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Biomedical subjects

S D Levin

Publications and source records attributed to S D Levin.

14 recordsLinked to original sources

Defective T cell receptor signaling in mice lacking the thymic isoform of p59fyn.

Considerable evidence supports the hypothesis that the nonreceptor protein tyrosine kinase p59fyn participates in signal transduction from the T cell receptor (TCR). To examine this hypothesis in detail, we have produced mice that lack the thymic isoform of p59fyn but retain expression of the brain isoform of the protein. fynTnull mice exhibit a remarkably specific lymphoid defect: thymocytes are refractile to stimulation through the TCR with mitogen or antigen, while peripheral T cells, following what appears to be a normal maturation sequence, reacquire significant signaling capabilities. These data confirm that p59fynT plays a pivotal role in TCR signal transduction and demonstrate that additional developmentally regulated signaling components also contribute to TCR-induced lymphocyte activation.

Animals

Interaction of the IL-2 receptor with the src-family kinase p56lck: identification of novel intermolecular association.

In the interleukin-2 (IL-2) system, intracellular signal transduction is triggered by the beta chain of the IL-2 receptor (IL-2R beta); however, the responsible signaling mechanism remains unidentified. Evidence for the formation of a stable complex of IL-2R beta and the lymphocyte-specific protein tyrosine kinase p56lck is presented. Specific association sites were identified in the tyrosine kinase catalytic domain of p56lck and in the cytoplasmic domain of IL-2R beta. As a result of interaction, IL-2R beta became phosphorylated in vitro by p56lck. Treatment of T lymphocytes with IL-2 promotes p56lck kinase activity. These data suggest the participation of p56lck as a critical signaling molecule downstream of IL-2R via a novel interaction.

Adult

Delayed thymocyte development induced by augmented expression of p56lck.

Accumulating evidence supports the contention that CD4 and CD8 receptor molecules play a critical signaling role during thymocyte development. The lymphocyte-specific protein tyrosine kinase (p56lck), by virtue of its physical association with these surface components, provides a likely candidate for the biochemical signal transducing element required for these effects. To investigate the function of p56lck in T lymphocytes, transgenic mice were produced that carry either the wild-type lck gene or a mutated lck gene encoding a constitutively activated form of p56lck (p56lckF505). Both transgenes were expressed in thymocytes under the control of the lck proximal promoter element. A large set of founder animals was obtained in which steady-state accumulation of lck transgene mRNA directly correlated with transgene copy number, suggesting that this transgene contains a dominant control region. Progeny of these founders exhibited a transgene-dependent dose-related decrease in the production of thymocytes bearing functional antigen receptors. This effect was strictly dependent on p56lck activity, in that both wild-type and mutated versions of the genes induced similar effects with differing efficiencies. Remarkably, even a twofold increase in p56lck abundance was sufficient to substantially disrupt the appearance of functional thymocytes. These results indicate that thymocyte maturation is regulated in part by signals derived from p56lck.

Animals

Thymic tumorigenesis induced by overexpression of p56lck.

The lck gene encodes a membrane-associated protein tyrosine kinase (p56lck) that is believed to participate in lymphocyte-specific signal transduction pathways. To investigate the function of this molecule, transgenic mice were generated carrying the wild-type lck gene or a mutated lck gene encoding a constitutively activated form of p56lck (p56lckF505). Transgene expression in thymocytes was achieved in each case using the lck proximal promoter element. Mice expressing high levels of either p56lckF505 or p56lckY505 reproducibly developed thymic tumors. The sensitivity of thymocytes to p56lck-induced transformation suggests that disturbances in lck expression may contribute to the pathogenesis of some human neoplastic diseases.

Animals

Interaction of the unique N-terminal region of tyrosine kinase p56lck with cytoplasmic domains of CD4 and CD8 is mediated by cysteine motifs.

p56lck, a lymphocyte-specific member of the src family of cytoplasmic protein-tyrosine kinases, is associated noncovalently with the cell surface glycoproteins CD4 and CD8, which are expressed on functionally distinct subpopulations of T cells. Using transient coexpression of p56lck with CD4 or CD8 alpha in COS-7 cells, we show that the unique N-terminal region of p56lck binds to the membrane-proximal 10 and 28 cytoplasmic residues of CD8 alpha and CD4, respectively. Two cysteine residues in each of the critical sequences in CD4, CD8 alpha, and p56lck are required for association. Our results suggest a novel role for cysteine-mediated interactions between unrelated proteins and provide a model for the association of other src-like cytoplasmic kinases with transmembrane proteins.

Amino Acid Sequence

Transformation of NIH 3T3 fibroblasts by an activated form of p59hck.

Phosphorylation of a tyrosine residue near the carboxy terminus of src-family protein tyrosine kinases is believed to regulate the biological activity of these gene products. Conversion of this tyrosine in p59hck (Tyr-501) to a phenylalanine residue by using oligonucleotide-directed mutagenesis yielded a product (p59hckF501) with very potent transforming activity. Quantitative analysis by a soft-agar cloning assay revealed that p59hckF501 was more than 100-fold more effective than a closely related transforming element, p56lckF505, in colony formation. Cells bearing p59hckF501 had increased levels of protein phosphotyrosine. The ability of p59hckF501 to transform NIH 3T3 cells was abolished by a second mutation believed to destroy the ATP-binding domain.

Amino Acid Sequence

Characterization of a human-mouse chimeric antibody reactive with a human melanoma associated antigen.

The data presented demonstrate that a human-murine chimeric antibody has been generated that retains the immunoreactivity and has similar pharmacokinetic properties of its parent murine monoclonal antibody NRML-05. A competitive ELISA assay demonstrated that antigen reactivity of both parent and chimera were nearly identical. In a direct cell binding assay, NRML-05 and chimeric antibodies were immunoreactive, 81% and 83%, respectively. Scatchard Analysis of the antibodies indicate very similar affinities for NRML-05 (4.4 x 10(9) M-1) and chimera (2.7 x 10(9) M-1). Localization of the two antibodies to tumor xenografts in nude mice were very similar in biodistribution studies. The chimeric antibody is not as well recognized by antiglobulin from patients who have responded to non-idiotypic murine antibody determinants. Although this data does not predict how immunogenic a chimera would be in the clinical setting, it does suggest that patients without significant anti-idiotypic antiglobulin response could benefit from second and subsequent administrations with chimeric antibody. Even though anti-idiotypic responses may occur with the chimera, these may be reduced as a result of the presentation of these epitopes on the less immunogenic human constant domains.

Animals

Patterns of cerebral glucose metabolism using 18FDG and positron tomography in the neurologic investigation of the full term newborn infant.

18F fluorodeoxyglucose (18FDG) and positron tomography (PT) were used in 20 full term babies with seizures or hypotonia to describe regional cerebral glucose metabolism. Among babies with seizures, birth asphyxia was the most common cause. PT was performed at age 6-17 days. One hour before PT, 18FDG (50-100 microCi/kg) was injected intravenously. Ten or more PT sections were obtained in each infant. The areas of the brain that were metabolically the most active were the cortex and the thalami. Six cortical areas and a white matter reference area were selected for analysis of relative rates of glucose metabolism as indicated by relative rates of fluorine-18 activity. Cortical fluorine-18 activity was highest in the pericentral (sensorimotor) regions and lowest in the frontal regions. The overall cortex/white matter ratio for fluorine-18 activity averaged 1.78 +/- 0.44 (SD). Four patterns of regional cerebral glucose metabolism were distinguished: 1) bilateral symmetry, 2) loss of metabolic definition, 3) hemispheral asymmetry, 4) focal hyper- or hypometabolism. Patterns 1) and 2) correlated with a history of birth asphyxia, a diagnosis of hypoxic-ischemic encephalopathy and the absence of focal echoes on cranial ultrasound. Hypodense areas on CT could be associated with either high or low fluorine-18 relative activity on PT. The prognostic significance of the presently reported patterns of cerebral glucose metabolism remains to be determined.

Brain

Transcranial pulsed Doppler ultrasound findings in brain stem death.

Data are presented from transcranial insonation of the middle cerebral artery (MCA) performed at intervals in 23 unconscious children for whom the outcome was subsequently poor. Once an MCA signal had been observed over a 30 minute period with time averaged velocity less than 10 cm s-1 and/or a direction of flow index, DFI, defined as 1 minus the ratio of reverse to forward flow of less than 0.8, recovery to forward flow throughout diastole was never observed and no patient recovered brain stem reflexes. Recovery of forward flow in diastole, and of brain stem function, was seen in cases with time averaged MCA velocity in the range 10 to 25 cm s-1 and with reverse flow but a DFI of greater than 0.8 for short periods of time. All but one of the 13 children fulfilling clinical criteria for brain stem death had MCA signals with time averaged velocity of less than 10 cm/s and DFI of less than 0.8. This type of signal was not observed in five children who were left in a persistent vegetative state.

Adolescent

Anatomical validation of middle cerebral artery position as identified by transcranial pulsed Doppler ultrasound.

The basal cerebral arteries were insonated using transcranial pulsed Doppler ultrasound (TPDU) at 2 MHz. The Doppler sample volume (SV) depths at which signals were obtained which could be attributed to the middle, anterior and posterior cerebral arteries (MCA, ACA and PCA) were compared with measurements in adult cadavers and with B-scan ultrasound studies in infants. The depth of the internal carotid artery (ICA) terminal division into ACA and MCA was closely correlated for both groups. In adults, it was found at 5.6 +/- 1.0 cm using TPDU while in cadavers it was found at 5.3 +/- 0.5 cm from the temporal bone. In infants, it was found at 3.2 +/- 0.3 cm for the right side, and 3.2 +/- 0.2 cm for the left side using TPDU, and at 3.4 +/- 0.4 cm and 3.4 +/- 0.5 cm for right and left sides respectively using B-scan ultrasound. The mean depth of the MCA mid-point in infants as defined by TPDU and B-scan was also closely correlated, with values of 2.8 +/- 0.3 cm and 2.7 +/- 0.3 cm for right and left sides respectively using TPDU and of 2.8 +/- 0.4 cm and 2.7 +/- 0.4 cm for right and left sides respectively using B-scan ultrasound. Values for the most lateral part of the MCA did not correlate. In adults, signals from the ACA and PCA were obtained at greater SV depth than the MCA, thus preventing confusion.

Adult

Cerebrospinal fluid myelin basic protein immunoreactivity as an indicator of brain damage in children.

Cerebrospinal fluid (CSF) myelin basic protein (MBP) was measured blind by double antibody competitive inhibition radioimmunoassay (RIA) in 20 children who had seizures and 17 children with hydrocephalus. MBP values correlated with clinical outcome and mean maximum intracranial pressure (ICP) in the hydrocephalic group, and with type of convulsion in the epileptic group. A value of 20ng/ml or more was regarded as significantly raised. A significant rise in MBP levels could be demonstrated in those with ICP alone and in patients with additional problems, whose levels tended to be even higher. Hydrocephalic children with normal ICP and children with seizures had similar normal MBP levels, and in the latter group clinical outcome was not related to MBP levels. For individual patients CSF MBP is of little value as a prognostic indicator, or as a method of quantifying cerebral damage.

Adolescent