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Biomedical subjects

D B Kotloff

Publications and source records attributed to D B Kotloff.

5 recordsLinked to original sources

V(D)J recombination in peritoneal B cells of leaky scid mice.

Developing lymphocytes in immune-deficient severe combined immunodeficient (scid) mice express a defective recombinase activity and rarely succeed in making an antigen receptor; those cells that do succeed account for the known B and T cell leakiness in this mutant mouse strain. To gain more insight into the nature of the scid defect, we assessed the status of heavy (H) and light (L)k, chain genes in immunoglobulin (Ig)Mk-secreting B cells from the peritoneal cavity of old leaky scid mice, the only lymphoid site where scid B cells have been routinely detected. We found these cells to be unusual in that their nonexpressed H chain alleles were either abnormally rearranged or in germline configuration (wild-type B cells generally show normal rearrangements at both H chain alleles). The VDJH junctions of the expressed alleles showed little or no nontemplated (N) addition, similar to neonatal B cells from wild-type mice. About half of the V(D)J junctions lacking N additions contained nucleotides that could have been encoded by either of the participating coding elements (VDH, DJH, or VJk), indicating that the recombination occurred between short stretches of homology. Unusually long templated (P) additions were seen in both VDJH and VJK junctions, and many recombinations appeared to involve P-based homologies. These findings suggest that: (a) B cell leakiness results from a low frequency of coding joint formation in cells expressing the defective scid recombinase activity; (b) joining of scid coding ends is facilitated when the ends contain short stretches of sequence homology, where in many cases, one of the homologous sequences results from a P addition; and (c) scid peritoneal B cells may arise early in ontogeny.

Aging↗

Scid mouse Pre-B cells with intracellular mu chains: analysis of recombinase activity and IgH gene rearrangements.

Four Pre-B cell clones with intracellular mu chains were recovered from individual leaky scid mice by transformation of bone marrow or peritoneal cells with Abelson murine leukemia virus. Three clones were derived from independent bone marrow cell cultures. These express the defective scid recombinase activity and contain truncated mu chains resulting from abnormal and/or incomplete (D to J only) gene rearrangements. A fourth clone was obtained from a peritoneal cell culture and may represent a revertant. It expresses a recombinase activity indistinguishable from that of wild-type cells; one of its rearranged IgH alleles (VDJ+) encodes a normal size mu chain, the other is non-productively rearranged (VDJ-).

Alleles↗

Effect of TH-lines and clones on the growth and differentiation of B cell clones in microculture.

Antibody isotype expression by B cell clones was analyzed using in vitro microcultures containing low numbers of hapten-gelatin-enriched B cells and higher numbers of hemocyanin-specific helper T cell lines or clones. Twenty-eight to sixty-three percent of clones grown in microculture with haptenated hemocyanin and T cells from established lines expressed IgG and/or IgA isotypes in random mixtures, almost always accompanied by IgM. Helper T cells from hemocyanin-specific clones also supported the expression of non-IgM isotypes by the B cell clones, suggesting that a single specificity of T cell can provide sufficient growth and differentiation factors for the display of isotype switching. A positive correlation between the antibody output of clones and the expression of non-IgM isotypes indicated that the switching process may be associated with cell division. Although memory B cells that give clones expressing IgG and/or IgA in the absence of IgM are also enriched on haptenated gelatin, they are not stimulable under conditions of this microculture assay.

Animals↗

Carrier-specific T cells sufficient for the expression of multiple isotypes in B cell cultures.

A modified splenic fragment assay was used to assess the role of antigen-specific helper T cells in B cell isotype expression. Limiting numbers of carrier-specific helper T cells from lines or clones were injected along with a source of B cells into lethally irradiated unprimed recipients. The incidence of lodging of the T cell lines in recipient spleens at 18 h was determined by autoradiography to be 1.5 to 4.3% of the injected cells. These T cells were necessary and sufficient for the generation of T-dependent B cell responses within splenic fragments cultured in vitro with specific antigen. A comparison of isotypic responses from splenic and Peyer's patch B cells generated with the same T cell population revealed that a high proportion of the response from Peyer's patch B cells consisted of IgA antibody exclusively (46-57%) while the percentage of such responses from splenic B cells was much lower (7-10%). Thus, the isotype pattern of the response reflected the B cell source. Experiments in which cloned hemocyanin-specific T cells provided help to T-depleted spleen cells within splenic fragments from athymic recipients indicated that a single specificity of helper T cell is both necessary and sufficient to support the generation of antibody responses consisting of multiple isotypes. Isotype-specific T cells do not appear to be required in this system.

Animals↗

CH isotype switching in B cell differentiation.

We have functionally defined a number of B cell subsets that likely represent B cells at different stages of development, based on the pattern of CH isotypes expressed by their clones in splenic fragment or microcultures and on those factors necessary in culture to support the growth of a clone displaying a particular isotype or set of isotypes. Our observations are consistent with isotype switching being a stochastic process which results in the occurrence of progressive isotype restriction in members of a diversifying clone. The surface marker best predictive of the pattern of isotypes a clone may secrete is the sIg isotype of its B cell precursor. Those B cells that have switched to the expression of non-IgM isotypes in vivo can be stimulated in vitro in splenic fragments to give an antibody-secreting clonal culture but so far cannot be stimulated in a microculture of dispersed cells that supports clones secreting IgM alone or with other isotypes.

Animals↗