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Functional and molecular analysis of T cell receptors used by pancreatic- and breast tumor- (mucin-) specific cytotoxic T cells.

We have previously reported that tumor-specific cytotoxic T lymphocytes (CTLs) derived from pancreatic and breast cancer patients recognize specific epitopes on the mucin polypeptide core. These CTLs recognize breast and pancreatic tumor cells in a major histocompatibility complex (MHC)-unrestricted fashion, and the lytic activity of these T cells is mediated through the T cell receptor (TCR). To characterize the TCR-mediated MHC-unrestricted CTL function, we used semiquantitative polymerase chain reaction (PCR) and cytofluorometry to analyze the TCR repertoire in CTL lines established from cancer patients and specific for mucin-expressing tumors. We found three TCR Vbeta genes, Vbeta9, Vbeta13.1. and Vbeta17, predominantly expressed in these functional cell lines, established either from one patient by stimulation with various mucin-expressing targets or from different patients. Sequencing of these preferentially used TCR genes unveiled usage of distinct Jbeta and Cbeta but a potentially interesting conservation of certain amino acids in the CDR3 region.

Amino Acid Sequence↗

Lack of donor-specific tolerance in mice with established anti-Ia-treated islet allografts.

Pancreatic islet allografts pretreated in vitro with monoclonal Ia antibody and transplanted beneath the renal capsule result in normoglycemia beyond 100 days in streptozotocin-induced diabetic recipient mice that differ only at H-2 K, H-2 K + I, or H-2 K + I + D from the donors. Mice with established islet allografts are not tolerant of donor-specific skin or islet antigens, but rather reject donor skin grafts in an accelerated fashion. Established anti-Ia antibody pretreated islet allografts continue to express target antigens and remain susceptible to rejection after challenge with donor skin grafts.

Animals↗

Immunosuppression by anti-CD4 treatment in vivo. Persistence of secondary antiviral immune responses.

Elimination of CD4+ helper T cells by treatment with monoclonal antibodies (mcAb) in vivo has been used as a new mode of immunosuppression in organ transplantation and autoimmune diseases. To explore the potential risks of this therapeutic approach we have studied antiviral responses in mice depleted of CD4+ T cells. Depletion of CD4+ T cells in vivo completely suppressed the generation of a primary virus-specific cytotoxic response. Injection of high doses of recombinant interleukin-2 (rIL-2) given after virus immunization restored the responsiveness of helper cell-depleted mice to virus-expressing target cells, suggesting a crucial role of IL-2 in antiviral defense mechanisms. In contrast to primary responses, memory cytolytic responses to viral antigens persisted despite depletion of greater than 90% of CD4+ helper T cells. The generation of such memory cytotoxic responses was dependent upon help provided by CD4+ lymphocytes surviving the antibody therapy. After antibody treatment, frequencies of virus-specific helper cells were minimal in primed mice, excluding insufficient helper cell elimination as the reason for the persistence of memory responses. Data presented here suggest that there exist distinct helper pathways in primary and secondary cytolytic antiviral responses that might represent several subsets of helper T cells as well as differences in helper signals required by distinct effector cells.

Animals↗

Detection of minor alloantigen-specific cytotoxic T cells after rejection of murine orthotopic corneal allografts: evidence that graft antigens are recognized exclusively via the "indirect pathway".

BACKGROUND: The immune mechanisms by which corneal allografts are rejected in normal ocular graft beds have not been identified. Both acceptors and rejectors of these types of grafts display donor-specific delayed hypersensitivity and in vitro proliferating primed T cells, yet neither develop conventional, donor-specific cytotoxic T cells. We wished to determine whether unconventional donor-specific cytotoxic T cells are generated in rejector mice that recognize donor minor alloantigens presented by recipient major histocompatibility complex (MHC) molecules. METHODS: BALB/c mice received orthotopic corneal allografts from C57BL/10 donors in normal eyes. At 4 weeks (when 50% of grafts can be designated as rejected), primed cytotoxic T lymphocyte (CTL) activity in draining lymph nodes and spleen was assayed on targets selected to present donor-type minor H antigens on recipient MHC molecules. Control mice received heterotopic corneal allografts and were similarly examined. RESULTS: Lymphoid organs of recipients that rejected orthotopic or heterotopic corneal allografts contained CTL that lysed targets expressing donor-type minor H antigens presented by recipient MHC molecules. By contrast, no CTL activity was detected from lymphoid cells of recipients that accepted orthotopic corneal allografts. Rejection of orthotopic corneal allografts placed into normal mouse eyes correlates directly with the generation of donor-specific CTL that recognize minor H antigens in the context of recipients MHC molecules. CONCLUSIONS: These results indicate the indirect pathway of alloantigen presentation is the only pathway operative in the process by which orthotopic corneal allografts are rejected. The roles of emigrant Langerhans cells and corneal lymphatics in the indirect pathway are discussed.

Animals↗

Phage-displayed mimotopes recognizing a biologically active anti-HIV-1 gp120 murine monoclonal antibody.

Antibody-dependent cellular cytotoxicity (ADCC) is a host defense mechanism in which Fc receptor-bearing effector cells in combination with antigen-specific antibodies recognize and kill antigen-expressing target cells. The authors previously described a murine monoclonal antibody (MAb-ID6) that mediated ADCC activity against HIV-infected cells. It was demonstrated that the specificity of MAb-ID6 maps to the first 204 amino acids of gp120; however, the exact epitope was not identified. In the present work, by screening phage display libraries with MAb-ID6, the authors have mapped the corresponding epitope to amino acids 86-100 (HIV-1 gp120 sequence). This epitope lies within the C1 region of gp120 and is highly conserved among all subtypes and circulating recombinant forms of HIV-1. Thus, these phage mimotopes of C1 may serve as components of a vaccine for the induction of gp120-specific antibodies mimicking MAb-ID6.

Amino Acid Sequence↗

Central nervous system-targeted complement inhibition mediates neuroprotection after closed head injury in transgenic mice.

The role of intracerebral complement activation after traumatic brain injury remains unclear. In this study, the authors demonstrate that transgenic mice with astrocyte-targeted expression of the soluble complement inhibitor sCrry have a significantly reduced neurologic impairment and improved blood-brain barrier function after closed head injury compared with wild-type C57BL/6 littermates. This work further implicates the complement system as a participant in secondary progression of brain damage after head trauma and provides a strong rationale for future studies of posttraumatic pharmacologic complement inhibition.

Animals↗

Control of cell number by Drosophila FOXO: downstream and feedback regulation of the insulin receptor pathway.

The Drosophila insulin receptor (dInR) regulates cell growth and proliferation through the dPI3K/dAkt pathway, which is conserved in metazoan organisms. Here we report the identification and functional characterization of the Drosophila forkhead-related transcription factor dFOXO, a key component of the insulin signaling cascade. dFOXO is phosphorylated by dAkt upon insulin treatment, leading to cytoplasmic retention and inhibition of its transcriptional activity. Mutant dFOXO lacking dAkt phosphorylation sites no longer responds to insulin inhibition, remains in the nucleus, and is constitutively active. dFOXO activation in S2 cells induces growth arrest and activates two key players of the dInR/dPI3K/dAkt pathway: the translational regulator d4EBP and the dInR itself. Induction of d4EBP likely leads to growth inhibition by dFOXO, whereas activation of dInR provides a novel transcriptionally induced feedback control mechanism. Targeted expression of dFOXO in fly tissues regulates organ size by specifying cell number with no effect on cell size. Our results establish dFOXO as a key transcriptional regulator of the insulin pathway that modulates growth and proliferation.

Amino Acid Sequence↗

Transgenic mice provide new insights into the role of TGF-alpha during epidermal development and differentiation.

Transforming growth factor-alpha (TGF-alpha) is thought to be the major autocrine factor controlling growth in epidermal cells. To explore further the role of TGF-alpha in epidermal growth and differentiation, we used a human keratin K14 promoter to target expression of rat TGF-alpha cDNA to the stratified squamous epithelia of transgenic mice. Unexpectedly, the only regions of epidermis especially responsive to TGF-alpha overexpression were those that were normally thick and where hair follicle density was typically low. This included most, if not all, body skin from 2-day- to 2-week-old mice, and ear, footpad, tail, and scrotum skin in adult mice. In these regions, excess TGF-alpha resulted in thicker epidermis and more stunted hair growth. Epidermal thickening was attributed both to cell hypertrophy and to a proportional increase in the number of basal, spinous, granular, and stratum corneum cells. During both postnatal development and epidermal differentiation, responsiveness to elevated TGF-alpha seemed to correlate with existing epidermal growth factor (EGF) receptor levels, and we saw no evidence for TGF-alpha-mediated control of EGF receptor (EGFR) expression. In adults, no squamous cell carcinomas were detected, but benign papillomas were common, developing primarily in regions of mechanical irritation or wounding. In addition, adult transgenic skin that was still both sensitive to TGF-alpha and subject to mild irritation displayed localized regions of leukocytic infiltration and granular layer loss, characteristics frequently seen in psoriasis in humans. These unusual regional and developmental effects of TGF-alpha suggest a natural role for the growth factor in (1) controlling epidermal thickness during development and differentiation, (2) involvement in papilloma formation, presumably in conjunction with TGF-beta, and (3) involvement in psoriasis, in conjunction with some as yet unidentified secondary stimulus stemming from mild mechanical irritation/bacterial infection.

Animals↗

Raf acts downstream of the EGF receptor to determine dorsoventral polarity during Drosophila oogenesis.

In Drosophila, as in mammalian cells, the Raf serine/threonine kinase appears to act as a common transducer of signals from several different receptor tyrosine kinases. We describe a new role for Raf in Drosophila development, showing that Raf acts in the somatic follicle cells to specify the dorsoventral polarity of the egg. Targeted expression of activated Raf (Rafgof) within follicle cells is sufficient to dorsalize both the eggshell and the embryo, whereas reduced Raf activity ventralizes the eggshell. We show that Raf functions downstream of the EGF receptor to instruct the dorsal follicle cell fate. In this assay, human and Drosophila Rafgof are functionally similar, in that either can induce ventral follicle cells to assume a dorsal fate.

Animals↗

Unraveling genomic regulatory networks in the simple chordate, Ciona intestinalis.

The draft genome of the primitive chordate, Ciona intestinalis, was published three years ago. Since then, significant progress has been made in utilizing Ciona's genomic and morphological simplicity to better understand conserved chordate developmental processes. Extensive annotation and sequencing of staged EST libraries make the Ciona genome one of the best annotated among those that are publicly available. The formation of the Ciona tadpole depends on simple, well-defined cellular lineages, and it is possible to trace the lineages of key chordate tissues such as the notochord and neural tube to the fertilized egg. Electroporation methods permit the targeted expression of regulatory genes and signaling molecules in defined cell lineages, as well as the rapid identification of regulatory DNAs underlying cell-specific gene expression. The recent sequencing of a second Ciona genome (C. savignyi) permits the use of simple alignment algorithms for the identification of conserved noncoding sequences, including microRNA genes and enhancers. Detailed expression profiles are now available for almost every gene that encodes a regulatory protein or cell-signaling molecule. The combination of gene-expression profiles, comparative genome analysis, and gene-disruption assays should permit the determination of high-resolution genomic regulatory networks underlying the specification of basic chordate tissues such as the heart, blood, notochord, and neural tube.

Animals↗

Expression and characterization of a redox-sensing green fluorescent protein (reduction-oxidation-sensitive green fluorescent protein) in Arabidopsis.

Arabidopsis (Arabidopsis thaliana) was transformed with a redox-sensing green fluorescent protein (reduction-oxidation-sensitive green fluorescent protein [roGFP]), with expression targeted to either the cytoplasm or to the mitochondria. Both the mitochondrial and cytosolic forms are oxidation-reduction sensitive, as indicated by a change in the ratio of 510 nm light (green light) emitted following alternating illumination with 410 and 474 nm light. The 410/474 fluorescence ratio is related to the redox potential (in millivolts) of the organelle, cell, or tissue. Both forms of roGFP can be reduced with dithiothreitol and oxidized with hydrogen peroxide. The average resting redox potentials for roots are -318 mV for the cytoplasm and -362 mV for the mitochondria. The elongation zone of the Arabidopsis root has a more oxidized redox status than either the root cap or meristem. Mitochondria are much better than the cytoplasm, as a whole, at buffering changes in redox. The data show that roGFP is redox sensitive in plant cells and that this sensor makes it possible to monitor, in real time, dynamic changes in redox in vivo.

Arabidopsis↗

Selective induction of apoptosis in melanoma cells by tyrosinase promoter-controlled CD95 ligand overexpression.

Induction of apoptosis has been demonstrated previously by overexpression of CD95 ligand (CD95L) in cultured human melanoma cells. For in vivo approaches based on CD95L, however, targeted expression is a prerequisite and tyrosinase promoters have been considered for selection. Luciferase reporter gene assays performed for a representative panel of melanoma cell lines characterized by strong (SK-Mel-19), moderate (SK-Mel-13, MeWo), weak (A-375), and missing expression (M-5) of endogenous tyrosinase revealed high tyrosinase promoter activities in SK-Mel-19, SK-Mel-13, and MeWo, but only weak activities in A-375 and M-5 as well as in non-melanoma cell lines. After transfection of a CMV promoter CD95L expression construct, melanoma cells were found highly sensitive, as compared with non-melanoma cells. By applying a tyrosinase promoter CD95L construct, apoptosis was selectively induced in SK-Mel-19, SK-Mel-13, MeWo as well as in A-375, which was characterized by high CD95 surface expression and high sensitivity to agonistic CD95 activation. M5 and non-melanoma cell lines remained uninfluenced. Also, resistance to agonistic CD95 activation seen in MeWo characterized by weak CD95 surface expression was overcome by overexpression of CD95L. Our investigations provide evidence that tyrosinase promoter CD95L constructs may be of value for selective induction of apoptosis in therapeutic strategies for melanoma.

Apoptosis↗

cGMP and a germ-line signal control body size in C. elegans through cGMP-dependent protein kinase EGL-4.

Mechanisms involved in the control of body size are largely unknown. In the nematode C. elegans, several small body size mutants were isolated, and the responsible genes were reported to encode putative components of a TGFbeta signalling pathway. Recently, mutants in the egl-4 gene encoding cGMP-dependent protein kinases were found to have a larger body size, and it was suggested that EGL-4 down-regulates the TGFbeta/DBL-1 pathway. We show that a permeable cGMP analogue 8-Br-cGMP significantly reduces body size of the wild-type but not that of an egl-4 mutant, indicating that cGMP controls body size through EGL-4. Laser ablation of germ-line cells revealed that a germ-line signal and EGL-4 function in the same pathway. Targeted expression of EGL-4 indicates that EGL-4 can function in hypodermis, neurones and intestine both cell-autonomously and cell-nonautonomously to control organ and body size. We propose a signal cascade for the control of body size that involves a germ-line signal, cGMP, G-kinase EGL-4 and DBL-1/TGFbeta pathway. It is interesting that two important pathways involving cGMP and TGFbeta, respectively, are related. Also, the results suggest a novel mechanism for the control of organ and body size in which hypodermis plays a key role

8-Bromo Cyclic Adenosine Monophosphate↗

Multiple phytohormones influence distinct parameters of the plant circadian clock.

Circadian systems coordinate endogenous events with external signals. In mammals, hormone-clock feedbacks are a well-known integration system. Here, we investigated phytohormone effects on plant-circadian rhythms via the promoter:luciferase system. We report that many hormones control specific features of the plant-circadian system, and do so in distinct ways. In particular, cytokinins delay circadian phase, auxins regulate circadian amplitude and clock precision, and brassinosteroid and abscisic acid modulate circadian periodicity. We confirmed the pharmacology in hormone synthesis and perception mutants, as rhythmic expression is predictably altered in an array of hormone-related mutants. We genetically dissected one mechanism that integrates hormone signals into the clock, and showed that the hormone-activated ARABIDOPSIS RESPONSE REGULATOR 4 and the photoreceptor phytochrome B are elements in the input of the cytokinin signal to circadian phase. Furthermore, molecular-expression targets of this signal were found. Collectively, we found that plants have multiple input/output feedbacks, implying that many hormones can function on the circadian system to adjust the clock to external signals to properly maintain the clock system.

Arabidopsis↗

Negative correlation between intrahepatic expression of hepatitis C antigens and apoptosis despite high-level expression of Fas and HLA antigens.

The role of virus-related apoptosis in hepatic injury in chronic HCV is unclear. It is unknown whether HCV induces apoptosis directly or whether cellular injury is immunologically mediated. We studied the relationship between infected hepatocytes, apoptosis and necroinflammation. We established a Fluorescence Activated Cell Sorter (FACS) based intracellular staining technique for the HCV NS3 protein and examined intrahepatic viraemia, disease activity and apoptosis. We also stained infected cells for expression of human leucocyte antigen (HLA) class I and Fas antigens. We examined 34 liver biopsies (24 from patients with HCV) and found marked variation in the proportion of infected cells (2.5-42%). The number of infected cells correlated with serum viraemia but not histology. The number of infected cells was inversely related to the number of apoptotic cells (P < 0.001); infected cells expressed both HLA class I (14 cases) and Fas antigens (12 cases). The number of hepatocytes infected with hepatitis C is variable and does not influence histological activity. In infected patients, the majority of HCV-positive hepatocytes express target molecules for activated lymphocytes (Fas and HLA class I antigens) but they do not undergo apoptosis, suggesting that hepatitis C may inhibit apoptosis by modulating intracellular pro-apoptotic signals.

Adult↗

Listeria monocytogenes virulence proteins induce surface expression of Fas ligand on T lymphocytes.

Virulence factors secreted by Listeria monocytogenes are known to interfere with host cellular signalling pathways. We investigated whether L. monocytogenes modulates T-cell receptor signalling by examining surface expression of proteins known to be upregulated on activated T cells. In vitro culture of murine splenocytes with L. monocytogenes resulted in a specific and dose-dependent upregulation of Fas ligand (FasL). Induction of FasL expression was also observed for pathogenic Listeria ivanovii but not for non-pathogenic Listeria innocua, indicating involvement of Listeria virulence protein(s). Examination of L. monocytogenes strains deficient in different virulence genes demonstrated that FasL upregulation was dependent on the expression of two secreted proteins: listeriolysin O (LLO) and phosphatidylcholine-preferring phospholipase C (PC-PLC). Treatment of cells with purified proteins demonstrated that LLO was sufficient for inducing FasL, while PC-PLC synergized with LLO for the induction of FasL expression. FasL-expressing cells induced by L. monocytogenes were capable of killing Fas-expressing target cells. Furthermore, L. monocytogenes infection results in upregulation of FasL on T cells in mice. These results describe a novel function for LLO and PC-PLC and suggest that L. monocytogenes may use these virulence factors to modulate the host immune response.

Animals↗

Identification of SpyA, a novel ADP-ribosyltransferase of Streptococcus pyogenes.

Streptococcus pyogenes, the aetiological agent of both respiratory and skin infections, produces numerous exotoxins to establish infection. This report identifies a new exotoxin produced by this organism, termed SpyA, for S. pyogenesADP-ribosylating toxin. SpyA, MW 24.9, has amino acid identity with the ADP-riboslytransferases (ADPRTs) Staphylococcus aureus EDIN and Clostridium botulinum C3. Recombinant SpyA was able to hydrolyse beta-NAD(+), and this activity was dependent on a glutamate at position 187. SpyA has a putative biglutamate active site, and similar to most biglutamate ADPRTs, was able to ADP-ribosylate poly-l-arginine. SpyA modified numerous proteins in both CHO and HeLa cell lysates. Two-dimesional gel analysis and MALDI-TOF MS analysis of modified proteins indicated that vimentin, tropomyosin and actin, all cytoskeletal proteins, are targets. Expression of spyA in HeLa cells resulted in loss of actin microfilaments. We hypothesize that SpyA is produced by S. pyogenes to disrupt cytoskeletal structures and promote colonization of the host.

ADP Ribose Transferases↗

Identification of HLA-A*3101-restricted cytotoxic T-lymphocyte response to human immunodeficiency virus type 1 (HIV-1) in patients with chronic HIV-1 infection.

Virus-specific cytotoxic T-lymphocyte (CTL) responses are critical in the control of human immunodeficiency virus type 1 (HIV-1) infections. As several HIV-1 CTL epitopes restricted to many HLA types are already known, we aimed at identifying the CTL epitopes restricted by HLA-A*3101 in an effort to expand the epitope repertoire available for the development of potential T cell-mediated therapeutic measures and protective vaccines. Scanning of HIV-1 clade B SF2 strain proteins for the presence of peptides containing HLA-A*3101-binding motifs revealed 88 nine- to 11-mer peptides that had been synthesized and assayed for binding to HLA-A*3101 molecules. Peptides with medium to high HLA-binding affinity were tested for their ability to stimulate a CTL response in the peripheral blood mononuclear cells (PBMCs) from selected HIV-1-infected patients. Two of these binding peptides, Env769-779 (RLRDLLLIAAR) and Nef192-200 (KLAFHHMAR), induced peptide-specific CTLs in PBMCs from at least two of five HIV-1-seropositive individuals. CTL clones specific for the two peptides killed HLA-A*3101-expressing target cells infected with HIV-1 recombinant vaccinia virus, indicating that these peptides were naturally processed HLA-A*3101-restricted CTL epitopes. Identification of T-cell epitopes on HIV-1 proteins will increase our understanding of the role of CD8+ T cells in HIV-1 infections and assist in the design of new protective strategies.

Epitopes, T-Lymphocyte↗