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Biomedical subjects

H Duan

Publications and source records attributed to H Duan.

At least 37 records · Page 2Linked to original sources

SAG/ROC/Rbx/Hrt, a zinc RING finger gene family: molecular cloning, biochemical properties, and biological functions.

The RING (really interesting new gene) finger proteins containing a characteristic C3HC4 or C3H2C3 motif appear to act as E3 ubiquitin ligase and play important roles in many processes, including cell-cycle progression, oncogenesis, signal transduction, and development. This review is focused on SAG/ROC/Rbx/Hrt (sensitive to apoptosis gene/regulator of cullins/RING box protein), an evolutionarily conserved RING finger family of proteins that were cloned recently by several independent laboratories through differential display, yeast two-hybrid screening, or biochemical purification. SAG/ROC2/Rbx2/Hrt2 is expressed in multiple mouse adult tissues, as well as early embryos. In humans, both SAG and ROC1 are ubiquitously expressed at a very high level in heart, skeletal muscle, and testis. Expression of both SAG and ROC1 is induced by mitogenic stimulation. SAG is also induced by a redox agent in cultured cells, as well as in in vivo mouse brain upon ischemia/reperfusion. Structurally, SAG consists of four exons and three introns with at least one splicing variant and two pseudogenes. The SAG gene promoter is enriched with multiple transcription factor binding sites. Biochemically, SAG binds to RNA, has metal-ion binding/free radical scavenging activity, and is redox-sensitive. Most importantly, like ROC1, SAG/ROC2 binds to cullins and acts as an essential component of E3 ubiquitin ligase. Biologically, SAG is a growth-essential gene in yeast. In mammalian cells, SAG protects apoptosis mainly through inhibition of cytochrome c release/caspase activation, and promotes growth under serum deprivation at least in part by inhibiting p27 accumulation. Blocking SAG expression via antisense transfection inhibits tumor cell growth. Thus, SAG appears to be a valid drug target for anticancer therapy.

Amino Acid Sequence↗

Headless flies generated by developmental pathway interference.

Ectopic expression of transcription factors in eye-antennal discs of Drosophila strongly interferes with their developmental program. Early ectopic expression in embryonic discs interferes with the developmental pathway primed by Eyeless and generates headless flies, which suggests that Eyeless is necessary for initiating cell proliferation and development of both the eye and antennal disc. Interference occurs through a block in the cell cycle that for some ectopic transcription factors is overcome by D-CycE or D-Myc. Late ectopic expression in cone cell precursors interferes with their differentiation. We propose that this developmental pathway interference is a general surveillance mechanism that eliminates most aberrations in the genetic program during development and evolution, and thus seriously restricts the pathways that evolution may take.

Animals↗

Drosophila Lame duck, a novel member of the Gli superfamily, acts as a key regulator of myogenesis by controlling fusion-competent myoblast development.

A hallmark of mature skeletal muscles is the presence of multinucleate muscle fibers. In Drosophila, the formation of muscle syncytia requires the cooperative participation of two types of myoblasts, founder cells and fusion-competent myoblasts. We show that a newly identified gene, lame duck (lmd), has an essential regulatory role in the specification and function of fusion-competent myoblasts. Embryos that lack lmd function show a loss of expression of two key differentiation and fusion genes, Mef2 and sticks-and-stones, in fusion-competent myoblasts and are completely devoid of multinucleate muscle fibers. By contrast, founder cells are specified and retain their capability to differentiate into mononucleate muscle cells. lmd encodes a novel member of the Gli superfamily of transcription factors and is expressed in fusion-competent myoblasts and their precursors in a Wingless- and Notch-dependent manner. The activity of the Lmd protein appears to be additionally controlled by its differential cytoplasmic versus nuclear localization. Results from an independent molecular screen for binding factors to a myoblast-specific Mef2 enhancer further demonstrate that Lmd is a direct transcriptional regulator of Mef2 in fusion-competent myoblasts.

Amino Acid Sequence↗

Limonoids from Citrus sudachi.

Four new limonoid derivatives, 1-O-methylichangensin (1), sudachinoid A (2), B (3), and C (4) were isolated from the seeds of Citrus sudachi, together with the known compounds ichangensin, obacunone, obacunoic acid and limonin, and the structures of the new compounds were elucidated based on spectroscopic and chemical evidence.

Citrates↗

Elevated expression of SAG/ROC2/Rbx2/Hrt2 in human colon carcinomas: SAG does not induce neoplastic transformation, but antisense SAG transfection inhibits tumor cell growth.

Sensitive-to-apoptosis gene (SAG)/regulator of cullins (ROC)2/Rbx2/Hrt2 is a newly identified component of SCF E3 ubiquitin ligase that controls cell-cycle progression by promoting ubiquitination and degradation of cell-cycle inhibitors. We recently found that SAG protects cells from apoptosis induced by redox agents, promotes S-phase entry and cell growth under serum starvation, and is required for yeast growth. In the present study, we report that the SAG protein level was elevated in six of 10 human colon carcinoma tissues (60%) as compared with adjacent normal tissues from the same patient. SAG overexpression in preneoplastic cells in a JB6 tumor promotion-and-progression model did not induce neoplastic transformation, and SAG overexpression in NIH/3T3 cells did not induce transforming foci formation, suggesting that SAG is not a dominant oncogene. However, when DLD-1 human colon carcinoma cells were transfected with antisense SAG, monolayer growth was significantly inhibited, as shown by a decreased number of stable colonies in the plate after normalization with transfection efficiency. Stable clones that expressed antisense SAG showed a 50% decrease in their ability to form colonies when grown in soft agar versus clones that did not express antisense SAG. We found an inverse correlation in four of 10 tumors between the levels of SAG and p27, a cyclin-dependent kinase inhibitor. We concluded that SAG is not causally related to cellular transformation, but its overexpression may be important for the maintenance of tumor cell phenotype. Therefore, targeting SAG expression may have therapeutic value in cancer treatment. Mol. Carcinog. 30:62-70, 2001.

Animals↗

[Applied researches on polylactide internal fixation devices].

Nowadays, more and more basic and clinical researches on polylactide internal fixators were carried out in China. In this paper are reviewed the researches of polylactide acid(PLA), including its physical and chemical characters, biodegradation, absorption and mechanical properties, effects on fracture healing, and clinical application. Some problems that have not been solved are high-lighted and discussed. Also dealt with are some researches of PLA in future.

Fracture Healing↗

[Dynamic ECG Review & Analysis Workstation].

The integrated management and remote application of dynamic ECG data is the future of the Holter System. This article introduces a kind of Dynamic ECG Review & Analysis Workstation that includes the function of integrated management and network. It has solved well the problems of common usage, archiving, total ECG analysis and remote transmission which exist in the traditional ECG Review & Analysis Systems.

Computer Communication Networks↗

[Nutritional status assessment of patients with oral maxillofacial cancers].

OBJECTIVE: The objective of the study is to evaluate the nutritional status of patients with oral maxillofacial cancer. METHODS: The nutritional status was evaluated using seven easily determined variables and multi-factor nutritional index in 50 hospitalized patients with oral maxillofacial cancer from 1990 to 1992. RESULTS: Fifty-six percent of patients had protein-energy malnutrition. The high incidence of protein-energy malnutrition was found in those patients without adequate dietary intake. CONCLUSION: Patients with oral maxillofacial cancer usually have protein-energy malnutrition. The reason is that the patients always have an inadequate dietary intake.

Adolescent↗

[Buccal swab: a convenient source of DNA for analysis of IL-1 gene polymorphisms].

OBJECTIVE: PCR-RFLP based techniques have become standard procedures for gene polymorphism screening. Peripheral venous blood is currently the most commonly employed source of DNA for human genome analysis. However, it has many practical disadvantage and inherent limitations to use blood as DNA source. Blood sampling is invasive, painful and involves a potential risk of contamination with hepatitis. The classic procedure to extract genomic DNA from whole blood is phenol/chloroform technique, which is relative complicated and time consuming. Therefore, this study was performed to try an alternative instead of using blood as DNA source for gene polymorphism analysis. METHODS: Four methods were employed to obtain DNA from the same subject including DNA from venous blood through phenol/chloroform extraction, DNA from dried blood spot through Chelex 100 technique, DNA from buccal swab through Chelex 100 technique and the dried blood spot directly as DNA template for PCR. Then, these various forms of DNA were used in PCR RFLP procedure to analyze IL-1 gene polymorphisms, and their specificity and sensitivity were evaluated. RESULTS: Our results indicate that both the buccal swab and the blood based assays reached complete concordance in typing the IL-1 gene polymorphisms, while the Chelex 100 procedure for extracting DNA from buccal swab is much simpler and more rapid. It is non-invasive to get buccal swab. The amount of DNA obtained through one buccal swab is 63.8 micrograms +/- 18.7 micrograms, which is enough for 10 PCR reactions. CONCLUSION: Buccal swab appears to be an excellent source of DNA for detection of polymorphisms of human IL-1 gene.

DNA↗

Combinatorial signaling in the specification of unique cell fates.

How multifunctional signals combine to specify unique cell fates during pattern formation is not well understood. Here, we demonstrate that together with the transcription factor Lozenge, the nuclear effectors of the EGFR and Notch signaling pathways directly regulate D-Pax2 transcription in cone cells of the Drosophila eye disc. Moreover, the specificity of D-Pax2 expression can be altered upon genetic manipulation of these inputs. Thus, a relatively small number of temporally and spatially controlled signals received by a set of pluripotent cells can create the unique combinations of activated transcription factors required to regulate target genes and ultimately specify distinct cell fates within this group. We expect that similar mechanisms may specify pattern formation in vertebrate developmental systems that involve intercellular communication.

Animals↗

Yeast homolog of human SAG/ROC2/Rbx2/Hrt2 is essential for cell growth, but not for germination: chip profiling implicates its role in cell cycle regulation.

In an attempt to understand the signaling pathway mediating redox-induced apoptosis, we cloned SAG, an evolutionarily conserved zinc RING finger gene that, when overexpressed, protects cells from apoptosis induced by redox agents. Here we report functional characterization of SAG by the use of yeast genetics approach. Targeted disruption of ySAG, yeast homolog of human SAG, and subsequent tetrad analysis revealed that ySAG is required for yeast viability. Complementation experiment showed that the lethal phenotype induced by the ySAG deletion is fully rescued by wildtype SAG, but not by several hSAG mutants. Complementation experiment has also confirmed that ySAG is essential for normal vegetative growth, rather than being required for sporulation. Furthermore, cell death induced by SAG deletion was accompanied by cell enlargement and abnormal cell cycle profiling with an increased DNA content. Importantly, SAG was found to be the second family member of Rbx (RING box protein) or ROC (Regulator of cullins) or Hrt that is a component of SCF E3 ubiquitin ligase. Indeed, like ROC1/Rbx1/Hrt1, SAG binds to Cul1 and SAG-Cul1 complex has ubiquitin ligase activity to promote poly-ubiquitination of E2/Cdc34. This ligase activity is required for complementation of death phenotype induced by ySAG disruption. Finally, chip profiling of the entire yeast genome revealed induction of several G1/S as well as G2/M checkpoint control genes upon SAG withdrawal. Thus, SAG appears to control cell cycle progression in yeast by promoting ubiquitination and degradation of cell cycle regulatory proteins. Oncogene (2000) 19, 2855 - 2866

Carrier Proteins↗

Sterols and inhibitors of sterol transport modulate the degradation and secretion of macrophage ApoE: requirement for the C-terminal domain.

Macrophage-derived apoE, produced in the vessel wall, may have important effects during atherogenesis. The production of apoE by macrophages can be regulated at a transcriptional level by cellular differentiation state, cytokines and sterol loading. In addition, there are post-transcriptional and post-translational loci for regulation. We have recently identified an intermediate density cell membrane fraction in which the degradation of apoE can be modulated by sterols. Suppressing degradation of apoE in this fraction by pre-incubating cells in sterols led to enhanced apoE secretion. In this report we demonstrate that the suppressive effect of sterols on the degradation of newly synthesized apoE in this fraction depends on the presence on its C-terminal domain, by studying a macrophage cell line transfected to express a mutant form of apoE in which amino acids beyond amino acid 202 were deleted. In addition, two modulators of cellular sterol transport, progesterone and U1866A, inhibited the degradation of full-length apoE. In contrast, incubation of cells in the acyl-CoA:cholesterol acyltransferase inhibitor S58035 did not influence apoE degradation. As would be predicted based on the results of degradation assays, U1866A, but not S58035, increased the secretion of apoE from a cell line transfected to constitutively express full-length apoE cDNA. The effect of U1866A on apoE degradation, like the effect of sterol, required the presence of the apoE C-terminal domain. Our results indicate that alteration of intracellular sterol homeostasis by pre-incubation in sterols or by drugs that modify the subcellular transport of sterol, modulates the susceptibility of apoE to degradation and that this modulation requires the presence of C-terminal lipid binding domains.

Apolipoproteins E↗

Triterpenoids from Tripterygium wilfordii.

The extract (T(II)) of Tripterygium wilfordii Hook f. afforded four triterpenoids: wilforic acid D (3beta,24-epoxy-2alpha-hydroxy-24R*-ethoxy-29-friedelanoic acid); (E) 3beta,24-epoxy-2-oxo-3alpha-hydroxy-29-friedelanoic acid; (F) 2beta-hydroxy-3-oxo-friedelan-29-oic acid; 29-hydroxy-3-oxo-olean-12-en-28-oic acid and 17 known triterpenoids. Their structures were established on the basis of spectroscopic studies. In a bioactivity analysis, only the known dulcioic acid compound showed a significant inhibitory effect on cytokine production.

Immunosuppressive Agents↗

Coumarins and bicoumarin from Ferula sumbul: anti-HIV activity and inhibition of cytokine release.

The methanol extract of the dried roots of Ferula sumbul afforded two furanocoumarin esters, fesumtuorin A, B, one bicoumarin, fesumtuorin C, five spirobicoumarins, fesumtuorin D, E, F, G and H, along with nineteen known coumarins. Their structures were established on the basis of spectroscopic studies. Some of the isolated compounds showed anti-HIV activity and very weak inhibition of cytokine release.

Anti-HIV Agents↗

Terpenoids from Tripterigyum hypoglaucum.

Six terpenoids have been isolated from the root bark of Tripterygium hypoglaucum, along with 14 known compounds. The structures of the terpenoids were elucidated as 3,11,14-oxo-abieta-8,12-diene, 3beta-hydroxy-12,14-dimethoxyabieta-8,11,13-triene, 3beta-hydroxy-11alpha-ethoxyurs-12-ene, 3beta-hydroxy-11alpha-methoxyurs-12-ene, 3beta-hydroxy-11alpha-methoxyolean-12-ene-28-oic acid, and 1beta-benzoyl-8alpha-cinnamoyl-4alpha,5alpha- dihydroxydihydroagarofuran.

Drugs, Chinese Herbal↗

Sesquiterpene alkaloids from Tripterygium hypoglaucum and Tripterygium wilfordii: a new class of potent anti-HIV agents.

Five new sesquiterpene pyridine alkaloids [triptonines A (1) and B (2), and wilfordinines A (3), B (4), and C (5)] and two known compounds (peritassine A and hypoglaunine C) were isolated from Tripterygium hypoglaucum and a clinically used extract of Tripterygium wilfordii. The structures of 1-5 were elucidated by spectroscopic methods. The anti-HIV activity of 1, 2, and several related compounds was evaluated. Triptonine B (2) demonstrated potent anti-HIV activity with an EC(50) value of <0.10 microg/mL and an in vitro therapeutic index value of >1000.

Alkaloids↗

CD1a+, CD3+, CD4+, CD8+, CD68+ and cutaneous lymphocyte-associated antigen-positive cells in Bowen's disease.

BACKGROUND: Bowen's disease (BD) is a squamous cell carcinoma in situ that rarely invades into the underlying dermis. However, little is known about its immunohistology. Objectives To evaluate the relationship between the cytological properties of the tumour cells in BD and the host immune response. METHODS: We examined the expression of p53, proliferating cell nuclear antigen (PCNA) and Ki67 antigen, and the number of mitotic cells, together with the number of intratumoral and dermal infiltrating CD1a+, CD3+, CD4+, CD8+, CD68+ and cutaneous lymphocyte-associated antigen (CLA)+ cells in 18 cases of genital BD. RESULTS: When compared with normal genital skin (n = 10), there was a significantly higher number of mitotic cells as well as higher expression of p53+, PCNA+ and Ki67+ cells in BD. There was significant mutual correlation between CD3+, CD4+ and CD68+ cells in the tumoral epidermis. The number of CD1a+ Langerhans cells significantly decreased in BD epidermis; however, dermal CD1a+ cells were increased. Interestingly, numbers of dermal CD1a+ cells significantly correlated with those of intratumoral CD3+, CD4+ and CD68+ cells. In situ hybridization for human papillomavirus (HPV) demonstrated that HPV-infected BD had significantly less infiltration of intratumoral CD3+ cells and CLA+ cells. CONCLUSIONS: The present data suggest that dermal CD1a+ cells may participate in the immune surveillance and that HPV infection may interfere with the intratumoral infiltration of CLA+ cells in BD.

Antibody Formation↗

Binding of 14-3-3beta to the carboxyl terminus of Wee1 increases Wee1 stability, kinase activity, and G2-M cell population.

Wee1 protein kinase plays an important regulatory role in cell cycle progression. It inhibits Cdc-2 activity by phosphorylating Tyr15 and arrests cells at G2-M phase. In an attempt to understand Wee1 regulation during cell cycle, yeast two-hybrid screening was used to identify Wee1-binding protein(s). Five of the eight positive clones identified encode 14-3-3beta. In vivo binding assay in 293 cells showed that both full-length and NH2-terminal truncated Wee1 bind with 14-3-3beta. The 14-3-3beta binding site was mapped to a COOH-terminal consensus motif, RSVSLT (codons 639 to 646). Binding with 14-3-3beta increases the protein level of full-length Wee1 but not of the truncated Wee1. Accompanying the protein level increases, the kinase activity of Wee1 also increases when coexpressed with 14-3-3beta. Increased Wee1 protein level/enzymatic activity is accountable, at least in part, to an increased Wee1 protein half-life when coexpressed with 14-3-3beta. The protein half-life of the NH2-terminal truncated Wee1 is much longer than that of the full-length protein and is not affected by 14-3-3beta cotransfection. Biologically, 14-3-3beta/Wee1 coexpression increases the cell population at G2-M phase. Thus, Wee1 binding with 14-3-3beta increases its biochemical activity as well as its biological function. The finding reveals a novel mechanism by which 14-3-3 regulates G2-M arrest and suggests that the NH2-terminal domain of Wee1 contains a negative regulatory sequence that determines Wee1 stability.

14-3-3 Proteins↗