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S Komori

Publications and source records attributed to S Komori.

At least 19 recordsLinked to original sources

Inhibition of abnormal T cell development and autoimmunity in gld mice by transgenic T cell receptor beta chain.

Mice homozygous for the gld (generalized lymphoproliferative disease) mutation developed systemic autoimmune disease and severe lymphadenopathy due to an age-related accumulation in the peripheral lymphoid organs of polyclonal T cells bearing a unique phenotype (CD4-CD8-TCR alpha beta+B220+). These T cells overexpress T cell receptor (TcR) alpha beta chain RNA, proto-oncogenes c-myb and fyn, and proliferate poorly in response to TcR-mediated stimulation. The origin of these T cells is poorly understood. To study the influence of a functionally rearranged TcR beta chain on the T cell developmental abnormality of the gld mutation and autoimmunity, we have backcrossed TcR V beta 8.1-transgenic mice to C3H-gld/gld to homozygosity (transgenic gld mice). In transgenic gld mice, lymphadenopathy was markedly inhibited and the accumulation of CD4-CD8- T cells did not occur, although the remaining T cells overexpressed c-myb and proliferated poorly in response to TcR occupancy. These features indicate that the pattern of proto-oncogene expression and abnormal function persist in phenotypically normal T cells in transgenic gld mice, and that these characteristics can be dissociated from the accumulation of CD4-CD8- T cells. The hypergammaglobulinemia and anti-double-stranded DNA (anti-dsDNA) antibody production was partially improved in transgenic gld mice, supporting the critical role of T cells in abnormal B cell activation described in autoimmunity-prone mice. To investigate further the mechanisms underlying the inhibition of CD4-CD8- T cell accumulation in transgenic gld mice, the fetal ontogeny of T cells in transgenic mice was compared with that of non-transgenic mice. In transgenic thymus, development of TcR alpha beta+ cells was accelerated as detected by earlier expression of CD4, CD8 and TcR in fetal thymus. In contrast, the number of TcR gamma delta+ cells was reduced. We suggest that altered T cell development in transgenic mice directly or indirectly inhibits the accumulation of abnormal T cells in gld mice.

Animals

Reye's syndrome in Olmsted County, Minnesota: did it exist before 1963?

In this study, our goals were to determine whether Reye's syndrome existed before the first published report of this entity in 1963 and to describe the long-term incidence and trend of this syndrome. Medical and pathologic records and pathologic specimens for Mayo Clinic patients, including those who were residents of Olmsted County, Minnesota, were reviewed through the facilities of the Rochester Epidemiology Project. On review, 12 cases were identified for the period 1920 through 1962; 2 of these cases were in Olmsted County residents. Of the 12 cases identified before 1963, 10 were in patients younger than 5 years of age. In addition to the aforementioned two cases, five others in Olmsted County were diagnosed between 1963 and 1989. Incidence rates were computed for the Olmsted County population. The number of cases and rates per 100,000 persons younger than 18 years of age in that population were 2 cases (0.3) for 1920 through 1962, 4 cases (0.7) for 1963 through 1980, and 1 case (0.4) for 1981 through 1989. Although cases found during the earlier periods may have included disorders that mimic Reye's syndrome, the recommended criteria from the Centers for Disease Control were applied to review of medical records and supported by pathologic findings in the liver. The data showed an age distribution tending toward young patients and no seasonality of occurrence. The incidence rates in Olmsted County, Minnesota, showed an increase for 1963 through 1980 over previous decades, followed by a decrease. The small numbers preclude any conclusion about trends in the incidence rates.

Child

Antiarrhythmic effects of preconditioning in anaesthetised dogs and rats.

OBJECTIVE: The aim was to determine the relationship of the duration of short coronary artery occlusions and of the reperfusion period to the extent of the antiarrhythmic effect of preconditioning. METHODS: A prolonged occlusion of a coronary artery in 102 anaesthetised rats and 55 anaesthetised dogs was preceded by a variable number of preconditioning coronary artery occlusions, of varying duration and with variable reperfusion periods between them and the prolonged occlusion. RESULTS: Preconditioning in both species reduced the severity of ischaemia induced arrhythmias, epicardial ST segment changes, and alterations in the degree of inhomogeneity of conduction during a subsequent prolonged coronary artery occlusion, provided that the reperfusion time was less than 30 min (in rats) and 1 h (in dogs). This antiarrhythmic effect of preconditioning was marked; eg, in dogs following two preconditioning occlusions survival from a combined ischaemia-reperfusion insult was 40% (cf, 0% in the controls). CONCLUSIONS: Short preconditioning periods of myocardial ischaemia protect the myocardium against the arrhythmogenic effects of a more prolonged occlusion. The optimum time for this preconditioning occlusion in rats is 3 min and protection is still apparent 30 min later. In dogs, the protective effect is especially clear with two short (5 min) coronary artery occlusions. The protection in this species lasts for less than 1 h.

Animals

Response of V beta 8.1+ T cell clones to self Mls-1a: implications for the origin of autoreactive T cells.

Clonal deletion and anergy are two major mechanisms of self-tolerance. However, the molecular mechanisms underlying clonal deletion and anergy, as well as the threshold of TCR affinity/avidity required for these processes, are not known. Expression of the V beta 8.1 TCR correlates with the reactivity of the T cells to the minor lymphocyte stimulating locus-1a (Mls-1a) and T cells expressing this TCR are deleted in the thymus of Mls-1a mice. Similarly, in TCR V beta 8.1 transgenic mice, the number of CD4+CD8-T cells is reduced in Mls-1a mice. However, small numbers of CD4+CD8-T cells remain in the periphery of adult Mls-1a transgenic mice. We have generated T cell clones from TCR V beta 8.1 transgenic mice by stimulation of lymph node T cells with C57BL/6 alloantigens. Interestingly, CD4+CD8-V beta 8.1+ clones isolated from the transgenic mice of Mls-1a background responded to the self-antigen Mls-1a, to which they did not respond in primary assay. Reactive patterns of the clones were compared with clones derived from Mls-1b mice. Proliferation and cytokine production of the clones from Mls-1a mice to the self-antigen Mls-1a were generally reduced when compared with clones from Mls-1b mice. More importantly, T cell clones from Mls-1a mice required more Mls-1a antigen for their activation, and were more susceptible to the inhibitory effects of anti-CD4 antibody on the proliferative responses to Mls-1a than those from Mls-1b mice. These results suggest that the T cell receptor on clones derived from Mls-1a mice have functional but reduced affinity/avidity for self-antigen Mls-1a.

Animals

Membrane potential and current responses to neurotensin in the longitudinal muscle of the rectum of the fowl.

1. The effects of neurotensin (NT) on membrane potential and membrane current of the longitudinal smooth muscle of chicken rectum were investigated by intracellular recording and whole-cell voltage clamp. 2. NT (3 nM-1.2 microM), when applied via the bathing medium, produced a concentration-dependent membrane depolarization with an EC50 of 18 +/- 2 nM (n = 7) which was accompanied by an increase in the membrane conductance. The effect was biphasic: an initial, rapid depolarization reached a peak within 2-3 min and then declined to a lower but still elevated level which was sustained until washout. 3. Excitatory junction potentials (e.j.ps), which were non-adrenergic non-cholinergic (NANC) in nature, were decreased in amplitude and total duration in the presence of NT (0.6 microM). The depression of the e.j.p. was due mainly to the reduction of the membrane resistance. 4. When NT was applied locally by means of pressure ejection from a micropipette containing NT, some cells responded with a membrane depolarization and some failed to respond, whereas e.j.ps could invariably be elicited from all of them. 5. In single muscle cells enzymatically isolated from the muscle and dialyzed under voltage clamp at -50 mV with a CsCl-rich solution, NT (5 or 10 microM) produced an inward current. NT-induced inward currents were obtained with inclusion of 10 mM EGTA in the pipette solution and their reversal potential was around 0 mV. In cells dialyzed under voltage clamp at 0 mV with a KCl-rich solution, NT (5 microM) produced a brief outward current followed by abolition of spontaneous transient outward currents.6. The present results suggest that the membrane depolarization, which may arise from activation of non-selective cation channels, and release of calcium from internal stores produced by neurotensin are responsible for its contractile activity in the longitudinal smooth muscle of chicken rectum. Further, the depolarizing effect may provide support for the involvement of NT in the NANC transmission in this preparation.

Adenosine Triphosphate

GTP-binding protein involvement in membrane currents evoked by carbachol and histamine in guinea-pig ileal muscle.

1. Single smooth muscle cells obtained by enzymic dispersion of the longitudinal muscle layer of guinea-pig ileum were used for recording membrane currents under whole-cell voltage clamp in response to carbachol (100 microM, unless otherwise stated) or histamine (100 microM) applied extracellularly. 2. At a holding potential of 0 mV, a transient outward current was evoked by carbachol and histamine. Responses to the two agonists were very similar in size and time course to the current response to caffeine (10 mM). The response to carbachol was virtually absent in the presence of histamine, and vice versa. Caffeine was without effect in the presence of either of these agonists. Inclusion of EGTA (10 or 20 mM) in the pipette abolished the responses to carbachol, histamine and caffeine. Thus, the outward current responses were considered to represent opening of Ca(2+)-activated K+ channels in response to a massive release of Ca2+ from the same stores by these three agents. 3. An inward current was evoked by carbachol and histamine, but not by caffeine at a holding potential of -40 mV, which was considered to represent opening of cationic channels. The carbachol-induced inward current was much longer in duration and larger in size than the histamine-induced inward current. 4. Inclusion of GDP beta S (2 mM) in the pipette abolished the inward and outward current responses to histamine, but inhibited only part of those to carbachol. 5. When the holding potential was held at 0 mV with inclusion of GTP gamma S (0.1-1 mM) in the pipette, spontaneous transient outward currents appeared immediately after break-through but disappeared a few minutes later. Under these conditions, caffeine (10 mM) was almost without effect, suggesting that GTP gamma S had released Ca2+ stores. When the holding potential was held at -40 mV and GTP gamma S (0.1 or 0.2 mM) was present in the pipette, an inward current developed a few minutes after break-through. During the GTP gamma S-induced inward current, application of carbachol or histamine produced no further inward current. However, when 0.01 mM-GTP gamma S was included in the pipette solution, carbachol- and histamine-induced inward currents were potentiated. 6. Pretreated with 2-5 micrograms/ml pertussis toxin (PTX) did not change noticeably the outward current responses to carbachol and histamine, but abolished or markedly reduced the inward current responses.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

The effect of pretreatment with moricizine on early arrhythmia resulting from myocardial ischemia in rats.

Moricizine (moracizine) is a new class I antiarrythmic drug which is undergoing a large scale clinical trial at present. A rat model was used to compare the effects of moricizine (5 mg/kg i.v.), disopyramide (DSP 5 mg/kg i.v.) and mexiletine (MXT 5 mg/kg i.v.) on early ventricular arrhythmias occurring within 30 min after ligation of the left coronary artery. After intravenous administration, all three drugs slowed the heart rate significantly (p less than 0.01), and compared to the control group only moricizine significantly increased the systolic, diastolic and mean arterial blood pressures. The total number of premature ventricular complexes were as follows; control group (n = 9); 1666 +/- 250 beats, moricizine group (n = 7); 1645 +/- 417 beats (NS), DSP group (n = 10); 325 +/- 155 beats (p less than 0.01 vs control) and MXT group (n = 10); 733 +/- 147 beats (p less than 0.01 vs control). The incidence of primary ventricular fibrillation, was significantly reduced by DSP and MXT (10% reduction and 20% reduction respectively) (p less than 0.05), while moricizine (incidence 80%) had no effect in comparison to the control group (incidence 90%). Death due to arrhythmia was completely abolished by DSP and MXT; although moricizine showed a slight tendency to increase the mortality rate, but the difference was not significant. In conclusion, moricizine has no obvious protective effect on early ventricular arrhythmias resulting from coronary artery occlusion in rats.

Animals

Inhibitory effect of moricizine on reperfusion induced tachyarrhythmias in rats--a comparison study with disopyramide and mexiletine.

Acute ligation of proximal left coronary artery was performed on forty male Sprague-Dawley rats. Five min later, occlusion was released in order to evaluate the effectiveness of the 3 antiarrhythmic drugs in eliminating reperfusion ventricular arrhythmias. The drugs evaluated were moricizine (5 mg/kg), disopyramide (DSP) (5 mg/kg) and mexiletine (MXT) (5 mg/kg), which were administered intravenously 5 min before ligation of the coronary artery. Compared to control rats that underwent identical experimental procedures, all 3 drugs significantly lowered the mortality rate from 90% of the control group to 20, 20 and 0% for moricizine, DSP and MXT groups. The incidence of ventricular fibrillation (Vf) was also decreased significantly by these drugs. The duration of ventricular tachycardia (VT) and Vf of surviving rats in drug groups were 111.7 +/- 35.0 sec, 71.6 +/- 29.4 sec and 32.9 +/- 14.6 sec for moricizine, DSP and MXT, respectively. Many of the drug treated rats could be restored to the normal sinus rhythm and survived. All 3 drugs slowed the heart rate significantly, but as for the blood pressure only MXT showed significant suppressing effect. In conclusion, moricizine has the same significant preventive effect on reperfusion induced ventricular tachyarrhythmias as DSP and MXT.

Animals

Inositol trisphosphate releases stored calcium to block voltage-dependent calcium channels in single smooth muscle cells.

In single cells obtained by enzymic treatment of rabbit small-intestinal smooth muscle, and held under voltage clamp by patch pipette in the whole-cell recording mode, release of inositol trisphosphate (InsP3) from its caged precursor by flash photolysis caused complete inhibition of the voltage-dependent calcium current. No inhibition was seen in control experiments where the cage (2-nitrosoacetophenone) was released by flash photolysis from caged ATP. The inhibition by InsP3 of the calcium current was prevented if 10 mM EGTA or 2 mg/ml heparin was included in the pipette solution. Heparin is known to block InsP3 receptors. These results suggest that release of calcium stores by InsP3 raises Cai and that calcium ions inhibit the calcium current by acting either directly or otherwise on the internal mouth of the calcium channel.

Animals

Protective effect of preconditioning on reperfusion induced ventricular arrhythmias of isolated rat hearts.

STUDY OBJECTIVE: The aim was to investigate the effect of preconditioning on reperfusion induced arrhythmias in the isolated working rat heart. DESIGN: Rat hearts were perfused with modified Krebs-Henseleit bicarbonate buffer. A 15 min period of global ischaemia was performed followed by a reperfusion period of 5 min. This procedure was repeated three times. Hearts were divided into the control group (n = 10) and the free radical scavenger group (n = 11). Hearts in the latter were reperfused in the presence of scavengers (SOD 3.5 x 10(4) U.litre-1 and catalase 5.0 x 10(5) U.litre-1). EXPERIMENTAL MATERIAL: Hearts were obtained from male Sprague-Dawley rats (270-350 g). MEASUREMENTS AND MAIN RESULTS: The incidence of reperfusion induced ventricular fibrillation in the control group decreased from 100% to 70% (NS) and to 40% (p less than 0.01) during the second and the third reperfusion periods, respectively. In the scavenger group, the incidence of ventricular fibrillation was the same in each reperfusion period at 45%. The time to onset of ventricular fibrillation increased at the second reperfusion in both groups. CONCLUSIONS: (1) The protective effect of preconditioning on reperfusion induced arrhythmia is evident in the isolated rat heart. (2) Addition of free radical scavengers reduced the incidence of reperfusion arrhythmia. However, the protective effect of preconditioning was lost.

Animals

Calcium release induced by inositol 1,4,5-trisphosphate in single rabbit intestinal smooth muscle cells.

1. Single smooth muscle cells were isolated by enzymic digestion from the longitudinal muscle layer of rabbit jejunum, and the response of the cells to calcium (Ca2+) release by InsP3 (D-myo-inositol 1,4,5-trisphosphate) was studied. Changes in internal Ca2+ concentration were monitored by measuring Ca(2+)-activated K+ currents (outward currents) using the whole-cell voltage-clamp technique. 2. At break-through from cell-attached patch to whole-cell recording mode using a 100 microM-InsP3-filled pipette, cells exhibited a brief outward current which reached its peak in 1.1 s and terminated within 10 s. Following this the generation of spontaneous transient outward currents (STOCs) was inhibited. (STOCs are considered to represent bursts of openings of Ca(2+)-activated K+ channels in response to spontaneous discharges of Ca2+ from the stores.) When a pipette filled with 20 microM-InsP3 was used, similar current responses were also evoked, but some cells failed to respond. 3. The InsP3-induced outward current at membrane break-through was similar in size and time course to the outward current response of normal cells to bath-applied carbachol (CCh, 100 microM) or caffeine (20 mM). 4. Dialysis with InsP3-containing solution inhibited the caffeine-induced outward current, depending on the pipette InsP3 concentration. Inclusion of heparin (5 mg/ml) in the pipette completely prevented inhibition by InsP3 of the caffeine response and of STOC discharge. However, the InsP3-induced current at break-through remained unchanged, probably because of the slower rate of diffusion of heparin. 5. In cells dialysed with pipette solution containing 30 or 100 microM-caged InsP3, flash photolysis (producing up to 1.5 microM-InsP3) induced an outward current response after a latency of 31.0 +/- 1.8 ms (n = 15), which was followed by inhibition of STOCs. The reversal potential of the current to flash-release of InsP3 followed closely the Nernst potential for K+ ions (EK), suggesting negligible contributions from channels other than Ca(2+)-activated K+ channels. 6. Photolysis of caged InsP3 (30 or 100 microM) still produced a current response after 3-6 min in Ca(2+)-free (3 mM-EGTA added) bathing solution, but no response occurred if the cell was exposed to either caffeine (20 mM) or CCh (100 microM) to deplete Ca stores.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

The role of oxygen free radicals and extracellular calcium ions in reperfusion-induced arrhythmias.

To examine the role of oxygen free radicals and extracellular calcium ions in reperfusion-induced ventricular arrhythmias, we evaluated the effects of hypoxic reperfusion, oxygen free radical scavengers, allopurinol and hypocalcemic reperfusion on reperfusion-induced ventricular arrhythmias. The hearts of male Sprague-Dawley rats were perfused in the working heart mode. Whole heart ischemia was induced for 15 min and then reperfused. Rats were divided into 5 groups: control group, scavenger group, allopurinol group, hypoxia group and hypocalcemia group. Scavenger, hypoxic and hypocalcemic perfusions were undertaken only during the period of perfusion. The incidence of reperfusion-induced ventricular fibrillation (Vf) was reduced in the scavenger group (100% to 38%) and the hypoxia group (100% to 50%). Spontaneous reversion of Vf to regular sinus rhythm was recognized in the hypoxia and hypocalcemia groups. In conclusion, oxygen free radicals would play an important role in the genesis of the reperfusion arrhythmias, and extracellular calcium concentration would also play an important role in sustaining the reperfusion arrhythmias. Notably, hypoxic reperfusion had protective effects on both processes.

Allopurinol

Stimulative effect of sodium nitroprusside on peristaltic reflex in isolated guinea pig ileal segments.

Intestinal segments obtained from guinea pig ileum were set up in an organ bath to record peristaltic responses to distension by a pressure rise in the lumen. The effects of drugs applied in the bathing medium on the peristaltic responses were examined. Sodium nitroprusside (10(-9) M to 10(-5) M) stimulated the peristaltic reflex. Nitroglycerin (10(-7) M) was similarly effective in stimulating the peristalsis. A permeable cyclic GMP, 8-bromo cyclic GMP (2.5 x 10(-4) M), mimicked the action of these compounds. Methylene blue (10(-5) M) blocked the nitroprusside-induced stimulation of the peristalsis, but not the effect of 8-bromo cyclic GMP. Sodium nitroprusside did not change the baseline tension of the circular muscle, and it enhanced neither the contractile response to electrical direct stimulation nor the cholinergic transmission to the circular muscle. These results suggest that nitric oxide is formed from the nitrocompounds in mechanosensitive neurons in the intestine and causes activation of guanylate cyclase by which the level of intracellular cyclic GMP is elevated, and cyclic GMP acts to make the stretch receptors more sensitive. As nitric oxide is derived from the enteric vascular bed or neurons, its importance as a modulator of peristaltic activity in the intestine is discussed.

Animals

Effects of vasoactive intestinal peptide on transmission from excitatory and inhibitory nerves to smooth muscle cells in chicken rectum.

The effects of vasoactive intestinal peptide on electrical membrane properties and neuromuscular transmission, which is resistant to atropine and guanethidine, were investigated in isolated circular muscle strips from chicken rectum. Intracellular microelectrodes were used to record changes in membrane potential. Vasoactive intestinal peptide (0.2-1.0 microM) hyperpolarized the membrane of cells of the muscle strip. The mean maximal hyperpolarization produced by 1 microM vasoactive intestinal peptide was 5.3 +/- 0.4 mV. Electrotonic potentials were unchanged in amplitude and the slopes of the current-voltage curves were similar before and after application of the peptide, indicating no change in membrane resistance in the presence of the peptide. The hyperpolarizing effect was preserved in the presence of apamin. These properties of the peptide-induced hyperpolarization were shared by the inhibitory junction potential. In addition, vasoactive intestinal peptide (0.5 or 1.0 microM) markedly inhibited or abolished the inhibitory junction potential but had little effect on the excitatory junction potential. The present results suggest a possible physiological implication of this peptide as a neurotransmitter of the inhibitory neurone in chicken rectum.

Animals

T-cell receptor and autoimmune disease.

Since the genes encoding the TCR have been cloned, their structure, organization, pattern of rearrangement, diversification and expression in ontogeny have been classified. However, there are still many important questions to be addressed, such as the nature of thymic education, tolerance, the mechanism of MHC-restricted antigen recognition and the relation between TCR repertoire and autoimmunity. In the future, new approaches to study these issues, such as transgenic mice, X-ray crystallography, and severe combined immune deficiency mice reconstituted with human hematopoietic cells will lead to a more profound understanding of these questions. This will hopefully allow us to manipulate the immune response in different and more effective ways than are currently available.

Animals

Self-reactive T cells can escape clonal deletion in T-cell receptor V beta 8.1 transgenic mice.

To study the mechanisms of tolerance in detail, we have constructed transgenic mice expressing a V beta 8.1-D beta 2-J beta 2.3-C beta 2 T-cell receptor (TCR) gene. Since expression of V beta 8.1 is known to correlate with reactivity of CD4+CD8- T cells to minor lymphocyte-stimulating locus 1a (Mls-1a), we expected to induce tolerance in most CD4+CD8- T cells in V beta 8.1 transgenic mice of the Mls-1a allele. In one line of Mls-1b V beta 8.1 transgenic mice, the V beta 8.1 TCR was expressed on greater than 98% of mature T cells and their response to Mls-1a was highly enriched. In Mls-1a V beta 8.1 transgenic mice, CD4+CD8- T cells in these mice were severely reduced among both peripheral T cells and thymocytes. However, the deletion of these cells was not complete, and most of the residual CD4+CD8- mature T cells still expressed normal densities of V beta 8.1 TCR. The residual CD4+CD8- T cells did not respond to Mls-1a but were still able to proliferate in response to other stimuli via the TCR. Interestingly, CD4+CD8- V beta 8.1+ T-cell clones isolated from Mls-1a V beta 8.1 transgenic mice could respond to Mls-1a. We suggest that these types of T cells escape clonal deletion in the thymus.

Animals

Mechanisms of autoimmunity in the context of T-cell tolerance: insights from natural and transgenic animal model systems.

There are a number of mechanisms which cooperate to produce and maintain T-cell tolerance. First, and perhaps most important, is the clonal deletion in the thymus of T cells with high affinity for self antigens. However, to ensure that a wide repertoire of T cells is available in the periphery to combat foreign antigens, the threshold of clonal deletion may be set low enough so that T cells whose TCR's have sub-threshold affinity for self antigens mature and migrate to the periphery. T cells which recognize self antigen-derived peptides not expressed or presented in the thymus will also fail to be deleted. For those self-reactive T cells which are not deleted in the thymus, other mechanisms may produce tolerance, including an undefined alteration of signalling pathways which produces clonal anergy, and lowering the avidity of the TCR for its ligand by downregulating coreceptor and accessory molecules. Active suppression of T-cell responses in another well-described phenomenon whose mechanism is undefined. From our observations with the model systems discussed here, we have observed three distinct mechanisms by which T-cell tolerance can be circumvented, allowing autoimmune phenomena to occur. These mechanisms may have relevance for different types of autoimmune diseases seen in humans. In gld mice, the autoimmune disease seems to be related to a global defect in T-cell differentiation and function, which allows for the expansion of autoimmune B cells. While we showed that clonal deletion of V beta-bearing T cells is appropriate in certain cases, aberrant lymphokine secretion by the abnormal T cells or disruption of immune system regulation are most probably responsible for allowing autoantibody production. While human lupus erythematosis shares much of the pathology of lpr and gld mice, there is no expansion of T cells with a similar phenotype in human lupus. There are environmental factors which must play a role in the development of human lupus, since the incidence of the disease does not follow an absolute genetic pattern. The escape from clonal deletion and subsequent reactivation of autoimmune T cells which we observed in V beta 8.1 TCR-transgenic mice can be a model for human autoimmune diseases such as multiple sclerosis and type I diabetes, in which T cells are directed against a specific autoantigen. According to this model, susceptibility loci for autoimmune disease such as the MHC would function by producing different repertoires of T cells which in some cases could gain autoreactivity following activation.(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acid Sequence