identical light chains. By contrast, their VH segments are vastly dissimilar. We have examined the anti-arsonate response of inbred strains of mice whose Igh loci are recombinant between those of A/He and BALB/c. Interestingly, we have observed that the CRIA-like Id which is private in BALB/c becomes recurrent in the AXC-1 strain which harbors the VH genes from BALB/c, the DH and CH genes from A/He. Structural studies demonstrate that highly homologous, VH, VL and D segments are used in BALB/c and AXC-1 mice. The basis for this differential expression of highly similar genes could be linked to the DH locus. However, F1 mice stemming from the cross between AXC-1 and BALB/c do not express the Id. The backcross analysis shows that the non-expression of the Id in F1 mice depends on genes unlinked to the Igh locus.

Animals

Somatic mutations in antibodies expressed by germinal centre B cells early after primary immunization.

We have studied the maturation of the immune response by looking at the generation of antibody diversity in germinal centre B cells. Mice were immunized with the antigen 2-phenyloxazolone. Germinal centre B cells, defined by their strong binding to peanut agglutinin (PNA(hi], were sorted from the spleen and fused. Ten days after immunization high numbers of antigen specific hybridoma lines were obtained from the PNA(hi) subset of B cells, suggesting that the small fraction of B cells which are PNA(hi) harbour the antigen activated population. The majority of the day 10 sequences from PNA(hi) cells were shown to be mutated. However, in contrast to results from later stages of the immune response, most of the mutations found were silent. The preferential expansion of B cell clones expressing the mutations characteristic of the mature response was not observed at this stage. Among these hybridoma lines was at least one which, apparently through somatic mutation, had lost the ability to bind antigen. We conclude that in the micro-environment of the germinal centre the B cell repertoire is diversified by hypermutation.

Animals

Molecular dissection of an antigen-specific immune response.

Selection defines the repertoire of the primary response, and also which cells differentiate and enter the pool of the memory cells. Whereas the primary response is drawn from the germline repertoire, the memory response consists overwhelmingly of cells which have been hypermutated and selected to express receptors of high affinity. The accumulation of somatic mutations over time indicates that the activation of the memory cell by antigen also reactivates the hypermutation mechanism. Since the frequency of somatic mutations correlates with an increase in antibody affinity, an efficient selection operates not only on the primary B cells when first stimulated by antigen, but also on the memory cells after secondary or tertiary immunization.

Animals

Three-dimensional structure of Fab R19.9, a monoclonal murine antibody specific for the p-azobenzenearsonate group.

The crystal structure of Fab R19.9, derived from an anti-p-azobenzenearsonate monoclonal antibody, has been determined and refined to 2.8-A resolution by x-ray crystallographic techniques. Monoclonal antibody R19.9 (IgG2b kappa) shares some idiotopes with a major idiotype (CRIA) associated with A/J anti-p-azobenzenearsonate antibodies. The amino acid sequences of the variable (V) parts of the heavy (VH) and light (VL) polypeptide chains of monoclonal antibody R19.9 were determined through nucleotide sequencing of their mRNAs. The VL region is very similar to that of CRIA-positive anti-p-azobenzenearsonate antibodies as is VH, except for its third complementarity-determining region, which is three amino acids longer; it makes a loop, unique to R19.9, that protrudes into the solvent. A large number of tyrosine residues in the complementarity-determining region of VH and VL, with their side chains pointing towards the solvent, may have an important function in antigen binding.

Amino Acid Sequence

Monoclonal BALB/c anti-progesterone antibodies use family IX variable region heavy chain genes.

Variable region nucleotide sequences and respective translated amino acid sequences for three heavy chains (DB3, 11/32 and 10/8) and two light chains (DB3 and 11/32) of monoclonal mouse IgG1 anti-progesterone antibodies have been determined by primer extension mRNA sequencing. The three VH regions exhibit the same rarely observed VH IX gene family and have greater than 88% homology between them. Two associated light chain sequences are 95% homologous and belong to the V kappa I group. The N-terminal twenty two amino acids of the kappa light chain of the third antibody 10/8 have been determined by automated protein sequencing and are identical to those of 11/32. Thus, these three monoclonal anti-progesterones derived from separate fusions all use VHIX-V kappa 1 gene combinations.

Amino Acid Sequence

Activation of memory and virgin B cell clones in hyperimmune animals.

To study the long-term memory response, BALB/c mice were allowed to rest for over a year after a secondary immunization with the hapten 2-phenyl-oxazol-5-one (phOx). For the tertiary immunization two different protocols were used. In one protocol mice were injected i.v. and 3 days later spleen cells were fused to a nonproducing hybridoma line. PhOx-specific hybridomas were established and the sequence of the heavy and light chain mRNA was determined. This tertiary response resembled the diversity pattern of the secondary response with a further increase both in somatic mutations and in the average dissociation constant. The high number of somatic mutations demonstrates the persistence of memory B cell clones over a long time period. In the second protocol mice were boosted with an i.p. injection of alumprecipitated antigen phOx and 7 or 14 days later spleen cells were fused. Sequence analysis of heavy and light chain mRNA showed that these tertiary response antibody molecules had surprisingly few somatic mutations, indicating an activation of virgin B cell clones in these hyperimmunized animals. The maturation of these newly stimulated B cell clones seems to follow somewhat similar rules to those found for the primary response. It appears therefore that the two immunization protocols reflect the response of memory and virgin B cells, respectively.

Amino Acid Sequence

Light chain germ-line genes and the immune response to 2-phenyloxazolone.

Direct sequencing of mRNA has shown that the early primary response of the BALB/c mouse to the hapten 2-phenyloxazolone is dominated by antibodies with a particular light chain, V kappa-Ox1. Although the V kappa-Ox1 sequence is still commonly expressed later in the response it now includes a number of nucleotide changes. From two independent BALB/c germ-line DNA libraries 13 different genes hybridizing to a V kappa-Ox1 probe were isolated and characterized. Two are identical to mRNA sequences found in the early primary response, one of which is the V kappa-Ox1 sequence. None of the germ-line clones show the characteristic nucleotide changes contained in the late anti-phenyloxazolone light chain mRNAs. These results demonstrate that the V kappa-Ox1 sequence used in the early primary response is entirely encoded by the germ-line and further substantiate the importance of somatic mutations in the maturation of the anti-phenyloxazolone response. The statistical analysis of the data shows that the V kappa-Ox1 related germ-line gene family contains greater than 20 and probably less than 50 genes.

Animals

Preliminary crystallographic study of the Fab fragments of two monoclonal anti-2-phenyloxazolone antibodies.

We report on the preparation, crystallization, and preliminary x-ray crystallographic study of the Fab fragments of two monoclonal anti-2-phenyloxazolone antibodies obtained from the secondary response to this hapten. The Fab fragment from one of these (NQ10/12.5) has been crystallized from polyethylene glycol 8000 solutions in a form suitable for high-resolution x-ray crystallographic studies. These crystals are monoclinic, space group C2, with a = 129.2 A, b = 79.4 A, c = 57.7 A, beta = 96.2 degrees, and one Fab/asymmetric unit. Determination of the three-dimensional structure of Fab NQ10/12.5 should help clarify the role of somatic mutation in the maturation of an immune response. This antibody and an anti-lysozyme antibody also under study apparently use the same germ-line encoded VK and a similar VH gene, respectively, as the idiotypic anti-oxazolone antibodies characteristic of the primary response. A comparative study of the two structures should shed light on the role of the pairing of heavy and light chains in the antigen-binding function of antibodies.

Animals

The D segment defines the T15 idiotype: the immunoresponse of A/J mice to Pneumococcus pneumoniae.

In the immune response of BALB/c mice (Igha) to Pneumococcus the majority of antibodies express the idiotype of the myeloma protein TEPC 15 (T15). In contrast mice of the A/J strain (Ighe) do not express this idiotype. Using (BALB/c X A/J)F1, F2 or backcross mice it could be shown that in allotype heterozygous animals (Igha/e) Pneumococcus pneumoniae preferentially stimulates B cells expressing a heavy chain (H) encoded by genes in the BALB/c H chain gene complex. Phosphorylcholine (PC)-specific hybridoma lines were established from BALB/c and A/J spleen cells and idiotypically analyzed using monoclonal antibodies (mAb) specific for the T15 idiotopes 32/65, 10/13, 16/13 or 21A5. Whereas the majority of the BALB/c PC-binding mAb express these idiotopes, only some of the A/J mAb are positive for one or the other of the idiotopes formed by the variable (V) regions of the H and the light chain of the myeloma protein T15. However, 80% of the A/J PC-binding hybridoma proteins were bound by the anti-idiotopic mAb 21A5. This mAb is specific for a determinant partially formed by the C alpha and partially by the V regions of the myeloma protein T15. The mRNA of one of these T15- A/J PC-binding hybridoma lines was sequenced. VH and V kappa were identical with sequences found for BALB/c T15-like antibodies. The sequence of the D segment was structurally very different. The importance of the D segment in the dominant expression of the T15 idiotype is discussed.

Amino Acid Sequence

An idiotypic determinant formed by both immunoglobulin constant and variable regions.

Immunoglobulin idiotypes are serologically defined determinants associated with the variable (V) region of antibody molecules (reviewed in refs 1-4). One of the best defined idiotype systems is that borne by the phosphorylcholine (PC)-binding IgA proteins TEPC15 (T15) and HOPC8 (H8). The T15 idiotype, defined by sera raised in A strain mice, or in rabbits, is considered identical to that expressed by the majority of BALB/c anti-PC antibodies. To define the idiotypic determinants (idiotopes) of which the T15 idiotype is comprised, monoclonal anti-T15 antibodies were used here to examine both serum and monoclonal anti-PC antibodies. The latter were found to differ from T15 with respect to the idiotope defined by the monoclonal anti-idiotope antibody, 21A5, in that the '21A5 idiotope' was absent from anti-PC sera; of the monoclonal anti-PC antibodies examined, only those which were both T15+ and of the IgA isotype seemed to express this idiotype fully. This result suggests that not only the V region, but also the constant (C) region, of the immunoglobulin molecule can contribute to the formation of an idiotypic determinant. Isotype-restricted idiotopes may be involved in the regulation of antibody responses of particular classes.

Animals

Antibodies specific for different T15 idiotopes induce neonatal suppression of the T15 idiotype.

The response of BALB/c mice to Pneumococcus pneumoniae is dominated by a single idiotype defined by the phosphorylcholine-binding myeloma protein TEPC 15 (T15). Injection of newborn BALB/c mice with antibodies to the T15 idiotype will lead to suppression of this idiotype. Such mice will respond to the antigen Pneumococcus, but with idiotypically different anti-phosphorylcholine antibodies. In an attempt to further characterize the effect of anti-idiotypic antibodies on induction of tolerance, three monoclonal antibodies specific for different T15 idiotopes were used. Although these antibodies belonged to the mouse immunoglobulin classes, IgG1 or IgG2 alpha, and were derived from different mouse strains, in all cases, a long lasting suppression could be induced. The data show that injection of idiotope-specific antibodies will suppress the T15 idiotype, but not necessarily the idiotope itself. The results are discussed in terms of the mechanism which will lead to the suppression of a dominating idiotype in the newborn mouse.

Animals