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Biomedical subjects

Q Liu

Publications and source records attributed to Q Liu.

At least 613 records · Page 34Linked to original sources

Modular structure of neuronal nitric oxide synthase: localization of the arginine binding site and modulation by pterin.

A putative dihydrofolate reductase (DHFR) module has been identified in neuronal nitric oxide synthase, consisting of amino acids 558-721, and is proposed to be the site of tetrahydrobiopterin (BH4) binding. This polypeptide has been expressed in E. coli as a fusion protein with glutathione S-transferase (GST), using the plasmid pGEX-4T1. The protein binds N omega-nitro-L-arginine (NNA) tightly, but this binding is not stimulated by BH4. cDNAs for Module II (residues 220-557) and Module III (residues 220-721) have been expressed as fusion proteins with GST. Module II does not bind NNA. However, Module III does bind NNA and binding is significantly stimulated by BH4. These observations are taken as strong evidence that the DHFR module contains the L-arginine binding site and, presumably, the BH4 binding site by analogy to its homology with DHFR, but that tight binding of BH4 requires amino acids 220-577.

Amino Acid Oxidoreductases↗

Frequent deletion of p16INK4a/MTS1 and p15INK4b/MTS2 in pediatric acute lymphoblastic leukemia.

The tandemly linked p16INK4aMTS1 and p15INK4b/MTS2 genes on chromosome 9, band p21 encode proteins that function as specific inhibitors of the cyclin D-dependent kinases CDK4 and CDK6. This locus undergoes frequent bi-allelic deletion in human cancer cell lines, suggesting that the encoded proteins may function as tumor suppressors. However, more recent analysis of primary tumor samples has shown a much lower frequency of abnormalities affecting this region, raising doubt over the importance of these proteins in human malignancies. Hemizygous deletions and rearrangements of chromosome 9, band p21, are among the most frequent cytogenetic abnormalities detected in pediatric acute lymphoblastic leukemia (ALL), occurring in approximately 10% of cases. To determine if the p16INK4a/p15INK4b locus might be the target of these chromosomal lesions, we analyzed both genes in primary clinical samples from 43 pediatric ALL patients using interphase fluorescence in situ hybridization, Southern blot analysis, and the polymerase chain reaction. Deletions of p16INK4a/p15INK4b were identified in 18 of 20 cases with cytogenetically observed abnormalities of 9p and 5 of 23 with apparently normal chromosomes 9p, with the majority containing bi-allelic deletions (16 homozygous/7 hemizygous). Although most homozygous deletions involved both genes, Southern blot analysis showed an interstitial deletion in a single case that was confined to p16INK4a, suggesting that p15INK4b was not the critical target gene in this case. Sequence analysis of both p16INK4a and p15INK4b in all seven cases with hemizygous deletions failed to show mutations within the coding regions of the retained alleles. In this select group of patients, deletion of p16INK4a/p15INK4b was associated with T-cell phenotype, nonhyperdiploid karyotype (< 50 chromosomes), and poor event-free survival. These findings indicate that deletion of the p16INK4a/p15INK4b locus is one of the most common genetic abnormalities so far detected in pediatric ALL, and that loss of one or more of these cell cycle kinase inhibitors is important in leukemogenesis.

Adolescent↗

Screening the dopamine D1 receptor gene in 131 schizophrenics and eight alcoholics: identification of polymorphisms but lack of functionally significant sequence changes.

To determine whether mutations in the D1 dopamine receptor (D1 DR) gene are associated with schizophrenia, the coding sequence was examined in 106 Caucasian, 11 African-American, 8 Asian, and 6 Native American patients. Approximately 350 kb of genomic sequence was screened by dideoxy fingerprinting, a method related to single strand conformational polymorphism (SSCP) analysis that detects virtually 100% of sequence changes [Sarkar et al., 1992: Genomics 13:441-443; Liu and Sommer, 1994: PCR Methods and Applications 4:97-108]. One polymorphism was identified in Asians and one in Caucasians, but neither altered the amino acid sequence (Leu66, and Ser421, respectively). In addition, a previously reported polymorphism in the 5' untranslated region of exon 2 at bp -48 was found to be common, with an allele frequency of approximately 40% in Caucasians of Western European descent. Based on the fact that no sequence changes of likely functional significance were identified, these data suggest that mutations affecting the structure of the D1 dopamine receptor protein are uncommon and are unlikely to contribute significantly to the genetic predisposition to schizophrenia. The D1 DR gene also was examined in eight alcoholics, including 3 African-Americans and 1 Native American, but no sequence changes were identified.

Adolescent↗

Nonrandom patterns of simple and cryptic triplet repeats in coding and noncoding sequences.

Triplet repeats of the sequence purine, purine, and pyrimidine [RRY(i)] are frequent and often polymorphic in humans. Some RRY(i) are composed predominantly of a continuous repeat of one sequence [simple RRY(i)], but the majority are cryptic RRY(i) that are not obvious until the bases are classified into R or Y before the full extent of the repeat becomes apparent. RRY(i) can be divided into 18 classes based on predominant nucleotides. These classes are highly nonrandom in abundance and in location within genes. In humans, simple or cryptic RRY(i), in which AAT or AAC triplets predominate, are preferentially located 3' of Alu repeats. RRY(i) with a predominance of AGC or GGC show a dramatic enrichment in coding sequence, and GGC also shows a dramatic enrichment in 5' untranslated regions of genes. Characterization of RRY(i) present in coding regions identify 10 protein motifs (An, Dn, Hn, Pn, Qn, Tn, GnS0-3Gm, (G/S)n, (S/G/N)n, and (L/P)n). Six of the protein motifs appear predominantly in DNA-binding proteins/transcription factors. Alignment of homologous protein sequences from other mammals reveals that both simple and cryptic RRY(i) are a major source of deletions or insertions in the genes that contain them. Cryptic RRY(i) may be candidates for triplet repeat genetic diseases and, when mutated in somatic cells, may contribute to carcinogenesis.

Animals↗

Polymorphic thiopurine methyltransferase in erythrocytes is indicative of activity in leukemic blasts from children with acute lymphoblastic leukemia.

The activity of thiopurine methyltransferase (TPMT) exhibits genetic polymorphism, with approximately 1 in 300 individuals inheriting TPMT deficiency as an autosomal recessive trait, and about 11% having intermediate activity (ie, heterozygotes). Patients with TPMT deficiency accumulate excessive concentrations of 6-thioguanine nucleotides (TGNs) and develop severe toxicity when treated with standard dosages of mercaptopurine. High TPMT activity has been associated with lower concentrations of TGNs, yielding a higher risk of treatment failure in children with acute lymphoblastic leukemia (ALL). As the biochemical basis of these pharmacodynamic relationships has not been fully elucidated, we investigated the variability and relationship of TPMT activity in erythrocytes and lymphoblasts from children with ALL. A 58-fold range of erythrocyte TPMT activity was found among 119 patients receiving ALL chemotherapy (0.6 to 34.9 U/mL packed erythrocytes), but relatively low intrapatient variability (coefficient of variation, 13.5%) was observed over 1 year. A 27-fold range in TPMT activity was observed in leukemic blasts obtained from 42 patients at initial diagnosis (3.3 to 88.9 U/1 x 10(9) cells). TPMT activity in leukemic blasts at diagnosis was significantly correlated with TPMT in erythrocytes before therapy (rs = .75, P < .0001, N = 13). These data document extensive interpatient variability of TPMT activity in ALL blasts and establish its linkage to polymorphic TPMT activity in erythrocytes, providing a new mechanism by which erythrocytes serve as prognostic markers of mercaptopurine metabolism and TPMT activity in children with ALL.

Adolescent↗

CDKN2 (MTS1) tumor suppressor gene mutations in human tumor cell lines.

Tumor suppressor gene CDKN2 (also called MTS1, CDK4I and p16INK4) is located in 9p21 and deleted homozygously in a high percentage of tumor cell lines. We have examined the sequence of CDKN2 in 154 tumor cell lines that are not homozygously deleted for CDKN2. Overall, 18% (27/154) of the cell lines carried mutations in CDKN2. These mutations were found in cell lines derived from melanoma, bladder, lung and prostate cancers, as well as sarcomas of various origin. The spectrum of the CDKN2 mutations found in melanoma cell lines indicated a major role for ultraviolet light in generating the mutations, suggesting the mutations occurred in vivo. The frequency of loss of heterozygosity in 9p21 in this set of lines is only slightly higher than the background rate of aneuploidy, suggesting that a second 9p21 tumor suppressor gene, if it exists, must lie near CDKN2.

Amino Acid Sequence↗

Origins of serotonin-like immunoreactivity in the optic tectum of Rana pipiens.

We have previously identified a population of serotonin-like immunoreactive (5-HT-ir) retinal ganglion cells in Rana pipiens. In this study, we examined serotonin-like immunoreactivity (5-HTLI) in a probable target of those cells, the optic tectum. We observed both 5-HT-ir fibers and cell bodies in this structure. 5-HT-ir cells were located in the cellular layers of the tectum, layers 2, 4, and 6, and scattered in its superficial layers. 5-HT-ir fibers in the tectum displayed a laminated organization and were located in tectal layers 3, 5, 6, 7, and 9. Retrograde labelling experiments showed that 5-HT-ir retinal ganglion cells projected to the optic tectum. However, these experiments also demonstrated that serotonergic neurons in the midbrain tegmentum, the nucleus isthmi, and the medulla did so as well. 5-HT-ir fibers seen in lamina A of layer 9 were very much reduced in density in animals in which the optic nerve had been lesioned for 3-6 months. Immunoreactive fibers in lamina B of layer 9 were not affected by the lesion. Our results suggest that 5-HT-ir fibers in lamina A of layer 9 are mainly of retinal origin, whereas those in lamina B originate from other brain areas. The 5-HT-ir tectal cells located in the cellular layers probably contribute the 5-HT-ir fibers seen in layers 3, 5, 6, and 7.

Animals↗

MTS-1 (CDKN2) tumor suppressor gene deletions are a frequent event in esophagus squamous cancer and pancreatic adenocarcinoma cell lines.

MTS-1 is a candidate tumor suppressor gene on chromosome 9p21-22, a region frequently observed to have loss of heterozygosity in esophagus squamous cell carcinomas and pancreatic ductal adenocarcinomas. In order to determine whether MTS-1 sequences are deleted or mutated in cell lines derived from these cancers, we performed PCR amplification of MTS-1 exons 1 and 2. In this fashion, we found that 67% of esophagus squamous cancer cell lines have deletions of both exons 1 and 2, and 50% of pancreatic cancer cell lines have similar deletions. Furthermore, an additional 30% of pancreatic cancer cell lines harbored point mutations or microdeletions based on DNA sequencing. MTS-1 encodes p16, an inhibitor of cyclin-dependent kinase 4 (cdk4) which complexes with cyclin D1. Our data suggest that MTS-1 deletions and mutations may play an important role in the molecular pathogenesis of esophagus squamous cell and pancreatic cancers.

Adenocarcinoma↗

The self antigen heme evades immune recognition by sequestration in some hemoproteins.

Heme is a non-protein autoantigen which is ubiquitous in vivo, primarily complexed in various hemoproteins or bound to specialized carrier molecules. Nevertheless, heme is able to stimulate a high frequency of CD4+, class II-restricted T cells, freshly explanted from unprimed mice, to proliferate in vitro. In this study, we show that heme incorporated into various species of mammalian cytochrome c (cyt c), including murine cyt c, represents a facultative cryptic determinant, able to be recalled only at high doses of native cyt c. By contrast, avian cyt c is of comparable antigenicity to free heme. Artificially denatured carboxymethylated (CM) mammalian cyt c exhibited greatly increased antigenicity, comparable to that of heme and avian cyt c, indicating that the crypticity of heme in native mammalian cyt c is due to the resistance of the native conformation of this molecule to antigen processing within murine antigen-presenting cells. Thus, tolerance to the heme group of at least some hemoproteins, may be maintained by the crypticity of the heme, rather than by deletion of heme-reactive T cells. Given the high frequency of heme-reactive T cells in unprimed mice, these findings suggest that heme may become an important modulator during an inflammatory response.

Animals↗

The mechanism for the effect of selenium supplementation on immunity.

Lipid peroxide (LPO) in lymphocytes from mice was evaluated by measuring substances reactive to thiobarbituric acid (TBA). The product resulting from the reaction of TBA with lymphocytes was extracted with n-butyl and fluorescence intensity was determined. The degree of lipid peroxidation, expressed as fluorescence intensity f547, was assessed for stimulation of lymphocytes with concanavalin A (Con A), and was related to lymphocyte proliferation in response to Con A if Se was administered. The lymphocyte proliferation was determined by [3H]thymidine incorporation, expressed as cpm. The effect of superoxide dismutase (SOD), added to cell culture on lymphocyte proliferation was also evaluated. It was found that LPO in lymphocytes before Con A stimulation was significantly less than that after stimulation (p < 0.001), and that SOD promoted lymphocyte proliferation dose dependently. The addition of Na2Seo3 to lymphocyte culture or supplementation in drinking water to mice decreased the produced LPO in lymphocyte in response to Con A. In the presence of Se, there is an inverse correlation between the levels of LPO in lymphocyte and the stimulated proliferation (r = -0.8902, r = -0.9439). In conclusion, active oxygen species scavenging was proposed as one of the mechanisms for Se to promote immunity.

Animals↗

Effect of selenium in recovery of immunity damaged by H2O2 and 60Co radiation.

Con A stimulated lymphocytes proliferation was measured as [3H]thymidine incorporation and IgG was quantified by single radial immunodiffusion to study recovering or protecting effect of selenium (Se) on immunity attacked by exogenous active oxygen species, H2O2 and 60Co-radiation, respectively. Lipid peroxidation was also determined to observe the relation between antioxidation ability and protecting ability of Se. It was found that H2O2 injured lymphocytes immunocompetence deeply and 60Co-radiation decreased immune response capacity greatly, but that administration of Se counteracts this damage. The antioxidative ability of Se was correlated with its protecting ability.

Animals↗

Preservation of postprandial intestinal hyperemic response after small bowel transplantation.

Postprandial intestinal hyperemia (PIH) is a normal physiological phenomenon and is thought to accommodate the increased intestinal metabolic demand during food digestion. Lack of such a response could lead to malabsorption. The purpose of this study was to determine whether transplanted intestine retains the ability to mediate PIH. Nineteen rats with syngeneic orthotopic small bowel transplantation (SBT) and 13 normal controls were further divided into two subgroups to receive gastric gavage of either 2 mL of Ensure Plus (EP) high-calorie liquid nutrition or 2 mL of normal saline. Intestinal blood flow was determined before, and 20 and 45 minutes after the gavage, employing a colored microsphere technique. The results showed that basal blood flow to the transplanted intestine (56.7 +/- 26.7 mL/min/100 g) was similar to that of normal intestine (64.2 +/- 35.8 mL/min/100 g; P > .1). EP feeding elicited a marked increase in intestinal blood flow (PIH phenomenon) in both normal and SBT animals. The magnitudes of flow increase were similar for the two groups (249 +/- 99% versus 241 +/- 76% of baseline 45 minutes after EP feeding in the normal and transplanted intestine, respectively; P > .1). The results indicate that hyperemic response to feeding is normal in syngeneic orthotopic SBT.

Animals↗

Embryo brain kinase: a novel gene of the eph/elk receptor tyrosine kinase family.

A new gene belonging to the Eph/Eck/Elk receptor tyrosine kinase family has been cloned from mouse brain. The gene maps to mouse chromosome 4. In the adult brain it is expressed exclusively and abundantly in the hippocampus. We propose to name it Ebk (embryo brain kinase), as in situ hybridisation shows expression in many parts of the developing mouse brain. The most abundant expression is in the subcommissural organ, and the earliest expression is in the forebrain neural folds, in rhombomeres 2-6, and in somites and heart. Other regions positive at various stages include the cochlear duct, trigeminal ganglion, lung, first branchial arch, and tooth primordia. Also positive are areas of mesenchyme underlying various epithelia during morphogenesis, especially in the mouth and nose, as well as in the eyelids and toes. We compare these patterns with the available data on the 12 other known members of this gene family. Most of them, like Ebk, are expressed in brain (especially adult hippocampus and embryonic rhombomeres) and in organs rich in epithelia (especially lung), although the spatial and temporal patterns differ. We suggest that combinatorial patterns of these receptors act as labels for the regional identity of neurons and epithelia, and could mediate fine control of neurite pathfinding and epithelial morphogenesis.

Aging↗

Experimental liver cancer: improved response after hepatic artery ligation and infusion of tumor necrosis factor-alpha and interferon-gamma.

BACKGROUND: The aim of this study is to investigate whether regional infusion of tumor necrosis factor-alpha (TNF-alpha) and interferon-gamma (IFN-gamma) could improve the therapeutic results of hepatic artery ligation (HAL) on liver cancer in a rat model. METHODS: Morris hepatoma 3924A was implanted intrahepatically in 50 ACI rats. Two weeks after tumor implantation, 40 rats underwent hepatic artery cannulation and ligation. The cannula was connected to an infusion port implanted subcutaneously. Animals were then divided into four groups of 10 each to receive seven daily intraarterial injections of IFN-gamma 100,000 IU/rat/day (HAL + IFN group), TNF-alpha 30 micrograms/rat/day (HAL + TNF group), IFN + TFN (HAL + IFN + TNF group), or normal saline solution (HAL group). The remaining 10 rats received a laparotomy only and served as untreated controls. Tumor volume, viable tumor area, and histopathology were assessed after 3 weeks. RESULTS: The tumor growth was significantly retarded in the HAL group compared with the controls (tumor volume 683 +/- 245 mm3 vs 2424 +/- 596 mm3, p < 0.05 ANOVA). HAL + TNF (221 +/- 93 mm3) and HAL + IFN + TNF groups (74 +/- 31 mm3), but not the HAL + IFN group (493 +/- 164 mm3), were much more effective than the HAL group in controlling tumor growth (p < 0.05). HAL + IFN + TNF achieved the best tumor control resulting in a 60% tumor-free rate (p < 0.05 vs all other groups). CONCLUSIONS: These data suggest that HAL combined with regional infusion of TNF-alpha and IFN-gamma significantly reduces tumor growth in a rat liver model. This attractive concept of combined modality therapy may have utility in the clinical setting in instances of unresectable liver cancer.

Animals↗

Supranutritional administration of vitamins E and C improves oxidative stability of beef.

Vitamins E and C are important antioxidants in animals. Their antemortem activity continues to function in postmortem muscle (meat), where they have a critical role in maintaining quality in the food product. Dietary supplementation of vitamin E, and intravenous infusion of vitamin C immediately before harvest, are efficacious techniques for increasing the concentration of these vitamins in beef skeletal muscle. Meat with elevated levels of either and probably both of these antioxidant vitamins possesses greater stability of oxymyoglobin and lipid, which results in less discoloration and rancidity, respectively. A model is proposed for the redox relationships between myoglobin and phospholipid in beef with emphasis on vitamins E and C. Antemortem nutritional intervention appears to be a promising approach for improving the quality of fresh meat products subsequently obtained from livestock.

Animal Nutritional Physiological Phenomena↗

Brain injury in experimental neonatal meningitis due to group B streptococci.

We have characterized the pattern of brain injury in a rat model of meningitis caused by group B streptococci (GBS). Infant rats (12-14 days old; n = 69) were infected intracisternally with 10 microliters of GBS (log10(2.3) to 4.5 colony-forming units). Twenty hours later, illness was assessed clinically and cerebrospinal fluid was cultured. Animals were either immediately euthanized for brain histopathology or treated with antibiotics and examined later. Early GBS meningitis was characterized clinically by severe obtundation and seizures, and histopathologically by acute inflammation in the subarachnoid space and ventricles, a vasculopathy characterized by vascular engorgement, and neuronal injury that was most prominent in the cortex and often followed a vascular pattern. Incidence of seizures, vasculopathy and neuronal injury correlated with the inoculum size (p < 0.01). Early injury was almost completely prevented by treatment with dexamethasone. Within days after meningitis, injured areas became well demarcated and showed new cellular infiltrates. Thirty days post-infection, brain weights of infected animals treated with antibiotics were decreased compared to uninfected controls (1.39 +/- 0.18 vs 1.64 +/- 0.1 g; p < 0.05). Thus, GBS meningitis in this model caused extensive cortical neuronal injury resembling severe neonatal meningitis in humans.

Animals↗