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Biomedical subjects

A Saxon

Publications and source records attributed to A Saxon.

At least 37 records · Page 2Linked to original sources

Macrophage activation by polycyclic aromatic hydrocarbons: evidence for the involvement of stress-activated protein kinases, activator protein-1, and antioxidant response elements.

Polycyclic aromatic hydrocarbons (PAH) contained in fossil fuel combustion particles enhance the allergic response to common environmental Ags. A key question is: what are molecular pathways in the immune system by which PAH and conversion products drive allergic inflammation? Circumstantial evidence suggests that macrophages are involved in PAH-induced responses. We demonstrate that a representative PAH, beta-napthoflavone (BNF), and a representative quinone metabolite, tert-butylhydroxyquinone (tBHQ), induce Jun kinase and p38 mitogen-activated protein kinase activities in parallel with the generation of activator protein-1 (AP-1) mobility shift complexes in THP-1 and RAW264.7 macrophage cell lines. Activation of mitogen-activated protein kinases was dependent on generation of oxidative stress, and could be inhibited by N-acetylcysteine. Another genetic response pathway linked to PAH is the antioxidant response element (ARE), which regulates expression of detoxifying enzymes. BNF and tBHQ activated a human ARE (hARE) reporter gene in RAW264.7 cells. Interestingly, bacterial lipopolysaccharide also induced hARE/chloramphenicol acetyltransferase activity. While the hARE core, GTGACTCAGC, contains a consensus AP-1 sequence (underlined), AP-1 was not required for hARE activation. This suggests that PAH and their conversion products operate via ARE-specific transcription factors in the immune system. BNF and tBHQ did, however, induce AP-1 binding to the hARE, while constitutively active Jun kinase interfered in hARE/chloramphenicol acetyltransferase activation. This suggests that AP-1 proteins negatively regulate the hARE. These data establish important activation pathways for PAH in the immune system and provide us with targets to modulate the effect of environmental pollutants on allergic inflammation.

Animals↗

Enhancement of allergic inflammation by the interaction between diesel exhaust particles and the immune system.

There is growing evidence that fossil fuel combustion products act as adjuvants in the immune system and may lead to enhancement of allergic inflammation. Through this mechanism, particulate air pollutants may be an important contributor to the increased prevalence and morbidity of asthma and allergic rhinitis. In this communication we focus on the role of diesel exhaust particles (DEPs) in skewing the immune response towards IgE production and induction of allergic inflammation. We review experimental studies in animals and humans showing that DEPs enhance IgE production by a variety of mechanisms, including effects on cytokine and chemokine production, as well as activation of macrophages and other mucosal cell types. We discuss metabolic and cellular activation pathways linked to chemicals such as polycyclic aromatic hydrocarbons contained in DEPs and demonstrate how these molecular events may impact cytokine, chemokine, and accessory molecule expression in the immune system.

Animals↗

CD1-restricted T-cells influence IgG subclass and IgE production.

BACKGROUND: Human CD1 has recently emerged as a third family of antigen-presenting molecules that is distinct from either major histocompatibility complex class I or class II. OBJECTIVE: We investigated whether the CD1b-restricted T-cell interaction with antigen alters human IgG subclass and IgE isotype production. METHODS: CD1b-restricted antigen-specific T cells derived from the skin lesion of a patient with leprosy were stimulated with their cognate antigen, lipoarabinomman (LAM) of Mycobacterium leprae, in the presence of CD1+ antigen-presenting cells and tested for their ability to alter IgG subclass and IgE production from IgD+ B cells. RESULTS: CD1-restricted T cells cultured with CD1+ antigen-presenting cells in the absence of LAM induced IgG1, IgG3, IgG4, and IgE, whereas CD1b-restricted T cells cultured in the presence of LAM induced IgG1 and IgG3 and inhibited production of IgG4 and IgE. Production of IgG4 and IgE was rescued in the CD1-restricted system by the addition of anti-interferon-gamma. IgG2 production was not induced under any circumstances. CONCLUSION: In this study we demonstrated that a specific CD1b-restricted T-cell line can behave similarly to classically-restricted Th1-type T cells. CD1b-restricted T-cells of this type may regulate immune responses to microbial pathogens by simultaneously enhancing cell-mediated immunity and downregulating IgG4 and IgE responses.

Antigen-Presenting Cells↗

High dose intravenous immunoglobulin in atopic dermatitis and hyper-IgE syndrome.

BACKGROUND: High dose intravenous immunoglobulin (IVIG) has immunoregulatory and anti-inflammatory properties that might benefit illnesses with exaggerated IgE responses including atopic dermatitis and hyper-IgE immunodeficiency syndrome. OBJECTIVE: To determine if high-dose IVIG would be of benefit to patients with severe atopic dermatitis and/or hyper-IgE syndrome using serial clinical, pulmonary, and laboratory studies for evaluation. METHODS: This was an open label study in which we gave patients with hyper-IgE syndrome (n = 1) or severe atopic dermatitis (n = 9) IVIG as a 10% solution (Venoglobulin I-Alpha Therapeutic Corporation, Los Angeles, CA) at a dose of 2 g/kg every 30 days for seven infusions. RESULTS: Therapy was completed in nine of the ten patients. Skin disease improved slightly in six patients, remained unchanged in two patients, and worsened slightly in one patient. The average daily prednisone dosage was 6.8 mg/day prior to treatment and 5.1 mg/day during IVIG therapy (P = .1250). The three patients with abnormal pulmonary function showed very mild improvement of pulmonary function during treatment, but returned to baseline during follow-up. Flow cytometric studies showed no consistent pattern of change. IgA and IgM levels were unchanged. The mean serum IgE levels went from 3221+/-2454 IU/mL (SD) before IVIG to 2944+/-2491 IU/mL (P = .4609) during IVIG and then to 2321+/-2229 IU/mL (P = .1484) during the 6-month follow-up period. In vitro IgE production of peripheral blood mononuclear cells (PBMC) following IL-4 and anti-CD40 stimulation before IVIG was 6.6+/-3.1 ng/mL (SD) and 4.3+/-3.1 ng/mL (P = .1641) after six IVIG treatments. There were no significant trends in lymphocyte proliferative responses to PHA (phytohemaglutinin), Candida, tetanus, and anti-CD3 monoclonal antibody. Radioallergosorbent (RAST) testing showed no clear changes from positivity to negativity. CONCLUSION: We conclude that IVIG was of no clear clinical benefit in these nine patients and did not significantly decrease IgE levels, IgE synthesis, or other measures of immunologic function.

Adolescent↗

Combined nasal challenge with diesel exhaust particles and allergen induces In vivo IgE isotype switching.

In this study we undertook to provide evidence for local in vivo isotype switching to IgE following nasal challenges. Detection of deleted switch circular DNA (switch circles) by a novel nested polymerase chain reaction-based approach was employed as definitive molecular evidence of Ig isotype switching. Nasal challenge in humans with diesel exhaust particles (DEP) plus ragweed antigen has been shown to enhance local IgE production, stimulate local cytokine production, and markedly increase mucosal IgE antibody to ragweed. Four days after combined intranasal DEP plus ragweed challenge, we detected and characterized clones of deleted switch circular DNA (Sepsilon /Smu) representing switching from mu to epsilon from nasal lavage cells. No switch circular DNA was detected in nasal lavage cells following challenge with DEP alone nor with ragweed allergen alone. These results indicate that the combination of mucosal stimulation with DEP and ragweed allergen is capable of driving in vivo isotype switching to IgE in humans with ragweed allergy. These results are the first direct demonstration of in vivo IgE isotype switching in humans.

Adult↗

Aberrations of the B-cell receptor B29 (CD79b) gene in chronic lymphocytic leukemia.

Leukemic B cells in chronic lymphocytic leukemia (B-CLL) typically exhibit low or undetectable surface Ig. Because the B29 (CD79b and Ig beta) and mb-1 (CD79a and Ig alpha) gene products are required for surface Ig display in the B-cell receptor complex (BCR), we analyzed the expression of these genes in B-CLL cells. The majority (83%) of the randomly selected B-CLL patient samples analyzed exhibited low or undetectable surface BCR measured by mu heavy chain and B29 expression. Levels of mb-1 mRNA in these B-CLL samples with low surface BCR were similar to those in normal B cells. Among those with decreased surface expression, B29 mRNA was not detected in half of these B-CLL samples. The remaining B-CLL samples with diminished surface BCR contained normal levels of B29 mRNA. Further analysis of cDNA clones from the majority of these latter samples contained point mutations, insertions, or deletions that were largely located in the B29 transmembrane and cytoplasmic domains. These results indicate the occurrence of somatic mutations predicted to affect B29 expression and/or function in the majority of B-CLL and suggest that these aberrations underlie the diminished surface BCR display and loss of BCR signaling characteristic of this leukemia.

Antigens, CD↗

Combined diesel exhaust particulate and ragweed allergen challenge markedly enhances human in vivo nasal ragweed-specific IgE and skews cytokine production to a T helper cell 2-type pattern.

We have previously shown that in vivo nasal challenge with diesel exhaust particles (DEP) induces both quantitative and qualitative changes in local IgE production and stimulates generalized local cytokine production. We have now investigated the combined effects of intranasal challenge with DEP plus ragweed allergen on local humoral immune responses. We collected nasal lavages from ragweed sensitized subjects at different times after nasal challenge. As compared with challenge with ragweed alone, challenge with both DEP and ragweed induced markedly higher ragweed-specific IgE but not total IgE levels or IgE-secreting cell numbers. Total and specific IgG4 levels also were enhanced, while total IgG levels were not. Synergy was also observed between the DEP and ragweed in altering the profile of epsilon mRNAs generated by alternative splicing, mRNAs that code for different expressed IgE proteins. Intranasal challenge with ragweed alone induced inconsistent and low levels of mucosal cytokine mRNAs. In contrast, challenge with both ragweed plus DEP resulted in decreased expression for Th1-type cytokines (IFN-gamma and IL-2) but elevated expression of mRNA for other cytokines (IL-4, -5, IL-6, IL-10, IL-13). This synergy between DEP and natural allergen exposure is suggested as a key feature in increasing allergen-induced respiratory allergic disease.

Adult↗

The organic component of diesel exhaust particles and phenanthrene, a major polyaromatic hydrocarbon constituent, enhances IgE production by IgE-secreting EBV-transformed human B cells in vitro.

Suspended airborne particulate matter such as diesel exhaust particles (DEP) have been implicated in the increased incidence of respiratory allergic diseases that has occurred over the past century. Studies in vitro and in vivo have shown that DEP may enhance allergic antibody (IgE) expression. DEP contain a wide spectrum of polycyclic aromatic hydrocarbons (PAH) that have been reported to have direct effects on the immune system, including the modulation of IgE production using various human and murine cell populations. We investigated the effects of the organic extract of DEP (PAH-DEP) and particularly, phenanthrene, a major component of DEP, in vitro on IgE production by 2C4/F3, a human Epstein-Barr virus transformed isotype switched, IgE producing B cell line. Phenanthrene consistently enhanced 2C4/F3 IgE production two- to threefold. This in vitro enhancement was associated with an increased expression of total IgE mRNA. Furthermore, the pattern of mRNA's coding for distinct isoforms of the epsilon chain was altered by both DEP-PAH and phenanthrene. While phenanthrene increased the level of productive epsilon transcripts, it did not increase epsilon germ line transcription. These effects were not due to an alteration of the cell cycle. Unstimulated 2C4/F3 cells contained detectable mRNA for IL6, IL10, TNF-alpha, and interestingly IL4; however, addition of PAH-DEP or phenanthrene did not significantly alter the level of these cytokines and thus did not appear to account for our findings. Thus, we have used our in vitro model to dissect the mechanism of DEP-PAH on IgE production in postswitch IgE producing cells and shown that phenanthrene, an important component in DEP and other pollutants, can act in a similar manner.

B-Lymphocytes↗

Regulation of the expression of distinct human secreted IgE proteins produced by alternative RNA splicing.

The use of splice sites for human epsilon mRNAs is tightly regulated, as the potential number of splice products far exceeds that actually produced. Our studies show that use of the epsilon alternative splices is regulated by a limited number of stimuli, and the relative production of the epsilon mRNA variants follows a developmental profile. In addition, we have found disease-related changes in the pattern of epsilon mRNA variants encoding distinctive IgE isoforms. Analysis of the biological activity of expressed recombinant IgE proteins and measurement of their levels in disease conditions will directly answer questions as to the biological relevance of the changes observed in epsilon mRNA splicing. This information will then be able to be used for rational therapeutic design interventions in IgE-mediated disorders.

Alternative Splicing↗

Multiple types of chimeric germ-line Ig heavy chain transcripts in human B cells: evidence for trans-splicing of human Ig RNA.

Germ-line transcripts from Ig heavy chain loci precede the occurrence of isotype switching and are thought to play an important though still controversial role in Ig class switching. In this study, we employed a reverse transcriptase-PCR approach to detect human chimeric Ig germ-line mRNA transcripts. Multiple types of chimeric Ig germ-line transcripts (Imu-Cepsilon, Iepsilon-Cmu, Imu-Cgamma4, Igamma-Cmu, Igamma-Cepsilon, Iepsilon-Cgamma, and Igamma4-Calpha1 transcripts) were readily detected in human B cells stimulated with IL-4 alone. Sequence analysis revealed that all of these chimeric Ig germ-line transcripts represented the I exons from one Ig locus spliced to the CH exons from another locus by using consensus sequences for splicing donor and acceptor sites, indicating that they were generated through splicing machinery. In the case of stimulation of human resting B cells with IL-4 alone, the chimeric Ig germ-line transcripts are likely derived from a trans-splicing mechanism, as the extensive searching did not find evidence that Ig class-switch recombination had occurred, which alternatively could give rise to chimeric Ig mRNA by mechanisms other than trans-splicing. Similarly, an EBV-transformed gamma2 rearranged B cell line, GM1500, which produces IgG2 and contains both gamma2 productive and epsilon germ-line transcripts, also expressed chimeric germ-line RNA (Iepsilon-Cgamma2) and epsilon-productive transcripts (VDJ-Cepsilon). This line had no further sequential Sgamma2-Sepsilon rearrangements, providing evidence that the productive VDJ-Cepsilon mRNA was derived from a transcriptionally active unrearranged epsilon gene locus by trans-splicing. Taken together, these results provide possible evidence that trans-splicing of germ-line Ig RNA transcripts occurs in human B cells.

Antibody Diversity↗

Vasoactive intestinal peptide induces S(alpha)/S(mu) switch circular DNA in human B cells.

Vasoactive intestinal peptide (VIP), a major neurotransmitter of peripheral nerves, has been suggested to function in host defense by regulating local human immune function. Indirect evidence has been marshaled that VIP can function as a switch factor for IgA in human Ig isotype recombination. In this study we directly tested the ability of VIP to function as a factor driving human B cells into IgA producing cells by assessing its ability to induce switch circular DNA representing direct mu to alpha switching. In addition we determined the generation of alpha germ-line transcripts and measured the level of IgA protein produced. Stimulation with VIP and CD40 mAb induced IgA production by human IgD+ B cells while VIP or CD40 alone failed to do so. Stimulation of purified IgD+ B cells with VIP plus CD40 mAb induced generation of switch circular DNA representing in vitro driven isotype switching from mu to alpha. CD40 mAb alone induced alpha germ-line transcripts but not IgA switch circles. Thus VIP, a neurogenic factor, can induce alpha-specific switching in CD40-activated human B cells and may thereby play an important role in directing the humoral immune response at mucosal surfaces.

B-Lymphocytes↗

Expression of novel secreted isoforms of human immunoglobulin E proteins.

Four human IgE isoforms produced by alternative splicing of the epsilon primary transcript were expressed as chimeric mouse/human anti 5-dimethylamino-1-naphthalenesulfonyl antibodies in the murine myeloma cell line Sp2/0. The four isoforms include the classic secreted form and three novel isoforms with altered carboxyl termini. All of these isoforms lack the transmembrane region encoded by the M1/M1' exon and are therefore predicted to be secreted proteins. When expressed in Sp2/0 cells, three of the IgE isoforms are assembled into complete molecules of two Ig heavy chains and two Ig light chains, whereas the fourth isoform is predominately assembled into half-molecules of one Ig heavy chain and one Ig light chain. All four isoforms are secreted with similar kinetics. In contrast, when the isoform containing the C epsilon4 domain joined directly to the M2 exon (IgE grandé) is expressed in the J558L cell line, it is degraded intracellularly, suggesting a cell line-dependent regulation of secretion. These data show that these novel isoforms of human IgE, predicted to occur from in vivo and in vitro mRNA analysis, can be produced and secreted by mammalian cells. The different forms of IgE may have physiologically relevant but distinct roles in human IgE-mediated immune inflammation. The availability of purified recombinant human IgE isoforms makes it possible to analyze the functional differences among them.

Alternative Splicing↗

Enhanced nasal cytokine production in human beings after in vivo challenge with diesel exhaust particles.

BACKGROUND: Diesel exhaust particles (DEPs) have been implicated in the worldwide increased incidence of allergic airway disorders over the past century. They can enhance in vivo IgE production in the human upper respiratory mucosa. OBJECTIVES: The study was carried out to determine whether DEPs can alter the production of cytokines by cells residing in the nasal mucosa. METHODS: Eighteen hours after intranasal challenge with saline solution or DEPs, we studied the levels of messenger RNA for cytokines in nasal lavage cells and the number of subjects in whom cytokine mRNA could be detected. RESULTS: Before challenge, most subjects' nasal lavage cells had detectable levels of only interferon-gamma, Il-2, and IL-13 mRNA. After challenge, the cells produced readily detectable mRNA for IL-2, IL-4, IL-5, IL-6, IL-10, IL-13, and interferon-gamma. In addition, the levels of all cytokine mRNA increased. Enhanced IL-4 protein was also present in the postchallenge lavage fluid. Although the cells in nasal lavage before and after challenge do not necessarily represent the same cells either in number or type, the broad increase in cytokine production was not simply the result of an increase in T cells recovered in the lavage fluid. CONCLUSION: An increase in nasal cytokine expression after exposure to DEPs can be predicted to contribute to enhanced local IgE production and thus play a role in the increased incidence of respiratory allergic disease.

Adult↗

Direct evidence that gamma 1 and gamma 3 switching in human B cells is interleukin-10 dependent.

Interleukin-10 (IL-10) has various effects on B cell immunoglobulin (Ig) production. Indirect evidence suggests that IL-10 functions as a switch factor for IgG production. In this study, the switch deleted Ig gene DNA was isolated and characterized, as direct evidence that IL-10 induced isotype switching in human B cells. In addition, 16 chimeric Ig fragments were isolated, representing deleted DNA generated by in vitro isotype switching from mu to gamma in human B cells, following stimulation with IL-10 and anti-CD40 monoclonal antibodies (CD40 mAb). These clones consisted solely of S gamma 1/S mu and S gamma 3/S mu chimeric switch circular DNAs, no S gamma 2/S mu or S gamma 4/S mu switch DNA was observed. In addition, IL-10 alone induced only gamma 1 and gamma 3 germ-line mRNA transcripts, as determined by restriction digestion of the reverse transcription-polymerase chain reaction products. Three modes of mu-gamma 3 isotype switching were detected: (1) direct switching; (2) internal deletion of S mu proceeding mu to gamma 3 switching; and (3) internal deletion of S gamma 3 proceeding mu to gamma 3 switching. These results directly demonstrate that gamma 1 and gamma 3 switching in human B cells is specifically induced by IL-10 in the presence of CD40 mAb.

Antibodies, Monoclonal↗

Global increases in allergic respiratory disease: the possible role of diesel exhaust particles.

OBJECTIVE: Reading this article will enable the readers to recognize and evaluate i e potential relationship between allergic respiratory disease and polyaromatic hydrocarbons as air pollutants from industrial and automotive fuel sources. In this article we review the long-term trends in the prevalence of allergic airway diseases (rhinitis and asthma). We then examine the epidemiologic and other research data relating to the role that hydrocarbon fuel emissions may have had on allergic respiratory disease. DESIGN: Published literature on the relationship between specific air pollutants and trends in allergic respiratory disease were reviewed. Reports of research on pollutant effects on allergic antibody (IgE) were also studied. In both cases, the Melvyl-Medline database since 1975 was used for literature searches. Older references were identified from the bibliographies of relevant articles and books and with the help of the rare books collection at UCLA's Louis M. Darling Biomedical library. RESULTS: Examination of the historical record indicates that allergic rhinitis and allergic asthma have significantly increased in prevalence over the past two centuries. Although the reasons for this increase are not fully elucidated, epidemiologic data suggest that certain pollutants such as those produced from the burning of fossil fuels may have played an important role in the prevalence changes. Also important are studies showing that diesel exhaust, a prototypical fossil fuel, is able to enhance in vitro and in vivo IgE production. CONCLUSION: Increased levels of the compounds resulting from fossil fuel combustion may be partly responsible for the increased prevalence of allergic respiratory disease. If the nature of these compounds and the mechanisms by which they exacerbate allergic disease can be identified, steps can be taken to reduce the production or the impact of these allergy producing compounds.

Humans↗

IL-4 plus CD40 monoclonal antibody induces human B cells gamma subclass-specific isotype switch: switching to gamma 1, gamma 3, and gamma 4, but not gamma 2.

Stimulation with IL-4 plus CD40 mAb is known to induce production of IgE and IgG4. In this study, we determined the IgG subclass specificity of IL-4 plus CD40 mAb stimulation for human purified B cells. We determined true in vitro switching by the generation of switch circular DNA (S gamma/S mu) representing primary S mu/S gamma events and production of gamma subclass-specific germ-line transcripts by a combination of reverse transcription-PCR and restriction endonuclease digestion. We simultaneously measured changes in the levels of IgG subclass proteins produced. Forty-two clones of circular switch DNA were identified and sequenced. The IgG subclass of S gamma fragment in the S gamma/S mu chimeric PCR products was determined by analyzing key S gamma nucleotides. The switch-deleted clones were found to consist of S gamma 1/S mu, S gamma 3/S mu, and S gamma 4/S mu chimeric switch sequences, showing that such switching had occurred. No S gamma 2/S mu chimeric switch sequences were found. While a consensus sequence was not identified at the S gamma/S mu breakpoints, four contiguous guanines (GGGG) were noticeably present in the S gamma region near the breakpoint. The induction of gamma 1, gamma 3, and gamma 4 switch circles in human purified B cells was accompanied by enhanced production of IgG1, IgG3, and IgG4 but not IgG2. Similarly, stimulation with IL-4 alone induced gamma 1, gamma 3, and gamma 4 but not gamma 2 germ-line transcripts. These results demonstrate that IL-4 plus CD40 mAb induces Ig isotype switch from mu to gamma 1, gamma 3, and gamma 4 but not to gamma 2.

Antibodies, Monoclonal↗

Differential regulation of alternative 3' splicing of epsilon messenger RNA variants.

Alternative 3' splicing of the one active human epsilon heavy chain gene results in variants of epsilon mRNA encoding distinct IgE proteins. The same relative amounts of these epsilon mRNA variants were produced by non-atopic donor B cells when driven in a variety of T-dependent or T-independent systems. The most abundant variants were those for classic secreted epsilon a novel secreted form (CH4-M2"). In contrast, cells from subjects with high levels of serum IgE secondary to parasitic infection or atopy spontaneously produced higher relative levels of the CH4-M2' epsilon mRNA variant, lower relative amounts of both the membrane and CH4-M2" secreted variants, and very low levels of the CH4'-CH5 variant. The existence of and corresponding changes in levels of the CH4-M2'-encoded secreted protein were demonstrated. IL-10 induced this same differential expression of epsilon splice variants in vitro when used to costimulate IL-4 plus CD40-driven B cells and could differentially enhance the production of CH4-M2' protein by established IgE-secreting cell lines. Inhibition of IgE by cross-linking the low affinity IgE receptor (CD23) decreased the levels of epsilon mRNA and resulted in a distinct pattern of epsilon mRNA characterized by a dramatic decrease in CH4-M2' splice variant. IL-6, IL-2, or IFN-gamma did not change the epsilon mRNA pattern. Overall, the absolute and relative amounts of the different epsilon mRNA splice variants produced appear to be controlled in a differentiation-related fashion.

Adult↗

Secondary deletional recombination of rearranged switch region in Ig isotype-switched B cells. A mechanism for isotype stabilization.

Analysis of the Ig switch (S) region structure from many stable isotype-switched B cells reveals that the majority of the ultimate switch recombination sites are located at the 5' end, or even upstream of the 5' end of the Smu region. These findings strongly contrast with results from switch circle analysis which reveal that the primary switch recombination sites are preferentially distributed in the middle or at the 3' end of the Smu region. Secondary deletion within recombined chimeric S regions has been proposed as a mechanism to account for the different results. We directly tested whether secondary deletion of rearranged chimeric S regions indeed occurs in human cells. Circular DNAs representing secondary deletion events in gamma switched cells were isolated and characterized by using a specially designed PCR-based approach. Nucleotide sequence analysis revealed that all clones had the S gamma 1-Smu-S gamma 1 structure. Thus, these cloned fragments resulted from secondary deletion/recombination events within a chimeric Smu-S gamma 1 switch region, i.e., rearrangement between its 5' Smu and 3' S gamma 1. Analysis of the Smu region from stimulated B cells also revealed that some Smu regions undergo an internal deletion/rearrangement between the 5' and 3' ends. These results definitively demonstrate that secondary deletion/recombination of chimeric S regions of isotype-switched B cells occurs. Such secondary deletion/recombination events potentially can be responsible for isotype stabilization of switched B cells, as the active Ig gene may have an insufficient amount of retained chimeric switch sequence to serve as a substrate for further S-S recombination.

B-Lymphocytes↗