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Biomedical subjects

M Li

Publications and source records attributed to M Li.

At least 469 records · Page 26Linked to original sources

A critical role for the RelA subunit of nuclear factor kappaB in regulation of multiple immune-response genes and in Fas-induced cell death.

Binding sites for the nuclear factor (NF)-kappaB transcription factor have been identified within control regions of many genes involved in inflammatory and immune responses. Such kappaB sites are often found adjacent to those of interferon (IFN)-gamma-inducible transcription factors, suggesting a requirement for multiple signaling pathways for gene regulation. Using fibroblasts from RelA (p65)-deficient mice generated by gene targeting, we have investigated the role of this subunit of NF-kappaB in gene activation by microbial lipopolysaccharide, tumor necrosis factor alpha, and in possible synergism with the IFN-gamma-signaling pathway. Our results indicate not only that RelA is required for activation of key genes involved in adaptive (acquired) immune responses, including major histocompatibility complex class I, CD40, and the Fas death receptor, but also that both NF-kappaB-inducing signals and IFN-gamma are necessary for maximal activation. In contrast, neutrophil-specific chemokine genes KC and MIP-2, which can function as nonspecific mediators in innate immune responses, were strongly induced by RelA in the absence of IFN-gamma. Our results show that RelA plays a critical role in activation of immune system genes in response to nonspecific stimuli and demonstrate a novel proapoptotic function for this protein in Fas-induced cell death.

Animals↗

Expression of GDNF receptor (RET and GDNFR-alpha) mRNAs in the spinal cord of patients with amyotrophic lateral sclerosis.

The mRNA levels of RET and GDNFR-alpha were studied in the spinal cord of patients with amyotrophic lateral sclerosis (ALS) by reverse transcription followed by polymerase chain reaction (RT-PCR) and in situ hybridization (ISH). Semiquantitative RT-PCR analysis revealed that RET mRNA levels in the ALS spinal cord anterior horn were reduced to one fifth of controls in proportion to motor neuron loss, whereas GDNFR-alpha mRNA was unchanged. ISH analysis showed that RET mRNA was expressed in the anterior horn motor neurons of the spinal cord, but GDNFR-alpha mRNA was expressed widely in the spinal cord neurons and glial cells. The RET mRNA levels, measured using a CCD image analyzer, were substantially preserved in individual motor neurons of ALS, but varied among those neurons. Relatively high levels of RET mRNA were observed in a certain population of atrophic neurons. On the other hand, the GDNFR-alpha mRNA levels in the motor neurons were similar in ALS and controls. In addition, the RET protein was also well expressed in individual motor neurons in ALS. These results indicate that GDNF receptor expression persists at mRNA and protein levels in the degenerating motor neurons in ALS, supporting the view that GDNF is a candidate for therapeutic approach to ALS.

Aged↗

The thrombin receptor mediates functional activity-dependent neuromuscular synapse reduction via protein kinase C activation in vitro.

Activity-dependent selective reduction of synaptic efficacy is expressed in an in vitro system involving mouse spinal cord and muscle cells. Thrombin or electrical stimulation of the innervating axons induces a decrease in neuromuscular synapse strength, and a specific thrombin inhibitor, hirudin, blocks the electrically evoked down-regulation of synapse effectiveness. We further demonstrate that a thrombin receptor-activating peptide (TRAP), SFLLRNPNDKYEPF, produces a decrement of synapse strength. Both TRAP and electrically evoked synapse decrement are prevented by the specific protein kinase C blocker calphostin C, and the TRAP-evoked synapse decrement is unaffected by a specific protein kinase A blocker, H-89. Thus, we propose that muscle activity, thrombin release, and thrombin receptor and PKC activation are initial steps in the process of the activity-dependent synapse reduction expressed in our system.

Action Potentials↗

Loss of retrovirus production in JB/RH melanoma cells transfected with H-2Kb and TAP-1 genes.

JB/RH1 melanoma cells, as well as other melanomas of C57BL/6 mice (B16 and JB/MS), express a common melanoma-associated antigen (MAA) encoded by an ecotropic melanoma-associated retrovirus (MelARV). JB/RH1 cells do not express the H-2Kb molecules due to down-regulation of the H-2Kb and TAP-1 genes. When JB/RH1 cells were transfected with the H-2Kb and cotransfected with the TAP-1 gene, it resulted in the appearance of H-2Kb molecules and an increase in their immunogenicity, albeit they lost expression of retrovirus-encoded MAA recognized by MM2-9B6 mAb. Loss of MAA was found to result from a complete and stable elimination of ecotropic MelARV production in the H-2Kb/TAP-1-transfected JB/RH1 cells. Northern blot analysis showed no differences in ecotropic retroviral messages in MelARV-producing and -nonproducing melanoma cells, suggesting that loss of MelARV production was not due to down-regulation of MelARV transcription. Southern blot analysis revealed several rearrangements in the proviral DNA of H-2Kb-positive JB/RH1 melanoma cells. Sequence analysis of the ecotropic proviral DNA from these cells showed numerous nucleotide substitutions, some of which resulted in the appearance of a novel intraviral PstI restriction site and the loss of a HindIII restriction site in the pol region. PCR amplification of the proviral DNAs indicates that an ecotropic provirus found in the H-2Kb-positive cells is novel and does not preexist in the parental H-2Kb-negative melanoma cells. Conversely, the ecotropic provirus of the parental JB/RH1 cells was not amplifable from the H-2Kb-positive cells. Our data indicate that stable loss of retroviral production in the H-2Kb/TAP-1-transfected melanoma cells is probably due to the induction of recombination between a productive ecotropic MelARV and a defective nonecotropic provirus leading to the generation of a defective ecotropic provirus and the loss of MelARV production and expression of the retrovirus-encoded MAA.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Dexamethasone-induced hypertrophy in rat neonatal cardiac myocytes involves an elevated L-type Ca(2+)current.

The mechanism responsible for dexamethasone-induced hypertrophy in infants has not been defined. In this study, we have investigated the role of L-type Ca(2+)currents in the development of dexamethasone-induced hypertrophy in rat neonatal cardiac myocytes. Using cytoplasmic membrane capacitance measurements, we have shown that the size of the cells treated with dexamethasone were larger than those of the control cells. In addition, treating the cells with 1 microM dexamethasone for 48 h increased L-type Ca(2+)current density significantly, without affecting the voltage-dependent activation and steady state inactivation of the current. The increase in current density was associated with an elevation of the mRNA transcript encoding the L-type Ca(2+)channel subunit alpha(1)C. Dexamethasone treatment also resulted in an increase in the peak amplitude of the intracellular Ca(2+)transient measured by fura-2/epifluorescence. Finally, we have demonstrated that the hypertrophic effect of dexamethasone, characterized by the ratio of protein content per cell, was blocked by the L-type specific antagonist, nifedipine. In conclusion, an elevation of L-type Ca(2+)current is involved in the process of dexamethasone-induced cardiac myocyte hypertrophy in neonatal rats.

Animals↗

The C-C-H Bending Vibration Mode (nu4) in the Electronic Ã2Pi and &Xtilde;2Sigma+ States of the CaCCH Radical.

The first excited C-C-H bending vibration levels in the CaCCH Ã2Pi and &Xtilde;2Sigma+ states have been rotationally analyzed through cw dye laser excitation spectroscopy of the band. The upper state is subject to Renner-Teller and spin-orbit splittings. Strong K-type resonance interactions were observed between the nearby 2Delta and 2Sigma vibronic components. A total of 667 rotational lines were recorded with high precision and fitted to a model involving a full matrix treatment of the interactions. The Renner-Teller parameter has been determined as epsilon4omega4 = 1.85(4) cm-1. Copyright 1999 Academic Press.

Journal Article↗

Phenotypic and molecular heterogeneity in fibrodysplasia ossificans progressiva.

Fibrodysplasia (myositis) ossificans progressiva (FOP) is an extremely rare inherited disorder in which progressive ossification of major striated muscles, often following injury, is associated with abnormal skeletal patterning. Altered expression of bone morphogenetic proteins may be a contributory cause. To examine this hypothesis, we compared the patterns of expression of bone morphogenetic proteins (BMPs) mRNAs from lymphoblastoid cell lines from two small multigenerational families with autosomal dominant transmission of FOP. Although affected members of both families showed the characteristic phenotype of FOP, one family was more severely affected than the other. Expression of mRNAs for BMP-1, 2, 3, 5, and 6 mRNAs were not detected within the more severely affected family, but BMP-4 mRNA was expressed in affected but not unaffected members of this family. The results of linkage exclusion analysis using a highly polymorphic microsatellite marker near the BMP-4 gene were consistent with linkage of FOP and BMP-4 in this family. Within the less severely affected family, affected and unaffected members showed similar levels of mRNA expression of BMPs 1, 2, 4, and 5, and linkage of FOP to the BMP-4 gene was excluded. It is concluded that clinical, radiographic, and biochemical data in these two families with FOP establish clinical and molecular heterogeneity and also suggest the possibility of genetic heterogeneity.

Adolescent↗

Two novel mutations in a cystic fibrosis patient of Chinese origin.

Cystic fibrosis is rare in non-Caucasian populations, and in such populations little is known about the spectrum of mutations and polymorphisms in the CFTR gene. We studied a 23-year-old patient of Chinese ethnicity with sweat chloride values of 104 mM/l, pancreatic sufficiency, an FEV1 60% of normal, sputum cultures positive for Staphylococcus aureus and Burkholderia cepacia, and a history of allergic bronchopulmonary aspergillosis. Genetic screening for 31 common CFTR mutations was negative, leading us to search for unknown mutations using single-strand conformation polymorphism and heteroduplex analysis (SSCP/HA). Two novel mutations were detected. In exon 4, a deletion of 8 bp (451458, deltaGCTTCCTA) causes a frameshift and immediately creates a stop codon. In exon 16, mutation 3041G-->A causes the missense change G970D. Functional analysis using an isotopic flux assay indicated that the G970D mutation retains partial function; western blotting indicated that the protein is glycosylated. The patient is heterozygous for the common polymorphisms (2694T/G) in exon 14a and (GATT)6/7 in intron 6a, indicating that these variants arose in ancestors common to Caucasians and Chinese.

Adult↗

Modified sutureless sclerotomies in pars plana vitrectomy.

PURPOSE: To study the effectiveness and safety of a modified sutureless sclerotomy technique in pars plana vitrectomy. METHODS: We rotated the scleral tunnels of the original sutureless sclerotomy technique through 90 degrees, thus rendering them parallel to the corneoscleral limbus. This modified technique was applied to 25 consecutive eyes (25 patients) that had pars plana vitrectomy during a 2-month period. RESULTS: Twenty (80%) of 25 eyes (25 patients) did not require suturing of the sclerotomy sites associated with pars plana vitrectomy. Eight (11%) of 75 sclerotomy sites required suturing to ensure watertight closure. No clinically significant complications were encountered. CONCLUSION: The modified sutureless sclerotomy technique was found to be safe, more convenient, and easier to perform, especially in eyes with small interpalpebral space.

Humans↗

A fluorescence energy transfer method for analyzing protein oligomeric structure: application to phospholamban.

We have developed a method using fluorescence energy transfer (FET) to analyze protein oligomeric structure. Two populations of a protein are labeled with fluorescent donor and acceptor, respectively, then mixed at a defined donor/acceptor ratio. A theoretical simulation, assuming random mixing and association among protein subunits in a ring-shaped homo-oligomer, was used to determine the dependence of FET on the number of subunits, the distance between labeled sites on different subunits, and the fraction of subunits remaining monomeric. By measuring FET as a function of the donor/acceptor ratio, the above parameters of the oligomeric structure can be resolved over a substantial range of their values. We used this approach to investigate the oligomeric structure of phospholamban (PLB), a 52-amino acid protein in cardiac sarcoplasmic reticulum (SR). Phosphorylation of PLB regulates the SR Ca-ATPase. Because PLB exists primarily as a homopentamer on sodium dodecyl sulfate polyacrylamide gel electrophoresis, it has been proposed that the pentameric structure of PLB is important for its regulatory function. However, this hypothesis must be tested by determining directly the oligomeric structure of PLB in the lipid membrane. To accomplish this goal, PLB was labeled at Lys-3 in the cytoplasmic domain, with two different amine-reactive donor/acceptor pairs, which gave very similar FET results. In detergent solutions, FET was not observed unless the sample was first boiled to facilitate subunit mixing. In lipid bilayers, FET was observed at 25 degrees C without boiling, indicating a dynamic equilibrium among PLB subunits in the membrane. Analysis of the FET data indicated that the dye-labeled PLB is predominantly in oligomers having at least 8 subunits, that 7-23% of the PLB subunits are monomeric, and that the distance between dyes on adjacent PLB subunits is about 10 A. A point mutation of PLB (L37A) that runs as monomer on SDS-PAGE showed no energy transfer, confirming its monomeric state in the membrane. We conclude that FET is a powerful approach for analyzing the oligomeric structure of PLB, and this method is applicable to other oligomeric proteins.

Animals↗

TTF-1 and HNF-3beta in the developing tracheoesophageal fistula: further evidence for the respiratory origin of the distal esophagus'.

PURPOSE: Using an established rat model of esophageal atresia with tracheoesophageal fistula (EA-TEF), the authors have studied the organogenesis of this congenital anomaly. The authors previously have proposed that the "distal esophagus" actually is of respiratory lineage. In this report this hypothesis is tested by examining the expression of two foregut patterning transcription factors, thyroid transcription factor-1 (TTF-1) and hepatocyte nuclear factor-3beta (HNF-3beta), within the developing TEF. METHODS: Pregnant Sprague-Dawley rats were injected with 2.2 mg/kg of Adriamycin intraperitoneally on days 6 to 9 of gestation. Using microdissection, the trachea, blind-ending esophagus, TEF, and stomach were isolated from embryos of various gestional ages. Immunohistochemistry was performed using polyclonal antibodies to TTF-1 and HNF-3beta. RESULTS: TTF-1 is a homeodomain protein that previously has been shown to be expressed in the lung and trachea but not in the gastrointestinal tract, and which, when deleted in a developing lung, results in a mouse with no peripheral lung parenchyma. TTF-1 was expressed strongly in the lung, fistula, and distal esophagus, but not in the proximal esophagus. HNF-3beta is a forkhead transcription factor important in foregut patterning that binds and activates the TTF-1 promotor sequence. HNF-3beta was expressed globally in the fistula and lung as well as the esophagus. CONCLUSIONS: The expression of the lung-specific transcription factor TTF-1 within the TEF strongly implies that the "distal esophagus" is a respiratory-derived structure and thus supports our theory of TEF organogenesis. The conservation of HNF-3beta expression both in the TEF as well as the normal developing trachea and esophagus suggests that global foregut patterning is intact in the formation of this anomaly, and the defect lies at the level of the respiratory versus gastrointestinal commitment.

Animals↗

Esophageal atresia with tracheoesophageal fistula: suggested mechanism in faulty organogenesis.

BACKGROUND/PURPOSE: The organogenesis of esophageal atresia with tracheoesophageal fistula (EA-TEF) is unknown. Using an established model for EA-TEF in rats, the authors proposed to study this aberrancy of development in the hope of gaining insight into its mechanism of formation. METHODS: Pregnant Sprague-Dawley rats were injected with 2.2 mg/kg of Adriamycin intraperitoneally on days 6 through 9 of gestation. Using microdissection, the trachea, blind-ending esophagus, TEF, and stomach were isolated from embryos of various gestional ages. The specimens were analyzed histologically with routine H&E staining. RESULTS: The classic EA-TEF developed in the embryos, with proximal EA and distal TEF. As expected, the atresia formed as a blind-ending pouch, but the distal fistula began as an apparent equal trifurcation of the tracheal anlage into two mainstem bronchi and the fistula tract leading to the stomach. Histological analysis of the fistula tract showed respiratorylike pseudostratified columnar epithelium. CONCLUSIONS: TEF develops as the middle branch of a tracheal trifurcation. EA-TEF occurs by a primary atresia of the esophagus. As a secondary phenomenon, the distal foregut anlage is switched toward the pulmonary phenotype. It trifurcates, and its middle branch grows caudally to fistulize into the stomach.

Animals↗

The ontogeny of TGF-beta1, -beta2, -beta3, and TGF-beta receptor-II expression in the pancreas: implications for regulation of growth and differentiation.

BACKGROUND/PURPOSE: The transforming growth factor-beta (TGF-beta) cytokines are important regulators of growth and differentiation in multiple mammalian organ systems. Recent studies suggest that they may play a significant role in the regulation of pancreatic organogenesis. The authors proposed to examine the ontogeny of expression of the TGF-beta cytokine isoforms (TGF-beta1, beta2, and beta3), as well as that of the type II TGF-beta receptor (TbetaRII), in the pancreas. We hypothesized that their patterns of expression might help to clarify the manner in which they influence the development of this organ. METHODS: Embryos from pregnant CD-1 mice were harvested on gestational days 12.5, 15.5, and 18.5. Microdissection was performed on the embryos to isolate their pancreases. The pancreases were fixed, frozen embedded, and sectioned with a cryostat. Immunohistochemistrywas performed using polyclonal antibodies to TGF-beta1, beta2, and beta3, and TbetaRII. RESULTS: The patterns of expression of TGF-beta1, beta2, and beta3 were similar throughout gestation. They were all present, though weakly, early in the development of the pancreas, in the E12.5 epithelial cells. Their expression persisted and became localized to the acinar cells later in gestation. TbetaRII staining was present in both the E12.5 epithelial cells and the surrounding mesenchyme. As the pancreas developed, TbetaRII became strongly expressed in the ductal epithelial cells with only minimal staining in the acinar and endocrine cells. CONCLUSIONS: TGF-betas may play a role in regulating pancreatic organogenesis. Our data suggest that they may be required for the normal development of acini. As in other cell systems, TGF-beta1 may act as a suppressor of pancreatic cellular growth and differentiation. The localization of TbetaRII to the mature ductal epithelium may indicate a need for ongoing regulation of growth and differentiation in the pancreatic ducts beyond the fetal period.

Animals↗

Identical clonal origin of synchronous and metachronous low-grade, noninvasive papillary transitional cell carcinomas of the urinary tract.

One of the most important biological features of papillary transitional cell carcinoma (pTCC) of the urinary tract is its multicentricity and its tendency for recurrences. Two possible mechanisms, field effect and intramucosal seeding/spreading, have been proposed. The former theory hypothesizes that carcinogenic agents cause synchronous or metachronous malignant transformation of multiple urothelial cells (independent clonal origin), and the latter speculates that synchronous and metachronous tumors are derived from implantation or direct spreading of tumor cells (identical clonal origin). We tested these hypotheses by analyzing the methylation patterns of the androgen receptor gene (HUMARA) located at the X-chromosome. Thirty-five metachronous and synchronous, low-grade (grade 1 or 2), noninvasive pTCCs of the urinary tract from 10 heterozygous female patients were successfully analyzed using formalin-fixed, paraffin-embedded tissue. These included 16 recurrent bladder tumors from 4 patients, 10 metachronous bladder and ureter/renal pelvis tumors from 4 patients, and 9 multifocal tumors from 2 patients. All tumors are monoclonal as indicated by unbalanced methylation of HUMARA. Furthermore, same methylated allele was detected in multiple recurrent or multifocal tumors from any given patient, indicating their identical clonal origin. We conclude that low-grade, noninvasive pTCCs are monoclonal in nature. Synchronous or metachronous pTCCs have an identical clonal origin, strongly supporting the intramucosal seeding/spreading hypothesis.

Carcinoma, Papillary↗

Assessment of proliferative activity in breast cancer: MIB-1 immunohistochemistry versus mitotic figure count.

The proliferative activity is one of the most important single prognostic parameters in breast cancer diagnosis and the time-honored measure of proliferative activity, the mitotic figure count, is an integral component of most combined prognostic scores. The detection of the cell cycle-specific antigens Ki-67, and the development of anti-Ki-67 antibodies, including the paraffin-reactive antibody MIB-1, have established immunohistochemical detection of cell cycle-specific antigens as a measure of proliferative activity in breast cancer diagnosis. The current study was performed to correlate mitotic figure counts with the proliferative activity as assessed by MIB-1 immunohistochemistry, taking into consideration the interobserver reliability of 5 pathologists in estimating mitotic figure counts. In 32 consecutive invasive ductal breast carcinomas, mitotic figure counts were performed independently by 5 pathologists. Mitotic activity was expressed as number of mitotic figures per 10 high-power fields and in a 3-tier score according to the Scarff Bloom Richardson system. Immunohistochemistry was performed using MIB-1 antibody, heat-induced epitope retrieval, and the standard avidin-biotin-immunoperoxidase method. MIB-1 immunohistochemistry was assessed in 3 representative 20x fields by semiquantitative estimation (% of tumor cells positive) and by image analysis (number of MIB-1-positive cells/mm2). We found a high degree of interobserver correlation among 4 experienced pathologists, in both mitotic figures per 10 high-power fields and the 3-tier scoring system. We observed significant, albeit weak, correlations between semiquantitative and quantitative MIB-1 immunohistochemistry and the number of mitotic figures per 10 high-power fields (r between .36 and .53), but this significance was lost in 3 of the 5 observers when mitotic activity was expressed in the 3-tier scoring system. This study confirms mitotic figure counting in the hands of experienced pathologists as a valid, reproducible means of assessing proliferative activity in routine breast cancer diagnosis. The statistically significant, albeit only weak, correlation with MIB-1 immunohistochemistry is in agreement with results obtained by others and suggests that MIB-1 immunohistochemistry cannot be translated by a simple conversion factor into combined prognostic scores to replace the time-honored mitotic figure counts.

Antigens, Nuclear↗

Using the Lac repressor system to identify interacting proteins.

The present protocol describes a series of procedures to identify peptides interacting with PDZ domains. It is conceivable that the procedures can be applied to other purified protein modules or intact proteins without substantial modifications. With the deduced consensus combined with sequence information, it is possible to identify proteins present in the database with compatible sequences. If the expression of target protein and potential interacting candidate overlap temporally and spatially, biochemical and molecular experiments can be designed to study their physical and functional interactions.

Animals↗

Differences between alcohol-preferring and alcohol-nonpreferring rats in ethanol generalization.

Alcohol-preferring (P rats) and alcohol-nonpreferring rats (NP rats) were trained to discriminate intraperitoneal injections of 0.5 g/kg ethanol, or subcutaneous injections of 0.6 mg/kg nicotine from saline. P rats learned the ethanol discrimination more rapidly and made a higher percentage (88%) of their responses on the ethanol lever after ethanol and a lower percentage (7%) after saline than NP rats (78 and 15%, respectively). In substitution tests, increasing doses of ethanol produced increases in the percentage of responses on the ethanol lever with similar ED50s (0.43 and 0.44 g/kg) in P and NP rats. P rats trained to discriminate ethanol from saline made more responses on the ethanol lever after nicotine (80%) and d-amphetamine (63%) than NP rats (33 and 40%). The ethanol stimulus did not generalize to morphine in either P or NP rats. NP rats trained to discriminate ethanol from saline responded more on the ethanol lever after bupropion (77%) than P rats (49%). In rats trained to discriminate nicotine from saline, the nicotine discriminative stimulus did not generalize to ethanol in either P or NP rats, suggesting that the genetic difference in the stimulus generalization of ethanol was not symmetrical.

Alcohol Drinking↗