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Biomedical subjects

B F Haynes

Publications and source records attributed to B F Haynes.

At least 55 records · Page 3Linked to original sources

Developmental regulation of lymphocyte-specific protein 1 (LSP1) expression in thymus during human T-cell maturation.

The lymphocyte specific protein 1 (LSP1) phosphoprotein is an F-actin binding molecule restricted to cells of hematopoietic origin in mice and humans. LSP1 is localized to the internal surface of the plasma membrane, the cytoplasm, and NP-40-insoluble actin filaments and is thought to mediate cytoskeleton-driven responses in activated leukocytes that involve receptor capping, cell-cell interactions and cell motility. Here, we generated two monoclonal antibodies (MAbs), 5E3 and 14G8, that are specific for human LSP1 to define the expression of LSP1 throughout human T-cell development. Both MAbs reacted with a 52-kDa protein in BW5147 cells transfected with human LSP1 cDNA in pcDNA3, but not in cells transfected with cDNA in an antisense orientation, indicating the specificity of 5E3 and 14G8 for human LSP1. In developing T cells, LSP1 was expressed on human fetal liver CD7+ NK and T-cell precursors, the CD7+, CD3-, CD4-, CD8- human stem cell line DU-528, and on CD4-, CD8- double-negative (DN) thymocytes. Immunohistochemistry and three-color flow cytometry analysis of fetal or postnatal thymocytes revealed that LSP1 was increasingly expressed during intrathymic human T-cell maturation. While immature CD4+CD8+ double-positive (DP) thymocytes expressed low to undetectable levels of LSP1, mature CD4+CD8- and CD4-CD8+ single-positive (SP) thymocytes expressed high levels of LSP1. Thus, LSP1 is developmentally regulated during T-cell maturation within the human thymus and may play a functional role in the motility of DN and SP thymocytes.

Animals↗

Cytokine induction of the ability of human monocyte CD44 to bind hyaluronan is mediated primarily by TNF-alpha and is inhibited by IL-4 and IL-13.

Ligation of CD44 by hyaluronan (HA) is a key proinflammatory event that regulates lymphocyte and monocyte adhesion and cytokine production. While most immune cells express CD44, few immune cells constitutively bind HA. We have previously shown that monocyte CD44 acquires the ability to bind HA after in vitro culture of PBMC in human serum and, therefore, we have investigated a series of human cytokines and bacterial LPS for their ability to induce and/or inhibit monocyte CD44 to bind HA. We found that IL-1alpha, IL-1beta, IL-3, granulocyte macrophage (GM)-CSF, and TNF-alpha, as well as bacterial LPS, all directly induced peripheral blood monocytes to bind HA. In contrast, IL-2 and IL-15 up-regulated monocyte CD44 HA-binding in PBMC suspensions, but not in purified monocyte suspensions. An anti-TNF-alpha-neutralizing Ab inhibited IL-1alpha-, IL-1beta-, IL-3-, and GM-CSF-mediated monocyte HA binding. In addition, treatment of IL-2- and IL-15-stimulated PBMC cultures with an anti-TNF-alpha Ab prevented IL-2- and IL-15-induced monocyte HA binding, thus identifying TNF-alpha as a lymphocyte-derived factor that acted on monocytes to induce HA binding. In contrast, IL-4 and IL-13 were potent inhibitors of monocyte CD44-HA binding induced by either human serum or by IL-1alpha, IL-1beta, IL-3, GM-CSF, or TNF-alpha. IL-10 had dual effects on monocyte CD44-HA binding. Alone, IL-10 induced HA binding to PBMC monocyte CD44, while in contrast, IL-10 inhibited IL-1-induced monocyte CD44 binding to HA. Taken together, these studies identify a network of T cell and monocyte-derived cytokines that regulate HA binding to peripheral blood monocyte CD44, primarily through TNF-alpha.

Binding, Competitive↗

Identification of a synthetic peptide that mimics an HIV glycoprotein 120 envelope conformational determinant exposed following ligation of glycoprotein 120 by CD4.

CD4 ligation of HIV envelope gp120 results in conformational changes in gp120 that lead to exposure of the gp41 fusogenic domain and fusion with the host cell membrane. One determinant at or near the CD4-binding site exposed on gp120 subsequent to CD4 binding is defined by two human MAbs termed 17b and 48d. These MAbs do not block CD4 binding to gp120; rather, their binding to gp120 is upregulated following CD4 binding. To determine if synthetic peptide mimetopes could be found that reflect conformational determinants on the surface of gp120, synthetic gp120 peptides from 10 divergent HIV isolates were screened for their ability to bind to 17b and 48d in ELISAs. Although MAb 48d binds to HIV IIIB recombinant gp120 protein, in our studies 48d selectively bound only to the HIV Can0A V3 peptide and not to HIV IIIB V3 peptide, whereas MAb 17b bound none of the peptides tested. Monoclonal antibody 48d bound to the HIV Can0A V3 peptide both in solid-phase ELISA and in solution in a competitive ELISA, but could not bind to HIV Can0A V3 peptide bound to human T cells. The HIV Can0A V3 peptide induced anti-HIV antibodies in rhesus monkeys that neutralized the laboratory-adapted HIV MN strain but did not induce antibodies that neutralized HIV IIIB/LAI, HIV SF-2, or HIV RF isolates, or that neutralized HIV primary isolates. These data suggested that the primary sequence of the HIV Can0A V3 loop exists in a conformer that mimicks a non-V3 determinant of native gp120 exposed subsequent to CD4 binding on the surface of gp120 of laboratory-adapted HIV strains. Structural studies of the Can0A V3 peptide and/or the 48d MAb may provide important information regarding the nature of gp120 conformational changes that occur following gp120 ligation by CD4.

Amino Acid Sequence↗

Successful formation of a chimeric human thymus allograft following transplantation of cultured postnatal human thymus.

Transplantation of cultured postnatal human thymus was performed in a patient with complete DiGeorge syndrome. Biopsy of the graft 3 mo after implantation revealed normal CD1+ thymocytes in thymic cortical epithelial regions and CD1- thymocytes in thymic medullary epithelial regions, respectively. HLA analysis of graft thymocyte and thymic microenvironment components demonstrated that developing thymocytes and thymic macrophages were recipient derived, while thymic epithelial components were of donor origin. The patient, who initially had no T cells and had profoundly defective T cell function, developed normal T cell responses to mitogens and Ags, tolerance to donor in a mixed lymphocyte reaction, and normal Ab titers after tetanus toxoid and pneumovax immunization. Thus, transplantation of cultured postnatal human thymic tissue in humans can form functional chimeric thymic tissue, and may provide a strategy to reconstitute the peripheral T cell pool in select congenital and acquired immune deficiency syndromes.

Chimera↗

The human thymic microenvironment during organ culture.

Cultured human thymic tissue has been transplanted into many patients with T cell dysfunction; however, little is known about the effect of in vitro culture on thymic tissue. Human postnatal thymic organ cultures were established in vitro to study the growth potential of the thymic epithelium and the expression of intracellular and surface antigens with time in culture. Marked depletion of bone marrow-derived cells was observed within 3 weeks of initiation of organ cultures although some viable CD3+ cells could still be detected. Thymic epithelial cells in in vitro explants continued to express MHC class I and class II antigens as well as cytokeratins. Thymic epithelial cells within cultured thymic organ slices maintained their postnatal growth potential, in that cytokeratin-positive epithelial monolayers could be established in vitro from these thymic slices up to 12 weeks after initiation of organ culture. Thus, thymic explants remained viable in culture and could potentially be used to reconstitute immunity in T cell deficient patients.

Antibodies, Monoclonal↗

Arthritis syndromes associated with human T cell lymphotropic virus type I infection.

Arthritis syndromes occur associated with HTLV-I infection both in the presence and in the absence of clinical ATL, and polyarthritis may be the presenting manifestation of HTLV-I-associated ATL. In both clinical settings, HTLV-I-infected T cells home to affected joints, and tax-transgenic mouse studies have suggested a pathogenic role for the HTLV-I tax gene in inducing synovial cell proliferation in HAA. Understanding the pathogenesis of rheumatoid arthritis-like arthritis syndromes that occur in the setting of HTLV-I infection should also provide insights into understanding of cellular and molecular mechanisms of synovial cell proliferation in HTLV-I-negative rheumatoid arthritis.

Animals↗

CD6-ligand interactions: a paradigm for SRCR domain function?

The scavenger receptor cysteine-rich (SRCR) superfamily, which includes proteins expressed by leukocytes, can be subdivided into groups A and B. Group B contains the lymphocyte cell-surface receptor CD6. This article reviews recent progress in understanding the interaction between CD6 and its ligand, activated leukocyte cell adhesion molecule (ALCAM). Analysis of the CD6-ALCAM interaction may help to understand how other SRCR domains bind to their ligands.

Activated-Leukocyte Cell Adhesion Molecule↗

Normalization of the peripheral blood T cell receptor V beta repertoire after cultured postnatal human thymic transplantation in DiGeorge syndrome.

Complete DiGeorge syndrome is an immunodeficiency disease characterized by thymic aplasia and the absence of functioning peripheral T cells. A patient with this syndrome was transplanted with cultured postnatal human thymic tissue. Within 5 weeks of transplantation, flow cytometry, T cell receptor V beta sequence analysis, and cell function studies showed the presence of oligoclonal populations of nonfunctional clonally expanded peripheral T cells that were derived from pretransplantation T cells present in the skin. However, at 3 months posttransplantation, a biopsy of the transplanted thymus showed normal intrathymic T cell maturation of host T cells with normal TCR V beta expression on thymocytes. By 9 months postransplantation, peripheral T cell function was restored and the TCR V beta repertoire became polyclonal, coincident with the appearance of normal T cell function. These data suggest that the transplanted thymus was responsible for the establishment of a new T cell repertoire via thymopoiesis in the chimeric thymic graft.

Base Sequence↗

HIV vaccines: where we are and where we are going.

As the HIV-1 epidemic continues to spread world wide, the need for an effective vaccine remains urgent. Efforts to develop such a vaccine have been hampered by three main factors: (a) the extraordinary ability of the virus to mutate; (b) inability of most known specificities of anti-HIV antibodies to neutralise HIV primary isolates consistently; and (c) lack of understanding of the correlates of protective immunity to HIV infection. In view of the complex biology of HIV-host interactions, the most fruitful avenue may be development of multivalent HIV immunogens tailored to HIV isolates in specific geographical locations.

AIDS Vaccines↗

Conformational preferences of a chimeric peptide HIV-1 immunogen from the C4-V3 domains of gp120 envelope protein of HIV-1 CAN0A based on solution NMR: comparison to a related immunogenic peptide from HIV-1 RF.

A critical problem to overcome on HIV vaccine design is the variability among HIV strains. One strategy to solve this problem is the construction of multicomponent immunogens reflective of common HIV motifs. Currently, it is not known if these motifs should be based primarily on amino acid sequence or higher-order structure of the viral proteins of a combination of the two. In this paper, we report NMR-derived solution conformations for a sympathetic peptide taken from the C4 and V3 domains of HIV-1 CAN0A gp120 envelope protein. This peptide, designated T1-SP10CAN0(A), is compared to a recently reported C4-V3 peptide. T1-SP10RF(A) from the HIV-1 RF strain [de Lorimier et al. (1994) Biochemistry 33, 2055-2062], in terms of conformational features and immune responses in mice [Haynes et al. (1995) AIDS Res. Hum. Retroviruses 11, 211-221]. The T1 segment of 16 amino acids from the gp120 C4 domain is identical in both peptides and exhibits nascent helical character. The SP10 region, taken from the gp120 V3 loop, differs from that of T1-SP10RF(A) in both sequence and conformations. A reverse turn is observed at the conserved GPGX sequence. The rest of the Sp10 domain is extended with the exception of the last three residues which show evidence for a helical arrangement. Modeling of the turn region of the T1-SP10CAN0(A) peptide shows exposure of a continuous apolar stretch of side chains similar to that reported in the crystal structure of a V3 peptide from HIV-1 MN complexed with a monoclonal antibody [Rini et al. (1993) Proc. Natl. Acad. Sci. U.S.A. 90, 6325-6329]. this hydrophobic patch is interrupted by a charged Lys residue in the T1-SP10RF(A) peptide. This observation suggests that the HIV-1 CAN0A and HIV-1 RF C4-V3 peptides can induce widely different anti-HIV antibodies. consistent with immunogenic results.

Amino Acid Sequence↗

In vitro culture of human peripheral blood monocytes induces hyaluronan binding and up-regulates monocyte variant CD44 isoform expression.

CD44 is a cell surface proteoglycan homologous to cartilage link protein that serves as a receptor for hyaluronan (HA). CD44 isoforms include an unspliced 80- to 90-kDa standard form (CD44S) and isoforms derived from alternative splicing of nine CD44 variant exons (CD44V). Ligation of CD44 isoforms on monocytes induces the production of IL-1 and TNF-alpha. In addition, CD44 mAbs and HA inhibit HIV infection of monocytes by monocytotropic HIV, but do not inhibit T cell tropic HIV infectivity of T cells. To determine the ability of PB lymphocytes and monocytes to bind HA and to define and compare CD44 isoforms present on PB monocytes and lymphocytes, we studied PBMC using a panel of CD44 mAbs, HA-FITC, flow cytometry, and Western blot analysis. We found that freshly isolated PB monocytes and lymphocytes did not bind soluble HA. However, in vitro culture of PBMC for 8 to 16 h resulted in CD44-dependent HA-FITC binding to monocytes, but not to lymphocytes. Western blot and flow cytometry analyses using CD44 mAbs demonstrated selective expression of high m.w. CD44V isoforms on cultured monocytes, but not on lymphocytes. Finally, tissue macrophages and multinucleated giant cells from patients with inflammatory lesions expressed CD44V6- and CD44V9-containing CD44 isoforms in vivo, suggesting that CD44V expression is associated with differentiation of monocytes to tissue macrophages in vivo in inflammatory sites. Taken together, our data demonstrate that PB monocytes, but not T or B lymphocytes, acquire the ability to bind HA and up-regulate CD44V expression after in vitro culture.

CD3 Complex↗

Toward an understanding of the correlates of protective immunity to HIV infection.

Considerable progress has been made recently in understanding the genetic, immunologic and virologic factors in human immunodeficiency virus (HIV)-infected individuals who either rapidly progress or do not progress to acquired immunodeficiency syndrome (AIDS). In addition, detection of HIV-specific immune responses in HIV-negative individuals who have been exposed to the virus multiple times suggests that natural immune responses to HIV may be protective in rare individuals. Understanding the correlates of protective immunity to HIV infection is critical to efforts to develop preventive HIV vaccines as well as to determine the feasibility of treating HIV infection by boosting immunity to HIV.

AIDS Vaccines↗

A pathogenetic role for TNF alpha in the syndrome of cachexia, arthritis, and autoimmunity resulting from tristetraprolin (TTP) deficiency.

Tristetraprolin (TTP) is a widely expressed potential transcription factor that contains two unusual CCCH zinc fingers and is encoded by the immediate-early response gene, Zfp-36. Mice made deficient in TTP by gene targeting appeared normal at birth, but soon manifested marked medullary and extramedullary myeloid hyperplasia associated with cachexia, erosive arthritis, dermatitis, conjunctivitis, glomerular mesangial thickening, and high titers of anti-DNA and antinuclear antibodies. Myeloid progenitors from these mice showed no increase in sensitivity to growth factors. Treatment of young TTP-deficient mice with antibodies to tumor necrosis factor alpha (TNF alpha) prevented the development of essentially all aspects of the phenotype. These results indicate a role for TTP in regulating TNF alpha synthesis, secretion, turnover, or action. TTP-deficient mice may serve as useful models of the autoimmune inflammatory state resulting from chronic effective TNF alpha excess.

Animals↗

Functional association of CD7 with phosphatidylinositol 3-kinase: interaction via a YEDM motif.

Human CD7 is a 40 kDa protein expressed on thymocytes, early T, B, NK and myeloid lineage cells in bone marrow, and on mature T and NK cells. Previous studies suggested human CD7 may be involved in T and NK cell activation and/or adhesion, and that CD7-mediated cell activation may be transduced via the lipid kinase phosphatidylinositol 3-kinase (Pi3-kinase), a heterodimeric cytosolic protein consisting of an 85 kDa adaptor subunit that is coupled to a 110 kDa catalytic subunit. It has recently been shown that a sequence motif present in the cytoplasmic tall of both human and mouse CD7 bound with high affinity to recombinant SH2 domains present in the p85 subunit of Pi3-kinase. In this work, we used co-precipitation with anti-CD7 mAb 3A1 and recombinant p85 SH2-GST fusion proteins and peptide competition analysis to demonstrate that the cytoplasmic tail of CD7 interacts with a functional Pi3-kinase via the pTyr-X-X-Met motif. Furthermore, we show that cross-linking of CD7 markedly increased the amount of Pi3-kinase activity associated with CD7. The interaction of CD7 with the Pi3-kinase signal transduction pathway provides a mechanism for the previously observed functional responses attributed to CD7-mediated T and NK cell activation.

Amino Acid Sequence↗

Update on the issues of HIV vaccine development.

Major scientific obstacles blocking the development of a successful preventive HIV vaccine are the extraordinary variability of HIV, the lack of an exact animal model of HIV-induced AIDS, and the lack of understanding of the correlates of positive immunity to HIV. Current HIV vaccines containing the HIV gp120 envelope have been tested in phase I and II trials but they have had a major limitation of neutralizing only T-cell tropic laboratory-adapted HIV strains grown in T-cell lines, but not neutralizing HIV primary isolates. Phase III trials of monovalent HIV gp120 envelope vaccines are being planned in the US and Thailand, but concern has been raised that recombinant monovalent gp120 may not be an appropriate immunogen for an efficious HIV vaccine. Because the immune response is probably responsible for controlling the viral load in some long-term survivors of HIV infection, studies are now being carried out to induce similar immunity against a broad spectrum of strains of HIV primary isolates with targeted HIV experimental immunogens.

AIDS Vaccines↗

The mouse CD7 gene: identification of a new element common to the human CD7 and mouse Thy-1 promoters.

Human CD7 (hCD7) is a 40 000 Mr member of the immunoglobulin gene superfamily that is expressed early in natural killer (NK) and T-lymphocyte development. CD7 is involved in lymphocyte activation, as ligation of CD7 activates NK and TCRgammadelta T lymphocytes, and ligation of CD7 on TCRalphabeta T lymphocytes induces a non-mitogenic calcium flux. We have previously cloned and characterized the gene for human CD7 (hCD7) and have described its expression in transgenic mice. Recently a mouse cDNA homologous to hCD7 was reported, which we mapped to the corresponding mouse chromosomal location as hCD7. We now report the identification and characterization of a mouse CD7 (mCD7) genomic clone. We demonstrated that the mCD7 gene was similar both in size and structural organization to hCD7. Comparison of the 5' flanking sequences of the mCD7 and hCD7 genes revealed two regions of sequence similarity. Electrophoretic mobility shift assay confirmed both of these regions to be sites of tissue-restricted protein binding in vitro. The more 3' similarity region also shared sequence with a region in the mouse Thy-1 gene 5' flanking region, suggesting that this sequence may be a cis-acting regulatory element common to all three genes. Thus, the promoter regions and exonic organization were similar in the human CD7, mouse CD7, and mouse Thy-1 genes.

Amino Acid Sequence↗