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Biomedical subjects

M B Brenner

Publications and source records attributed to M B Brenner.

At least 91 records · Page 5Linked to original sources

Retention of unassembled components of integral membrane proteins by calnexin.

Quality control mechanisms prevent the cell surface expression of incompletely assembled multisubunit receptors such as the T cell receptor (TCR). The molecular chaperone function of calnexin (IP90, p88), a 90-kilodalton protein that resides in the endoplasmic reticulum (ER), in the retention of representative chains of the TCR-CD3 complex in the ER was tested. Truncation mutants of calnexin, when transiently expressed in COS cells, were exported from the ER and either accumulated in the Golgi or progressed to the cell surface. CD3 epsilon chains cotransfected with the forms of calnexin that were not retained in the ER exited the ER and colocalized with calnexin. Since engineered calnexin determined the intracellular localization of the proteins associated with it, it is concluded that calnexin interacts with incompletely assembled TCR components and retains them in the ER.

Amino Acid Sequence↗

Distinct structural and functional epitopes of the alpha E beta 7 integrin.

Intestinal intraepithelial lymphocytes (iIEL) are predominantly CD3+, CD8+ T lymphocytes located above or adjacent to the mucosal basement membrane. Although they are positioned to interact with intercellular luminal antigen or with enterocytes, the function of iIEL remains unknown. Most (> 85%) of the iIEL express the alpha E beta 7 integrin which appears to be involved in the adhesion of lymphocytes to epithelial cells. We report the characterization of three monoclonal antibodies (mAb) termed alpha E7-1, alpha E7-2, and alpha E7-3, that react with the alpha E beta 7 integrin recognized by the previously described mAb HML-1 as demonstrated by identical sodium dodecyl sulfate-polyacrylamide gel electrophoresis mobility and charge. Flow cytometric analysis of antibody cross-blocking indicated that these mAb recognize distinct epitopes of alpha E beta 7. While all of the mAb were capable of blocking the adhesion of cultured iIEL to a breast epithelial cell line, only HML-1 and alpha E7-1 (which recognize an identical or closely related epitope) were co-stimulatory with suboptimal concentrations of anti-CD3 mAb in inducing proliferation of cultured iIEL. Thus, these mAb appear to recognize functionally distinct epitopes of alpha E beta 7 and will be useful to study relationships between the structure and function of this integrin.

Animals↗

Evidence for a structural difference in the CD7 polypeptide on human thymocytes and intraepithelial lymphocytes defined by a new monoclonal antibody, 3D9.

Intestinal intraepithelial lymphocytes (IEL) represent a distinct subpopulation of lymphocytes located on or above the basement membrane and adjacent to the basolateral membrane of enterocytes. Thus IEL are strategically positioned to mediate a response to the uptake of foreign antigens or to the alteration of enterocytes by injury or infection. Because of their unique location, we hypothesized that IEL might selectively express specialized cell surface proteins important in their site-specific localization or function. To identify such proteins, we immunized mice with purified human IEL and identified one monoclonal antibody, 3D9, which was found to react with a majority of IEL but with very few lamina propria lymphocytes (LPL) and weakly with most peripheral blood lymphocytes (PBL). Evaluation of this antibody with two-dimensional gels demonstrated that it reacts with CD7, previously known as an early thymocyte differentiation antigen. Interestingly, unlike all other anti-CD7 monoclonal antibodies, 3D9 identified only occasional thymocytes by immunohistochemistry suggesting that CD7 is structurally different on IEL and thymocytes. However, the CD7 polypeptide immunoprecipitated from IEL and thymocytes appeared identical in SDS-PAGE mobility and in charge by two-dimensional gels, despite being recognized differently by monoclonal antibodies. These studies emphasize the expression of CD7 by IEL T cells and reveal the existence of an undefined structural difference between CD7 molecules on IEL compared to thymocytes.

Animals↗

Calnexin: a membrane-bound chaperone of the endoplasmic reticulum.

Calnexin is a new type of molecular chaperone that interacts with many nascent membrane and soluble proteins of the secretory pathway. Calnexin is unrelated to molecular chaperones of the Hsp60, Hsp70 and Hsp90 families, and is further distinguished from them in that it is an integral membrane protein. One of its demonstrated functions is the retention of incorrectly or incompletely folded proteins, suggesting that calnexin is a component of the quality control system of the endoplasmic reticulum.

Calcium-Binding Proteins↗

Murine M290 integrin expression modulated by mast cell activation.

Intraepithelial T lymphocytes possess a (TGF beta)-inducible integrin complex that consists of the beta 7 integrin chain in association with a novel alpha chain, murine alpha M290. Using antibodies directed against the murine alpha M290 chain, IL-3-dependent murine bone marrow-derived mast cells demonstrated positive staining after induction with TGF beta. Sequence information from the human intraepithelial T lymphocyte-alpha E gene sequence was used to clone the murine homolog from a TGF beta-induced T cell library. The murine alpha E homolog gene encodes a protein recognized by antibodies to alpha M290. Expression of this gene by bone marrow-derived mast cells was found to be induced by TGF beta or IgE-mediated cross-linking of Fc epsilon R1. Furthermore, exposure of murine TK-1 cells to supernatants from activated mast cells induces the expression of the alpha M290 gene, indicating that a mast cell mediator(s) can act in a paracrine manner to induce expression of this integrin complex by other cells.

Amino Acid Sequence↗

Class II histocompatibility molecules associate with calnexin during assembly in the endoplasmic reticulum.

Class II histocompatibility antigens are composed of polymorphic alpha and beta polypeptides which associate in the endoplasmic reticulum (ER) with a third, non-polymorphic invariant polypeptide (Ii). The alpha beta Ii complexes are subsequently transported through the Golgi to the endosomes, where the Ii chain dissociates before the alpha beta complex is transported to the cell surface. Results from transport-defective class II expression variant studies suggest that class II intracellular transport is regulated in multiple intracellular compartments. Consistent with this, a large number of studies have demonstrated that protein folding and/or oligomerization is facilitated in the ER by a class of proteins collectively known as molecular chaperones. In this report, we show that the ER-resident protein calnexin associates with human and murine class II antigens. Specifically, calnexin associates in the ER with free Ii polypeptides and partially assembled wild-type class II complexes, including A alpha and/or A alpha Ii complexes, as well as with alpha beta dimers isolated from class II transport-defective cells. Calnexin also physically associates with alpha beta Ii complexes, but not with mature alpha beta dimers. These results suggest that calnexin may regulate class II intracellular transport by facilitating the production of transport competent molecules out of the ER. In addition, we report that the nucleotide sequence of the gene encoding murine calnexin shows a high degree of homology to human IP90 and dog calnexin at both the nucleotide and deduced amino acid sequence level. The isolation of cDNA fragments encoding murine calnexin will allow us to further evaluate the functional consequences of calnexin-class II interaction.

Amino Acid Sequence↗

Reconstitution of cultured intestinal epithelial monolayers with a mucosal-derived T lymphocyte cell line. Modulation of epithelial phenotype dependent on lymphocyte-basolateral membrane apposition.

In vivo, epithelial cells which line the intestine are intimately associated with lymphocytes, termed intraepithelial lymphocytes. Previous studies have demonstrated that intraepithelial lymphocytes are present in the uninflamed mucosa, and become especially prominent in various human enteropathies including coeliac disease, tropical sprue, dermatitis herpetiformis, and giardiasis. Using the intestinal crypt cell line T84, and a previously well-defined human mucosa-derived lymphocyte (MDL) line with phenotypic features similar to (but not specific for) intraepithelial lymphocytes, we describe a co-culture model to study the functional sequellae of MDL-T84 cell interactions in vitro. A co-culture method was defined which permitted reconstitution of the paracellular spaces of physiologically confluent epithelial monolayers with MDL. Such co-cultures thus mimicked the correct geometry of intraepithelial lymphocytes-epithelial cell interactions. The presence of physiologically positioned MDL brought about specific and dramatic effects on intestinal epithelial monolayer function. In a dose-dependent fashion, the presence of MDL significantly attenuated barrier function (expressed as a decrease in monolayer resistance), decreased epithelial electrogenic Cl- secretion, and modulated epithelial-neutrophil interactions. Such effects were not reproduced in monolayers similarly reconstituted with inert polystyrene beads equivalent in size to MDL. These MDL-elicited effects on epithelial function specifically required direct MDL apposition to the epithelial basolateral membrane. Furthermore, this specific form of MDL-epithelial basolateral contact released soluble factors which were able to confer the MDL-reconstituted phenotype on virgin epithelial monolayers in the absence of MDL. We have previously shown that many aspects of the MDL converted epithelial phenotype described here can be induced by IFN-gamma. While IFN-gamma, a cytokine produced by many lymphocytes including intraepithelial lymphocytes, was detectable in conditioned supernatants from co-cultures, it existed at concentrations insufficient to fully explain the physiologic effects observed here.

Cells, Cultured↗

An objective and subjective comparative analysis of diffractive and front surface aspheric contact lens designs used to correct presbyopia.

As bifocal contact lenses have evolved, increasing emphasis has been placed on producing designs that are less dependent on such variables as pupil size and lens centration and movement. We evaluated these and other variables in 25 presbyopic patients who underwent consecutive 1-week trials, wearing two different contact lens types: a diffractive lens and a front surface aspheric lens. Distance and near visual acuities were not significantly reduced by either lens type, and both exhibited binocular summation. With each lens design, visual acuity remained relatively independent of pupil size and small degrees of lens decentration. Contact lens movement with the aspheric design was associated with subjective fluctuations in vision to a greater extent than with the diffractive design. Contrast sensitivity was also measured and found to be reduced with the diffractive lens but not significantly altered by the aspheric lens. Overall, only two patients could not be successfully fit with either lens type. After 6 months, 21 patients (84%) reported successful lens wear with their chosen lens type.

Adult↗

Analysis of T cell antigen receptor (TCR) expression by human peripheral blood CD4-8- alpha/beta T cells demonstrates preferential use of several V beta genes and an invariant TCR alpha chain.

CD4-CD8- (double negative [DN]) alpha/beta T cells are a largely uncharacterized subpopulation of unknown function. To investigate whether these cells are selected to recognize particular antigens or antigen-presenting molecules, DN alpha/beta T cells were purified from the peripheral blood of five normal donors and their T cell receptor (TCR) alpha and beta chains were examined. Random cloning of TCR alpha chains by single-sided polymerase chain reaction (PCR) amplification identified an invariant rearrangement between V alpha 24 and J alpha Q, with no N region diversity, which was expressed preferentially by DN alpha/beta T cells from all donors. Random cloning also identified a precise V alpha 7.2-J alpha (IGRJa14) rearrangement, with two variable amino acids encoded in the V-J junction, which was enriched in the DN alpha/beta T cell preparations from some, but not all, donors. Analysis of TCR beta chains by quantitative PCR amplification demonstrated that the expression of four V beta gene families, V beta 2, 8, 11, and 13, was markedly increased in these DN alpha/beta T cell preparations. The expression of particular TCRs by DN alpha/beta T cells from multiple donors indicates that these cells, or at least a subpopulation of cells with this phenotype, recognize a limited spectrum of antigens and suggests that they may use nonpolymorphic antigen-presenting molecules.

Amino Acid Sequence↗

Clonal V alpha 12.1+ T cell expansions in the peripheral blood of rheumatoid arthritis patients.

Rheumatoid arthritis (RA) represents a heterogenous disease characterized by chronic polyarthritis. Most patients with adult RA inherit HLA-DR4 or -DR1 major histocompatibility complex (MHC) genes. While the molecular basis for this genetic predisposition is unknown, the major function of these MHC-encoded molecules is to present peptides to T lymphocytes. It is hypothesized that an endogenous or environmental antigen initiates a MHC-restricted immune response mediated by T lymphocytes, which is followed by a chronic inflammatory reaction involving many cell types. In chronic RA, previous or ongoing antigenic activation might result in detectable skewing of the peripheral alpha/beta T cell receptor (TCR) repertoire. Here we demonstrate a marked expansion of V alpha 12.1-bearing CD8+ T cells in the peripheral blood (mean, 22%; range, 10-43%) of > 15% of RA patients. A major proportion of these patients shared HLA-DQ2 in addition to the expected high frequency DR1 and DR4 alleles. Detailed molecular analysis in three of the RA patients with elevated V alpha 12.1+ T cells identified repeated TCR alpha chain sequences consistent with clonal V alpha 12.1+,CD8+ T cell expansion. In addition to shared TCR V alpha 12.1 germline gene usage among unrelated subjects, a conserved J alpha motif was also detected. Together, these results suggest an antigen-driven mechanism of T cell expansion in these patients and may offer a new approach in examining specific antigen that stimulate T cells in RA.

Amino Acid Sequence↗

Interaction with newly synthesized and retained proteins in the endoplasmic reticulum suggests a chaperone function for human integral membrane protein IP90 (calnexin).

A cDNA clone encoding the human endoplasmic reticulum (ER) resident protein IP90 was isolated and sequenced. It predicts a transmembrane protein with a large ER luminal region showing sequence similarity to calreticulin and a short cytoplasmic domain containing a COOH-terminal RKPRRE sequence that may be relevant to its retention in the ER. It is 95% homologous to the canine ER membrane phosphorprotein called pp90 or calnexin (Wada, I., Rindress, D., Cameron, P. H., Ou, W.-J., Doherty, J. J., II, Louvard, D., Bell, A. W., Dignard, D., Thomas, D. Y., and Bergeron, J. J. M. (1991) J. Biol. Chem. 266, 19599-19610). Previously, in lymphocytes, we have characterized IP90 as a protein associated with partially assembled multichain proteins including the T cell receptor, the membrane immunoglobulin, and the heavy chain of the major histocompatibility complex class I molecules (Hochstenbach, F., David, V., Watkins, S., and Brenner, M. B. (1992) Proc. Natl. Acad. Sci. U.S.A. 89, 4734-4738). Here, we show that within a short metabolic labeling period, IP90 associates transiently with many different newly synthesized proteins. However, in a T cell line that cannot assemble a complete T cell receptor because it lacks the alpha subunit, the unassembled T cell receptor beta chains, which are retained in the ER, remain associated with IP90 throughout a prolonged chase time period. Together, these data offer further evidence suggesting that IP90 may act in assisting protein assembly and/or in the retention within the ER of unassembled protein subunits.

Amino Acid Sequence↗

Integrin alpha E beta 7 mediates adhesion of T lymphocytes to epithelial cells.

Intestinal intraepithelial lymphocytes (iIEL) are a distinct subpopulation of T lymphocytes diffusely distributed in the epithelium. Because > 95% of these iIEL express the integrin alpha E beta 7, we reasoned that this integrin might mediate the localization of iIEL to the epithelium. We report that cultured iIEL bound to mucosal epithelial cells derived from either breast or intestine. This binding was dependent on the presence of divalent cations, and was blocked by mAb specific for two integrins, alpha E beta 7 and alpha L beta 2. After TGF-beta 1 treatment, cultured iIEL cell lines expressed alpha E beta 7 at levels similar to those found on iIEL in vivo. Under these conditions this integrin appeared to predominate in mediating the adhesion of iIEL to epithelial cells. Although alpha L beta 2 blocked the adhesion of iIEL to both endothelial and epithelial cells, alpha E beta 7 blocked binding only to epithelial cells suggesting that the ligand for alpha E beta 7 is not expressed on IL-1 beta-treated cultured endothelial cells. iIEL did not readily bind to the apical surface of confluent polarized epithelial cell monolayers. However, iIEL did bind to these cells when tight junctions were disrupted, a treatment that allows redistribution of proteins compartmentalized to the basolateral surface. This binding was also blocked by mAb to alpha E beta 7. In addition, in vitro coculture of iIEL with polarized epithelial cells resulted in basolateral localization of the iIEL. Thus, it is likely that expression of the alpha E beta 7 ligand is restricted to the basolateral membrane of polarized epithelial cells. Because alpha E beta 7 appears to be a predominant integrin on freshly isolated iIEL, we hypothesized that alpha E beta 7-mediated adhesion may be particularly important in cell-to-cell interactions between T cells and epithelial cells in vivo.

Adult↗

Alpha 4/180, a novel form of the integrin alpha 4 subunit.

The integrin alpha 4 beta 1 (VLA-4) is a versatile cell-cell and cell-extracellular matrix adhesion receptor. The alpha 4 subunit can be expressed on the cell surface in two forms: an intact form (alpha 4/150) and a cleaved form (alpha 4/80,70). Here we have characterized a third form of alpha 4, called alpha 4/180. Although alpha 4/180 (M(r) 180, nonreduced) is different in size than alpha 4/150 (M(r) 150, nonreduced), these two forms are clearly related, as they (i) shared the same amino-terminal sequence, (ii) were both recognized in Western blots by an anti-alpha 4 COOH-terminal antiserum, (iii) migrated with the same apparent size and charge when reduced, and (iv) were both immunoprecipitated using anti-VLA-4 reagents. In pulse-chase experiments, precursors to both forms appeared simultaneously and matured at the same rate, indicating that one is most likely not the biosynthetic precursor of the other. Although reduction of alpha 4/180 to yield alpha 4/150 suggested the release of a cysteine-linked 30-kDa fragment, seven different biochemical techniques failed to identify such a fragment. Also, alpha 4/180 was converted to alpha 4/150 by incubation at pH 11, by treatment with EDTA at 56 degrees C, or by heating in the presence of elevated SDS levels. Together our findings suggest that alpha 4/180 and alpha 4/150 represent different conformations of the same alpha 4 polypeptide, with the former having anomalous slower migration in SDS-polyacrylamide gel electrophoresis. This unusual biochemical feature of alpha 4 is not shared by other beta 1-associated integrin alpha subunits and suggests that VLA-4 has unique structural properties.

Alternative Splicing↗

CD1b restricts the response of human CD4-8- T lymphocytes to a microbial antigen.

Molecules encoded by the human CD1 locus on chromosome 1 (ref. 33) are recognized by selected CD4-8- T-cell clones expressing either alpha beta or gamma delta T-cell antigen receptors. The known structural resemblance of CD1 molecules to antigen-presenting molecules encoded by major histocompatibility complex (MHC) genes on human chromosome 6 (refs 3, 4, 34, 35), suggested that CD1 may represent a family of antigen-presenting molecules separate from those encoded in the MHC. Here we report that the proliferative and cytotoxic responses of human CD4-8- alpha beta TCR+ T cells specific for Mycobacterium tuberculosis can be restricted by CD1b, one of the four identified protein products of the CD1 locus. The responses of these T cells to M. tuberculosis seemed not to involve MHC encoded molecules, but were absolutely dependent on the expression of CD1b by the antigen-presenting cell and involved an antigen processing requirement similar to that seen in MHC class II-restricted antigen presentation. These results provide, to our knowledge, the first direct evidence for the proposed antigen-presenting function of CD1 molecules and suggest that the CD1 family plays a role in cell-mediated immunity to microbial pathogens.

Antigen-Presenting Cells↗

Endoplasmic reticulum resident protein of 90 kilodaltons associates with the T- and B-cell antigen receptors and major histocompatibility complex antigens during their assembly.

In the endoplasmic reticulum (ER), newly synthesized subunits of the T-cell antigen receptor (TCR), membrane-bound immunoglobulin (mIg), and major histocompatibility complex (MHC) class I antigens must fold correctly and assemble completely into multimeric protein complexes prior to transport to the cell surface. Although folding and assembly may occur spontaneously, the concept that molecular chaperones facilitate these events is emerging. Here, an intracellular protein of 90-kDa apparent molecular mass, denoted IP90, was shown to be an ER resident protein that associated with partial complexes of the TCR, mIg, and MHC class I proteins but was absent from fully assembled complexes. We speculate that IP90 might participate in folding and assembly processes of these and other multisubunit protein complexes during their transit through the ER.

Animals↗

A family of beta 7 integrins on human mucosal lymphocytes.

The heterodimeric protein complex recognized by the human mucosal lymphocyte 1 (HML-1) monoclonal antibody is expressed on 95% of intraepithelial lymphocytes but on only 1-2% of peripheral blood lymphocytes [Cerf-Bensusson, N., Jarry, A., Brousse, N., Lisowska-Grospierre, B., Guy-Grand, D. & Griscelli, C. (1987) Eur. J. Immunol. 17, 1279-1285]. We purified the smaller HML-1 subunit (105 kDa under nonreducing conditions) from hairy-cell leukemia cells and determined the N-terminal amino acid sequence of this chain. The 17 residues determined were identical to the deduced amino acid sequence encoded by an integrin beta 7 cDNA clone [Yuan, Q., Jiang, W.-M., Krissansen, G.W. & Watson, J.D. (1990) Int. Immunol. 2, 1097-1108]. Biochemical analysis of the larger HML-1 subunit (175 kDa under nonreducing conditions) suggested that it was a distinct member of the cleaved group of integrin alpha chains, which we designated alpha E. The beta 7 chain also was associated with the integrin alpha 4 subunit, suggesting that the HML-1 antigen (alpha E beta 7) and alpha 4 beta 7 constitute a beta 7 integrin family on mucosal lymphocytes. Interestingly, regulation of the expression of the HML-1 antigen was reciprocal to that of lymphocyte function-associated molecule 1 in the presence of transforming growth factor beta 1. We suggest that these beta 7 integrins may play a specific role in mucosal localization or adhesion and that the expression of the HML-1 antigen might be regulated by transforming growth factor beta 1 produced at or near epithelial tissues.

Amino Acid Sequence↗

Oligoclonality of human intestinal intraepithelial T cells.

T cells bearing the T cell receptor alpha/beta (TCR-alpha/beta) are the predominant lymphocyte population in the human intestinal epithelium. To examine if normal intestinal intraepithelial lymphocytes (IEL) have a TCR repertoire distinct from the TCR-alpha/beta repertoire in peripheral blood lymphocytes (PBL), comparative analysis of relative V beta gene usage in IEL and PBL was performed by quantitative polymerase chain reaction. In each of the six individuals examined, one to three V beta families made up more than 40% of the total V beta transcripts detected in the IEL, whereas there was a more even distribution of V beta gene usage in the paired PBL. The predominant V beta families, especially V beta 1, V beta 2, V beta 3, and V beta 6, were frequently shared among IEL of different individuals. PCR cloning and sequence analysis of the predominant V beta 6 family in two individuals revealed an identical V-D-J-C sequence in 13 of 21 clones obtained from one donor, and a different repeated sequence in 18 of 27 clones examined in the second donor. These data suggest that the V beta skewing in IEL is due to an oligoclonal T cell expansion and may reflect the response of the intestinal mucosal immune system to a restricted set of as yet undefined antigens present in the gut.

Amino Acid Sequence↗

A predominance of the T cell receptor V gamma 2/V delta 2 subset in human mycobacteria-responsive T cells suggests germline gene encoded recognition.

Little is known about the nature of Ag recognition by the TCR-gamma delta. The recent observation that gamma delta T cells preferentially recognize mycobacterial Ag provides a model to examine the molecular basis of gamma delta-TCR recognition. Here, examination of the Mycobacteria-stimulated peripheral blood T cells with TCR-specific mAb revealed a predominance of T cells bearing V gamma 2/V delta 2 gene products. PCR cloning and sequence analysis of the TCR chains demonstrated extensive junctional diversity indicating that the response was polyclonal. The marked in vitro gamma delta T cell response to Mycobacteria was also detected in newborns before encounters with foreign Ag and exclusively involved the same V-gene usage observed in adults. Together, these results suggest that a major mechanism of gamma delta T cell reactivity involves recognition mediated by germline-encoded segments of the TCR.

Adult↗