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L Shao

Publications and source records attributed to L Shao.

At least 91 records · Page 5Linked to original sources

Molecular cloning, sequencing, and expression in Escherichia coli of the chalcone synthase gene.

Flavonoids form a class of secondary metabolites that are abundant in all higher plants. They serve important functions in flower pigmentation. Chalcone Synthase (CHS) is a key enzyme in the biosynthesis of all classes of flavonoids; therefore, variation of the expression of CHS might change the color of flowers. We cloned CHS-A gene from Petunia hybrida, which has 99% sequence homology with those that have been cloned abroad. The sequence of the coding region is 1170bp and encodes a protein of 39kDa. CHS-A gene is also expressed high-efficiently in E. coli. All this work establishes a sound basis for future research on the impact of the CHS-A gene on flower pigmentation.

Acyltransferases↗

Concentration recovery for SPECT CNS dopamine-receptor studies for monkeys.

Most commercial SPECT scanners do not properly compensate for scattering and partial volume effects, which severely impacts the quantitation of clinical and research SPECT studies, especially in CNS dopamine studies. Hence, in this paper, a brain phantom containing a monkey skull was used to calibrate a Picker Prism 3000 SPECT camera for quantitative studies of 123I and 99mTc-labeled radiopharmaceuticals. In the calibration study, two small vials representing basal ganglia were inserted into a skull phantom. A series of images were taken with different concentration ratios between the basal ganglia and the other brain compartments to simulate the dynamic imaging study of the dopamine D2 receptor in a monkey brain. Based on this calibration, a simple method is proposed for count correction in the region of interest (ROI). This technique is superior to using a single calibration factor from a cylindrical uniform activity phantom since it can compensate for both the partial volume effect and the dynamically changing effect of scattering. A significant difference between the true and measured values was observed in the correction factors (by a factor as much as 3). Furthermore, a cylindrical phantom, approximately the size of a monkey's head and containing the same basal ganglia inserts, was used to investigate the feasibility of using a cylindrical phantom with the proposed correction method. The results indicate that it is feasible to use a cylindrical phantom for the case where the activity inside the brain cavity and the activity in the surrounding tissue are similar.

Animals↗

Herpes simplex virus 1 alkaline nuclease is required for efficient egress of capsids from the nucleus.

We previously described the isolation of AN-1, a null mutant of the HSV-1 alkaline nuclease gene, which is able to synthesize near wild-type levels of viral DNA and late viral proteins under nonpermissive growth conditions; these results lead us to conclude that the alkaline nuclease is not essential for viral DNA synthesis (Weller, S. K., Seghatoleslami, R. M., Shao, L., Rowse, D., and Carmichael, E. P., 1990, J. Gen. Virol. 71, 2941-2952). AN-1 was found to be deficient in the production of infectious virions suggesting that the nuclease may play a role in processing or packaging of viral DNA into infectious virions. In this report we demonstrate that the defect is distinct from that observed in other late HSV-1 mutants which make but fail to process viral DNA under nonpermissive growth conditions. Following restriction enzyme digestion, specific terminal fragments are observed in DNA from AN-1-infected Vero cells, indicating that specific cleavage has occurred; moreover, the efficiency of cleavage is at near wild-type levels. Also in contrast to cells infected with previously described late mutants, DNase I or staphylococcal nuclease resistant DNA is observed in these cells further indicating that encapsidation has occurred. Three lines of evidence suggest, however, that maturation of DNA-containing AN-1 capsids is defective in some ways. First, in contrast to wild-type, very small amounts of protected DNA is detected in cytoplasmic extracts from AN-1-infected cells. Second, very few if any mature, DNA-containing C capsids are observed in the cytoplasm when analyzed by electron microscopy or sucrose gradient sedimentation. Finally, analysis of nuclei by sucrose gradient sedimentation indicates an elevated ratio of A to B capsids. These data indicate that AN-1 may be defective for the production of capsids competent to mature into the cytoplasm. Possible models for the nature of the defect in AN-1 will be discussed.

Animals↗

Effect of activin A on globin gene expression in purified human erythroid progenitors.

The regulatory control of human erythropoiesis through a purified protein, activin A, was examined. Previous studies using mixed populations of bone marrow cells suggested that activin A has an indirect effect on cellular proliferation and DNA synthesis of erythroid progenitors through the mediation of accessory cells. In present studies, the cultures of purified erythroid progenitors were used to examine the effect of activin A on globin gene expression. Human erythroid burst-forming units (BFU-E) were partially purified from peripheral blood, and after 8 days of culture the cells generated consisted mainly of erythroid colony-forming units (CFU-E). It was found that the subsequent 7-day cultures of these purified progenitors yielded similar numbers and size distributions of erythroid colonies, regardless of the presence of activin A in the cultures. In addition, these erythroid progenitor cells were responsive, in terms of stimulation of DNA synthesis, to the addition of erythropoietin, but not to treatment by activin A. Therefore, once the erythroid progenitors are depleted of accessory cells, activin A has little effect on both the proliferation and the DNA synthesis of these progenitors. However, when these purified erythroid progenitors were cultured in the presence of activin A, the levels of all alpha, beta, and epsilon globin transcripts and hemoglobins were significantly increased. In addition, disuccinimidyl suberate was found to chemically cross-link 125I-activin A to cell surface binding proteins (45 to 54 Kd) in both purified erythroid progenitors and K562 cells. The labeling of these binding proteins was specifically inhibited by the presence of unlabeled activin A, but not transforming growth factor-beta. These results suggest that, in addition to its indirect effect on DNA synthesis and cellular proliferation of erythroid progenitors, activin A directly affects the levels of globin mRNAs and hemoglobins in developing human erythroid cells through its specific surface binding receptor(s).

Activins↗

Regulation of globin gene expression in human K562 cells by recombinant activin A.

Recent studies indicate that a purified protein, activin A, belongs to the transforming growth factor beta (TGF-beta) superfamily. Similar to TGF-beta, activin A can have different biologic activities, depending on the target tissues. We used recombinant activin A to demonstrate a possible regulatory role of this protein in modulating human erythroid differentiation in the human erythroid cell line, K562. Using genomic probes containing the second exon of alpha, beta, gamma, and epsilon globins, relative abundance of various types of globin transcripts in untreated and activin-treated K562 cells was examined with S1 nuclease analysis. Despite considerable homology amongst various globin sequences, these globin probes were highly specific for their unique mRNA species in the analyses. It was shown that the abundance of specific globin probe fragments for gamma and epsilon globins (209 nucleotides) as well as alpha (180 nucleotides), which were protected from S1 digestion, increased many fold in K562 cells treated with activin A. In contrast, there were no specific transcripts of beta globin detected in either the control or activin-treated cells. The increases in the level of fetal and embryonic beta-like and alpha globin transcripts also confirmed earlier studies of Northern and slot-blot analyses using globin cDNA as probes. In addition, nuclear run-off transcription assay using isolated nuclei indicated that most of the increase in the globin transcripts after activin treatment could be attributed to the stimulation of transcription rate for globin genes. Transient transfection assays also provide evidence that activin A significantly stimulated transcriptional activity of an epsilon globin promoter in K562, but not in the nonerythroid Chinese hamster ovary cells. Therefore, it was concluded that activin A exerts its effects on globin gene expression at the level of transcription in erythroid cells.

Activins↗

The conserved helicase motifs of the herpes simplex virus type 1 origin-binding protein UL9 are important for function.

The UL9 gene of herpes simplex virus encodes a protein that specifically recognizes sequences within the viral origins of replication and exhibits helicase and DNA-dependent ATPase activities. The specific DNA binding domain of the UL9 protein was localized to the carboxy-terminal one-third of the molecule (H. M. Weir, J. M. Calder, and N. D. Stow, Nucleic Acids Res. 17:1409-1425, 1989). The N-terminal two-thirds of the UL9 gene contains six sequence motifs found in all members of a superfamily of DNA and RNA helicases, suggesting that this region may be important for helicase activity of UL9. In this report, we examined the functional significance of these six motifs for the UL9 protein through the introduction of site-specific mutations resulting in single amino acid substitutions of the most highly conserved residues within each motif. An in vivo complementation test was used to study the effect of each mutation on the function of the UL9 protein in viral DNA replication. In this assay, a mutant UL9 protein expressed from a transfected plasmid is used to complement a replication-deficient null mutant in the UL9 gene for the amplification of herpes simplex virus origin-containing plasmids. Mutations in five of the six conserved motifs inactivated the function of the UL9 protein in viral DNA replication, providing direct evidence for the importance of these conserved motifs. Insertion mutants resulting in the introduction of two alanines at 100-residue intervals in regions outside the conserved motifs were also constructed. Three of the insertion mutations were tolerated, whereas the other five abolished UL9 function. These data indicate that other regions of the protein, in addition to the helicase motifs, are important for function in vivo. Several mutations result in instability of the mutant products, presumably because of conformational changes in the protein. Taken together, these results suggest that UL9 is very sensitive to mutations with respect to both structure and function, perhaps reflecting its multifunctional character.

Amino Acid Sequence↗

[Morphometric analysis of gastric dysplasia and malignancy].

One hundred and eleven specimens of dysplasia and carcinoma of gastric mucosa were studied morphometrically with automatic IBAS image analysis system. A total of 12 parameters of histologic and cellular changes were measured. The results showed that index of structural atypism, gland area, gland perimeter, gland maximum diameter, nucleus-gland ratio index and nuclear area increased in the order of intestinal metaplasia, mild dysplasia, moderate dysplasia, severe dysplasia and carcinoma. These data indicate that computer-assisted morphometry can offer objective criteria in the differential diagnosis of gastric dysplasia and carcinoma.

Carcinoma, Intraductal, Noninfiltrating↗

Regulation of production of activin A in human marrow stromal cells and monocytes.

In studies of the regulation of hematopoiesis, increasing attention has focused on the role of bone marrow stromal cells as rich sources of various cytokines. Present studies indicate that marrow stromal cells and monocytes produce activin A, implicating this new cytokine in the paracrine control of hematopoiesis. Activin A, which was initially recognized as a beta A beta A dimeric gonadal protein, was found to potentiate the proliferation and differentiation of erythroid progenitors; both purified erythroid colony-forming units (CFU-E) and K562 cells possess high affinity receptors specific for activin A. Present studies using Western and Northern blots demonstrate the presence of beta A subunits of activin A in the conditioned medium of monocytes and stromal cells and its RNA transcripts in these cells. The presence of functional and homodimeric beta A beta A activin molecule was confirmed through bioassay with or without a blocking antiserum against activin A or an activin binding protein, follistatin; its presence is further supported by a specific enzyme-linked immunosorbent assay (ELISA) in which a monoclonal antibody reacted only with the beta A beta A dimeric form of this molecule. In other experiments, the production of activin A was found to be regulated by various cytokines and regulators. The production of activin A in monocytes was stimulated more than ninefold by treatment with granulocyte-macrophage colony-stimulating factor (GM-CSF). Activin A expression was also stimulated, albeit less potently, by bacterial lipopolysaccharide (LPS) and gamma-interferon. On the other hand, the expression of activin A in marrow stromal cells was upregulated by incubation with tumor necrosis factor-alpha (TNF-alpha), LPS, and interleukin 1 alpha (IL-1 alpha). Therefore, we propose that the local production of activin A in the microenvironment within bone marrow may fine tune the regulation of steady-state hematopoiesis. In addition, this factor may normally be produced at minimal levels, but under certain situations may be further induced to provide important biological functions.

Activins↗

The herpes simplex virus type 1 alkaline nuclease is not essential for viral DNA synthesis: isolation and characterization of a lacZ insertion mutant.

Herpes simplex virus type 1 (HSV-1) encodes a novel enzyme activity, the alkaline nuclease, whose precise role in the viral replication cycle remains obscure. The alkaline nuclease gene corresponds to the UL12 open reading frame, which is predicted to encode a protein of 626 amino acid residues. We describe the isolation and characterization of a null mutant of the gene for the viral alkaline nuclease in which 917 bp from the N-terminal half of the gene (corresponding to residues 70 to 375) were deleted and replaced by the insertional mutagen ICP6::lacZ. The resulting mutant virus, AN-1, was propagated in helper cells (S22) which express the wild-type version of the alkaline nuclease gene. Mutant AN-1 growth in Vero cells is severely restricted, although small amounts of infectious virus are produced. On the other hand, wild-type levels of viral DNA and late viral proteins are expressed in virus AN-1-infected Vero cells. These results indicate that the HSV-1 alkaline nuclease gene product is not essential for viral DNA synthesis but may play a role in the processing or packaging of viral DNA into infectious virions. Possible roles in the viral infectious cycle will be discussed.

Animals↗

[Morphometrical assessment in classification of different grades of gastric dysplasia and malignancy].

Measurement of cytological features and DNA content was made on epithelial cells from 40 cases of gastric dysplasia and carcinoma graded by subjective scoring with IBAS image analysis system. The measurements were statistically compared with the subjective scores by using discriminant analysis. The result was noticed to provide significant discrimination between the different groups; and nuclear area, nuclear perimeter, nuclear form factor, percentage of 2C cells and percentage of aneuploid cells were all proved to be discriminating variables. Application of classification equation derived from discriminant analysis showed good results for the prediction of different individual cases.

Aneuploidy↗

[Evaluation of DNA content in gastric dysplasia and carcinoma by image cytometry].

In 30 cases of gastric dysplasia and 10 cases of gastric carcinoma, DNA content was studied by IBAS image analysis system. The mean DNA level increased steadily with the advance of histologic gradation, and the highest DNA content was observed in gastric carcinoma. No case of aneuploidy was found in mild dysplasia. In moderate dysplasia, aneuploid cells were occasionally encountered. Severe dysplasia had a lower percentage (4.48%), and gastric carcinoma was characterized by a high percentage of aneuploid cells (14.54%).

Aneuploidy↗

[Significance of endothelin in shock pathogenesis].

Endothelin is a recently discovered bioactive peptide produced by vascular endothelial cells. By means of specific radioimmunoassay we found that plasma endothelin level in patients with late septic shock was significantly increased. And a typical shock model in healthy rats was reproduced by continuous infusion of endothelin (endothelin shock). Infusion of endothelin at a small dose to hemorrhagic shocked rats deteriorated the shock process and resulted in an irreversible development. From these results it is suggested that endothelin may be an endogenous injury-inducing factor, acting as one of the important humoral factors involved in shock pathogenesis.

Animals↗

Characterization of the potentiation effect of activin on human erythroid colony formation in vitro.

Activin, also named FSH-releasing protein, was previously shown to induce hemoglobin accumulation in K562 cells and potentiate the proliferation and differentiation of CFU-E in human bone marrow cultures. Present studies indicate that the potentiation effect of activin is lineage specific. In addition to CFU-E, activin caused an increase in the colony formation of BFU-E from either bone marrow or peripheral blood. It had little effect on the colony formation of CFU-GM and the mixed colonies from CFU-GEMM. In serum-depleted culture, the effect of activin was shown to be dose-dependent with doses effective at picomolar concentrations. The potentiation effect of activin was exerted indirectly through mediation of both monocytes and T lymphocytes. Activin was also found to increase specifically the proportion of DNA-synthesizing erythroid progenitors from both bone marrow and peripheral blood. It had little effect on DNA synthesis in CFU-GM and in mitogen-stimulated lymphocytes. Addition of the monocytes or T lymphocytes to their respective depleted subpopulations of mononuclear cells reconstituted the enhancing effect of activin on the colony formation and DNA synthesis of erythroid progenitors. These results strongly suggest a specific role of activin in potentiating the proliferation and differentiation of erythroid progenitors in vitro.

Animals↗