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Biomedical subjects

S M Collins

Publications and source records attributed to S M Collins.

At least 91 records · Page 5Linked to original sources

The immunomodulation of enteric neuromuscular function: implications for motility and inflammatory disorders.

Gastrointestinal motility and sensory perception are altered in a variety of mucosal inflammatory conditions of the gut, ranging from peptic esophagitis to ulcerative colitis. Studies in animal models now clearly indicate a causal relationship between the presence of mucosal inflammation and altered sensory-motor function. In many instances, these changes occur in the absence of any discernible encroachment of the deeper neuromuscular layers by the inflammatory infiltrate, which remains largely within the lamina propria. Accordingly, attention has focused on local sources of mediators, and recent studies indicate that smooth muscle cells and enteroglia are sources of and targets for cytokines such as interleukin 1 beta and interleukin 6. In several instances, neuromuscular dysfunction persists after mucosal inflammation has subsided; this state may be maintained by locally produced mediators. Studies also show the ability of enteric muscle to modulate lymphocyte function via major histocompatibility complex II-restricted antigen presentation. Clinical observation and experimental data also suggest that nerves modulate intestinal inflammation via local release of proinflammatory neuropeptides (substance P) and via the activation of extensive circuits that may involve the brain. Taken together, these findings provide plausible explanations for a variety of clinical scenarios ranging from inflammatory bowel disease to pseudo-obstruction syndromes and subgroups of functional bowel disorders.

Adjuvants, Immunologic↗

Orthodontic and orthognathic surgical correction of Class III malocclusion.

This case was presented as part of the student case displays at the 1994 AAO meeting, sponsored by the College of Diplomates of the American Board of Orthodontics. It was selected to be submitted for publication in the American Journal of Orthodontics and Dentofacial Orthopedics by a CDABO committee.

Adolescent↗

Similarities and dissimilarities between asthma and inflammatory bowel diseases.

Because both asthma and inflammatory bowel disease are chronic relapsing inflammatory conditions, comparisons are inevitable. Both disorders reflect the convergence of environmental trigger factors in genetically predisposed individuals. The genetic preposition may be on a polygenic basis or on the basis of genetic heterogeneity. Environmental factors that may trigger the expression or relapse in asthma and inflammatory bowel disease include: cigarette smoking (in Crohn's but not in ulcerative colitis), the use of non-steroidal anti-inflammatory drugs in asthma and Crohn's disease), infection and possibly stress. TH lymphocytes are currently believed to be important in asthma and in Crohn's disease but not in ulcerative colitis. IgE-activated eosinophils and mast cells are central to the maintenance of asthma but do not play such a crucial role in inflammatory bowel disease. TH2 cytokines including IL-4 and IL-5 are believed to be important in the inflammatory response of asthma, and TH cytokines are believed to be in Crohn's disease but a TH1 or TH2 subclassification is not currently evident. The hallmark of asthma is increased reactivity of the airways, in terms of bronchoconstriction. Altered physiology also accompanies inflammatory bowel disease but hyperactivity is not an invariable feature. Finally, it is becoming increasingly evident that neural influences modulate inflammatory processes and this is likely to be relevant to both asthma and inflammatory bowel disease.

Animals↗

Activation of T lymphocytes by syngeneic murine intestinal smooth muscle cells.

BACKGROUND & AIMS: Intestinal smooth muscle cells (ISMCs) express major histocompatibility complex II (MCH II) and intercellular adhesion molecule 1 (ICAM-1) after exposure to interferon gamma (IFN-gamma). T lymphocytes invade the intestinal musculature during Crohn's disease or pseudoobstruction. The aim of this study was to determine whether ISMCs activate syngeneic T cells via MHC II and ICAM-1. METHODS: Cultured murine ISMCs were exposed to IFN-gamma for 72 hours and analyzed for Mac-1 (CD11B CD18) antigen, MHC II, and ICAM-1 expression using enzyme-linked immunosorbent assay and fluorescence-activated cell sorter scan. T lymphocytes from mesenteric lymph nodes of ovalbumin-sensitized mice were examined for their ability to proliferate after coculture with IFN-gamma-pretreated and ovalbumin-pretreated ISMCs using [3H]thymidine incorporation. RESULTS: ISMCs expressed smooth muscle alpha-actin before and after IFN-gamma exposure. No macrophages were identified in these cultures. Exposure to IFN-gamma and ovalbumin for 72 hours induced MHC II and ICAM-1 expression; these treated ISMCs induced T-cell proliferation, whereas untreated ISMCs did not. T-cell proliferation was markedly enhanced by adding interleukin 2 and was blocked by antibodies against MHC II and ICAM-1. CONCLUSIONS: ISMCs activate T lymphocytes in an MHC II-linked manner and thus possess the ability to modulate immune function in the gut.

Animals↗

Leukemia inhibitory factor mediates cytokine-induced suppression of myenteric neurotransmitter release from rat intestine.

BACKGROUND & AIMS: Exposure of rat longitudinal muscle myenteric plexus to the proinflammatory cytokine interleukin (IL) 1 beta mimics the effects of nematode infection on enteric nerve function through a hitherto unidentified protein intermediate. It is postulated that leukemia inhibitory factor (LIF), the downstream intermediate of several IL-1-induced neuroimmune interactions, mediates IL-1 beta-induced suppression of acetylcholine release from rat jejunum. METHODS: Preparations were preloaded with [3H]choline, and [3H]-acetylcholine release was induced by either electrical field stimulation or by 50 mmol/L KCl. Cytokines and anti-LIF antibodies were added to the preincubation media or to the superfusate before stimulation. RESULTS: Human recombinant LIF had no immediate effects, but preincubation with the cytokine induced a concentration-dependent (2-100 ng/mL) and reversible suppression of acetylcholine release from rat longitudinal muscle myenteric plexus. The effects of human recombinant LIF on acetylcholine release were reversed by anti-human recombinant LIF-neutralizing antibody. Human recombinant IL-1 beta (10 ng/mL) induced a similar suppression of acetylcholine release, and the addition of anti-rat LIF antibody abolished the effects of exogenous IL-1 on acetylcholine release. CONCLUSIONS: IL-1 beta suppresses neurotransmitter release from rat myenteric plexus via the induction of LIF as a downstream intermediate.

Acetylcholine↗

P2x-purinoceptors of myenteric neurones from the guinea-pig ileum and their unusual pharmacological properties.

1. Whole-cell and outside-out patch clamp recordings were used to characterize the physiological and pharmacological properties of the P2x-purinoceptors of myenteric neurones from the guinea-pig ileum. 2. Adenosine 5'-triphosphate (ATP) and analogues (1-3000 microM) evoked a rapid inward current in > 90% of all recorded neurones. The reversal potential of this current was dependent on the extracellular sodium concentration, at +14 +/- 1.9, 0 +/- 1.6 and -12 +/- 1 mV for 166, 83 and 42 mM of sodium, respectively. The fast activation and inactivation of this current occurred even when guanosine 5'-triphosphate (GTP) was omitted from the pipette solution or substituted with an equimolar concentration of guanosine 5'-o-[2-thiotriphosphate] (GTP-gamma-S). Single channel currents were observed when these outside-out membrane patches were exposed to ATP (10-30 microM). These channels have a unitary conductance of about 17 picosiemens. 3. The rank-order of potency of the agonists used to induce the whole-cell currents was: ATP-gamma-S = ATP = 2-methylthio-ATP (2-Me-S-ATP) > > alpha, beta-methylene ATP = beta, gamma-methylene ATP; adenosine and uridine 5'-triphosphate (UTP) (up to 1 mM) were inactive. 4. Pyridoxalphosphate-6-azophenyl-2',4'-disulphonic acid (PPADS) (1-30 microM) antagonized the effects of ATP (1 mM) with an IC50 of 4 microM. alpha, beta-Methylene ATP (100 microM) did not affect the ATP (30 microM)-induced current. Cibacron Blue 3GA increased the ATP activated cationic current whereas Basilen Blue E-3G had a very weak antagonistic effect (IC50 > or = 3 mM). Suramin potentiated the currents induced by ATP through a mechanism that was independent of its inhibitory effect on ectonucleotidase activity, as suramin also potentiated the effect of alpha, beta-methylene ATP (an ATP analogue that is resistant to nucleotidases). 5. In conclusion, the myenteric P2x-purinoceptor shares some properties with other purinoceptors in particular with the P2x4- and P2x6-purinoceptors. This receptor has also some unusual pharmacological properties suggesting that myenteric neurones express a novel subtype of P2x-purinoceptors. The properties of this receptor, however, might be a result of the combination of two or more of the homomeric purinoceptors so far characterized.

Adenosine Triphosphate↗

Effects of oral L-NAME during Trichinella spiralis infection in rats.

We investigated the involvement of nitric oxide in transmural jejunal alterations induced by Trichinella spiralis (T. spiralis) infection in rats. Rats were gavaged with either saline or T.spiralis larvae, and, 1 h later, rats were treated orally with water, NG-nitro-L-arginine methyl ester (L-NAME; 30 mg/kg), or NG-nitro-D-arginine methyl ester (D-NAME; 30 mg/kg) on a daily basis. Although not observed in jejunum from uninfected rats, inducible nitric oxide synthase (iNOS) mRNA was present in the mucosa and neuromuscular layers of jejunum from T. spiralis-infected rats. On day 6, T. spiralis-infected rats had a 6-fold decrease in transmural nitric oxide synthase activity, an 11-fold increase in plasma nitrite, and a 7-fold elevation in transmural myeloperoxidase (MPO) activity compared with uninfected controls. Intestinal smooth muscle cell hyperplasia and hypertrophy were only detected in the infected rats. L-NAME, but not D-NAME, treatment of infected rats for 6 days caused a pronounced increase in transmural iNOS mRNA expression, coinciding with significantly increased mucosal nitric oxide synthase activity. T. spiralis numbers in L-NAME-treated rats were significantly lower compared with the other two infected groups although L-NAME had no direct effect on T. spiralis viability in vitro. Furthermore, L-NAME treatment significantly reduced plasma nitrite and jejunal MPO but not intestinal smooth muscle cell hyperplasia or hypertrophy. In contrast, D-NAME treatment of infected rats significantly enhanced intestinal smooth muscle hyperplasia and hypertrophy. Taken together, these results suggest that alterations in the T. spiralis-infected jejunum are mediated, in part, by a suppression of nitric oxide synthase activity in the inflamed jejunum.

Administration, Oral↗

Dissociation of temperature changes and anorexia after experimental colitis and LPS administration in rats.

The acute phase of inflammation induces both anorexia and fever. Because several analyses suggest a linkage between the meal size and body temperature, we assessed whether temperature changes were causal to anorexia in situations involving acute inflammation. Specifically, we evaluated whether elevations of body temperature could account for the reduced food intake after induction of experimental colitis [via intrarectal infusions of trinitrobenzene sulfonic acid (TNB)] or injection of 100 micrograms/kg lipopolysaccharide (LPS). Temperature was monitored telemetrically in rats via implanted temperature transmitters. TNB-treated rats demonstrated a 5-day anorexia that resulted specifically from a decrease in meal size. Although TNB-treated rats were hypothermic on the day of treatment, no other body temperature changes were noted. LPS reduced food intake and elevated temperature, but these two effects were uncorrelated temporally. Although these results do not identify the mechanisms of anorexia, the findings indicate clearly that the anorexia associated with the acute inflammatory response is not secondary to fever.

Animals↗

Metabolism of apolipoprotein B in primary moderate hypercholesterolaemia: effects of acipimox and cholestyramine therapy.

The effects of combined therapy with acipimox (1250 mg/day) and cholestyramine (20 g/day) were examined in a group of 7 subjects with primary moderate hypercholesterolaemia (total cholesterol >=7 mmol/L). Radiolabeled VLDL subfraction turnovers were performed at baseline, during acipimox therapy and during combined therapy. Acipimox and combined therapies lowered plasma low density lipoprotein (LDL)-cholesterol by 20% (P<0.001) and 27% (P<0.001) respectively. The marked fall in LDL-cholesterol associated with acipimox therapy, was due to a reduced production rate of LDL (apolipoprotein) apoB. This is shown to be a result of reduced direct LDL apoB production, reduced IDL to LDL transfer consistent with inhibition of hepatic triglyceride lipase, and with a reduction in the overall throughput of VLDL1 apoB. With combined therapy both reduced production and increased catabolism of apoB containing LDL precursors and of LDL itself have to be invoked to explain the fall in plasma LDL-cholesterol.

Adult↗

Can atherosclerotic coronary arteries vasodilate? An intraoperative high-frequency epicardial echocardiographic study.

Our purpose was to evaluate the vasodilating responses of atherosclerotic coronary arteries using intraoperative high-frequency (12 MHz) epicardial echocardiography. We obtained continuous high-frequency epicardial echocardiographic recordings during surgery, and determined cross-sectional lumen area from 17 coronary arterial segments (12 patients). Nitroglycerin (100 to 400 micrograms/min) was administered intravenously to reduce mean (+/- SEM) arterial pressure 14 +/- 1.8 mm Hg. The cross-sectional arterial images were classified using 3 different parameters: arterial lumen area, percentage of the arterial wall circumference that was atherosclerotic (wall thickness > 0.7 mm), and presence of an eccentrically shaped arterial lumen (maximal/minimal luminal diameter > 1.5). Nine arterial segments had small (< 5.0 mm2) arterial lumens (1.7 +/- 0.40 mm2 [+/- SEM; range 0.6 to 3.9]). With nitroglycerin, the luminal area increased 0.8 +/- 0.28 mm2 (range 0 to 2.5), and 39 +/- 12.1% (range 0 to 117). The remaining 8 segments had larger (> 5.0 mm2) lumens (8.7 +/- 0.91 mm2 [range 5.0 to 11.9]). With nitroglycerin the luminal area increased 4.3 +/- 1.11 mm2 (range 1.4 to 11.4), and 51 +/- 10.2% (range 16 to 96). Seven arterial segments had eccentric lumens; mean maximal/minimal ratio was 1.8 +/- 0.08 (range 1.6 to 2.0). The area increased 39 +/- 7.3% (range 16 to 71) with nitroglycerin. In the 10 concentrically shaped lumens (maximal/minimal lumen diameters 1.3 +/- 0.04 [range 1.1 to 1.5]), nitroglycerin increased luminal area by 48 +/- 12.6% (range 0 to 117) (p = NS).(ABSTRACT TRUNCATED AT 250 WORDS)

Coronary Artery Disease↗

Interleukin 1 beta induces the expression of interleukin 6 in rat intestinal smooth muscle cells.

BACKGROUND/AIMS: The increased expression of several cytokines, including interleukin 6 (IL-6), has recently been reported in a study of the longitudinal muscle and myenteric plexus layers of rat intestine following Trichinella spiralis infection. However, the putative cellular sources and the mechanism underlying the induction of IL-6 in these tissues are presently unknown. The aim of this study was to examine the ability of cultured smooth muscle cells from rat jejunum to produce IL-6 messenger RNA and protein and to investigate the underlying mechanism. METHODS: Cultured smooth muscle cells were treated with human recombinant interleukin 1 beta (HrIL-1 beta). The level of IL-6 messenger RNA was estimated by polymerase chain reaction, and the released IL-6 protein was estimated by bioassay. RESULTS: HrIL-1 beta induced IL-6 messenger RNA expression in the smooth muscle cells in a time- and concentration-dependent manner. This was accompanied by the secretion of IL-6 protein into the medium. The effect of HrIL-1 beta was blocked by the IL-1 receptor antagonist, by actinomycin D, or by prior boiling of the cytokine. CONCLUSIONS: These findings show that HrIL-1 beta interacts with its receptor on smooth muscle cells to induce transcription of the IL-6 gene and to cause the secretion of IL-6. These results indicate that intestinal smooth muscle cells are not only targets for but also a source of cytokine.

Animals↗

Experimental colitis alters myenteric nerve function at inflamed and noninflamed sites in the rat.

BACKGROUND & AIMS: Studies in inflammatory bowel disease have shown extensive structural abnormalities in the enteric nervous system of inflamed and noninflamed gut; however, functional correlates are lacking. The aim of this study was to determine the effect of colitis on myenteric nerve function at inflamed and noninflamed sites in rat intestine. METHODS: Tritiated noradrenaline release was measured from longitudinal muscle myenteric plexus preparations from the distal and transverse colon and terminal ileum of rats with colitis induced by trinitrobenzene sulfonic acid or Trichinella spiralis larvae. RESULTS: As characterized by myeloperoxidase activity and histology, both models induced inflammation restricted to the distal colon. In distal colon in trinitrobenzene sulfonic acid colitis, KCl- or electrical field stimulation-evoked 3H release was suppressed by 56% and 60%, respectively; in T. spiralis-infected rats, the KCl-evoked release was suppressed by 58%. 3H release was also suppressed by similar magnitudes in noninflamed transverse colon and terminal ileum of each model. CONCLUSIONS: Experimental distal colitis alters myenteric nerve function in inflamed distal colon and noninflamed gut regions. These changes are independent of the manner in which colitis is induced and provide a basis for the extensive disruption of physiological function observed in inflammatory bowel disease.

Adrenergic Fibers↗

Involvement of eicosanoids and macrophage-like cells in cytokine-mediated changes in rat myenteric nerves.

BACKGROUND & AIMS: Proinflammatory cytokines alter function in enteric nerves, but little is known about underlying mechanisms. This study was designed to investigate the roles of prostanoids and of macrophage-like cells in cytokine-induced suppression of [3H]norepinephrine release from rat myenteric plexus. METHODS: The release of 3H from jejunal longitudinal muscle-myenteric plexus preparations that had been loaded with [3H]norepinephrine was measured. Measurements of 3H release as well as concentrations of prostaglandin E2 and leukotriene were made in preparations exposed to interleukin 1 beta plus interleukin 6 and in the presence or absence of piroxicam, 5-lipoxygenase inhibitor MK886, cycloheximide, or cyclosporin A. An ultrastructural analysis was also performed to investigate the presence of macrophage-like cells in the myenteric plexus. RESULTS: Interleukin 1 beta plus interleukin 6 suppressed 3H release and caused an increase in tissue prostaglandin E2 but not leukotriene E4. Piroxicam and cycloheximide but not MK886 attenuated the cytokine-induced increase in prostaglandin E2 and the suppression of [3H]norepinephrine release. Ultrastructural analysis showed macrophage-like cells in the plexus, and the cytokine effects were inhibited by cyclosporin A. CONCLUSIONS: Prostanoids but not leukotrienes mediate the cytokine-induced suppression of norepinephrine release, and the results of this study suggest that macrophage-like cells are also involved.

Analysis of Variance↗

The selective beneficial effects of nitric oxide inhibition in experimental colitis.

We investigated the involvement of nitric oxide in trinitrobenzene-sulfonic acid (TNB) colitis. Every 24 h after TNB, rats were orally dosed with NG-nitro-L-arginine methyl ester (L-NAME; 30 mg/kg), NG-nitro-D-arginine methyl ester (D-NAME), or water, and food intake, body weight, and plasma nitrite levels were measured. On day 6, colonic nitric oxide synthase and myeloperoxidase (MPO) activity, histology, intestinal muscle growth, NADPH-diaphorase, and myenteric nerve function were assessed. Food intake and body weight were reduced during the first 72 h of colitis. On day 6 post-TNB, a fourfold increase in mucosal nitric oxide synthase, a 30-fold increase in MPO, and a fivefold elevation in plasma nitrite were measured. Smooth muscle hyperplasia and hypertrophy in both colonic muscle layers, numerous diaphorase-positive macrophages in the myenteric plexus, and a suppression of myenteric nerve function were also observed. Unlike D-NAME, oral L-NAME reduced MPO and intestinal muscle hyperplasia by > 90%. Likewise, plasma nitrite and colonic nitric oxide synthase were reduced by > 70%. L-NAME completely prevented macrophage infiltration into the muscle. Conversely, it had no effect on anorexia or intestinal smooth muscle hypertrophy, nor did it affect suppressed myenteric nerve neurotransmitter release. These results demonstrate the selective transmural protective effects of L-NAME in the inflamed colon, implicating nitric oxide as a mediator.

Amino Acid Oxidoreductases↗

Fourth isoform of preprotachykinin messenger RNA encoding for substance P in the rat intestine.

Three different isoforms of preprotachykinin mRNA (PPT mRNA) encode for substance P and related neuropeptides (1). Here we report a fourth isoform of PPT mRNA which is generated by alternative exclusion of exon-7 and exon-6 from the PPT mRNA. It was present mainly in ileal smooth muscle and mucosa, colon, heart and brain and low level of this mRNA was detected in the jejunal smooth muscle and mucosa. This was not detected in the kidney or uterus. The level of this PPT mRNA was enhanced significantly by 60% during colitis in rat induced by trinitro benzene sulphonic acid.

Alternative Splicing↗

Expression of cytokines in the longitudinal muscle myenteric plexus of the inflamed intestine of rat.

BACKGROUND/AIMS: Trichinella spiralis infection in the rat produces mucosal injury and inflammation and causes changes in muscle function and neurotransmitter release in the longitudinal muscle myenteric plexus (LMMP). Whether these changes in LMMP reflect the production of inflammatory mediators in the LMMP remains unknown. The objective of this study was to investigate the profile of interleukins (IL) 1-alpha, 1-beta, and 6 and tumor necrosis factor (TNF) alpha in the LMMP of infected rats. Because muscle changes are T-cell dependent, we also studied the cytokine profile in infected athymic rats. METHODS: Cytokine messenger RNA (mRNA) was examined using semiquantitative polymerase chain reaction, and protein was measured by enzyme-linked immunosorbent assay, radioimmunoassay, or bioassay. RESULTS: There was increased expression of IL1-alpha and -beta, IL-6, and TNF-alpha mRNA and protein in the LMMP of both euthymic and athymic infected rats. Increased expression of each cytokine was observed by 24 hours postinfection and, in the case of IL1-beta and TNF-alpha, remained elevated by day 6 postinfection. CONCLUSIONS: Mucosal injury following T. spiralis infection is accompanied by enhanced expression of proinflammatory cytokines in the LMMP. The expression of IL1-, IL-6, and TNF-alpha in infected athymic rats suggests that these cytokines do not contribute to the changes in muscle growth or contraction but may mediate the previously described changes in neurotransmitter release in this model.

Animals↗

Synergism between interleukins 1 beta and 6 on noradrenergic nerves in rat myenteric plexus.

BACKGROUND/AIMS: Because levels of interleukins 1 beta and 6 (IL-1 beta and IL-6) are elevated during intestinal Trichinella spiralis infection, they may mediate the changes in enteric neural function in that model. IL-1 beta suppresses norepinephrine release from the myenteric plexus, but the effect of IL-6 is unknown. Therefore, we investigated the effects of IL-6 alone and in combination with IL-1 beta on norepinephrine release. METHODS: Longitudinal muscle myenteric plexus or myenteric nerve varicosity preparations from jejunum of noninfected rats were loaded with [3H]norepinephrine, and 3H release was measured after a preincubation with or without human recombinant IL-6, alone or in combination with human recombinant IL-1 beta. RESULTS: 1 ng/mL of IL-6 augmented 3H release, 100 ng/mL suppressed 3H release, whereas 10 ng/mL had no effect. However, IL-6 (10 ng/mL) plus a subthreshold concentration of human recombinant IL-1 beta significantly suppressed 3H release, and this was abolished by adding anti-IL-6 antibody or an IL-1 receptor antagonist. CONCLUSIONS: Because 3H release reflects [3H]norepinephrine release, our results show that IL-6 exerts a dual effect on norepinephrine release. Furthermore, there is synergism between IL-1 beta and IL-6 resulting in suppression of norepinephrine release. Therefore, both cytokines may contribute to the suppression of norepinephrine release observed in the inflamed intestine.

Animals↗

Limitations of predictive motifs revealed by cytotoxic T lymphocyte epitope mapping of the human papilloma virus E7 protein.

Human papilloma virus (HPV) type 16 is found in the majority of cervical cancer patients and the transforming protein E7 is consistently expressed in cancer cells, making it a potential target for immune attack. In this study we have investigated whether E7 gains access to the MHC class I processing pathway and provides cytotoxic T lymphocyte (CTL) stimulating peptide epitopes. CTL were induced in H-2b mice by immunization with recombinant vaccinia virus expressing E7 (Vac-E7). To map CTL recognition, natural peptides were purified from cells expressing either intact or truncated E7 protein. Following peptide separation by HPLC one major CTL epitope was detected and truncated constructs localized this epitope to the C-terminal region. Mapping with synthetic peptides indicated that residues 49-57 (RAHYNIVTF) were recognised by anti-E7 CTL. Synthetic 49-57 peptide was used to induce CTL, which recognized the same HPLC purified natural peptide fractions as anti-E7 CTL. Binding motifs for H-2b class I molecules did not predict residues 49-57 to be a CTL epitope, but instead the sequence 21-28 (DLYCYEQL) which contains a Kb anchor motif. Synthetic 21-28 peptide was found to bind to Kb class I molecules and readily induced CTL, indicating that the T cell repertoire of H-2b mice can recognize this epitope. However, these CTL did not recognize peptides isolated from E7 expressing cells, showing that natural processing did not produce detectable levels of the 21-28 epitope. Together, the data demonstrate that an unexpected E7 peptide can function as a major CTL epitope.

Amino Acid Sequence↗