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Biomedical subjects

C Wu

Publications and source records attributed to C Wu.

At least 415 records · Page 23Linked to original sources

Membrane action of chloramphenicol measured by protozoan motility inhibition.

The mechanism of the grey baby syndrome produced by chloramphenicol overdose is poorly understood. The present study assessed the membrane toxicity of this agent by means of its depressant effect on excitable tissues. The inhibition by drugs of protozoan motility was used as a toxicity endpoint, measured by the swimming speed of Tetrahymena pyriformis using an image analysis system. The n-octanol/water partition coefficient at pH 7.4, 37 degrees C was determined as a measure of the hydrophobicity of the drugs. Chloramphenicol dose-dependently depressed the motility of the test organism with an IC50 value (the concentration reducing the mean swimming speed to 50% of control) of 2.95 +/- 0.25 mM, in contrast to a significantly weaker effect of its succinate salt with an IC50 of 28.2 +/- 1.93 mM. Thiamphenicol, a drug with similar properties to chloramphenicol, produced little effect on protozoan motility. Several other antibiotics either in free or salt forms were also ineffective. A series of agents known to possess membrane stabilising action also tested for comparison showed that chloramphenicol possesses the ability to reduce protozoan motility. Measurement of the n-octanol/water partition coefficient revealed a value for chloramphenicol of 11.9 +/- 0.66. This property was correlated with protozoan immobilising potency among a series of heterogeneous compounds, suggesting that the mechanism involved a hydrophobic interaction with the excitable membrane. These results show that chloramphenicol has a depressant effect on protozoan motility comparable to agents with known toxicity effects on cell membranes. This suggests that chloramphenicol has the potential to cause membrane-mediated toxic effects, a mode of action that may underlie its acute toxicity to excitable tissues.

1-Octanol↗

Mouse uroporphyrinogen decarboxylase: cDNA cloning, expression, and mapping.

Uroporphyrinogen decarboxylase (URO-decarboxylase; EC 4.1.1.37), the heme biosynthetic enzyme responsible for the conversion of uroporphyrinogen III to coproporphyrinogen III, is the enzymatic defect in porphyria cutanea tarda, the most common porphyria. The mouse URO-decarboxylase cDNA was isolated from a mouse adult liver cDNA library. The longest clone of 1.5 kb, designated pmUROD-1, had 5' and 3' untranslated sequences of 281 and 97 bp, respectively, and an open reading frame of 1104 bp encoding a 367-amino acid polypeptide with a predicted molecular mass of 40,595 Da. The mouse and human coding sequences had 87.8% and 90.0% nucleotide and amino acid identity, respectively. The authenticity of the mouse cDNA was established by expression of the active enzyme in Escherichia coli. In addition, the analysis of two sets of multilocus genetic crosses localized the mouse gene, Urod, on Chromosome (Chr) 4, consistent with the map location of the human gene to a position of conserved synteny on Chr 1. The availability of the mouse URO-decarboxylase should facilitate studies of the structure and organization of the mouse genomic sequence and the development of a mouse model of this inherited porphyria.

Amino Acid Sequence↗

Dibutyl phthalate purged autologous bone marrow transplant in the treatment of leukemia.

It has been proved that di-N-butyl phthalate (DBP) is singular in killing leukemic cells selectively or accelerating the deterioration of residual leukemic cells in long-term marrow culture in vitro. Based on this principle, the DBP-purged autologous bone marrow transplant has been applied to the treatment of a group of 14 patients suffering from acute nonlymphocytic leukemia. After 5-10 days of in vitro co-culture of marrow cells with DBP at a concentration of 50 micrograms/ml, the recovery of total nucleated cells and the amount of CFU-GM were 67.5% and 68.1%, respectively. In all patients, the reconstitution of hematopoiesis was observed after pre-conditioning and transfusion of purged marrow cells. Among these, two patients had a relapse, two patients died from complications of transplant, one patient died from non-leukemic disease, and the others are all alive and free of disease; the mean survival time as calculated recently was 15 months. These preliminary clinical data support that marrow culture in the presence of DBP is a safe and effective measure for treating leukemia in purged autologous bone marrow transplant.

Adolescent↗

Modulation of major histocompatibility complex class I genes by interferon-gamma and ganglioside GT 1b in astrocytes: involvement of protein tyrosine phosphatases.

We have previously reported that the polysialoganglioside GT1b suppresses the induction of major histocompatibility complex class I molecules by interferon-gamma in astrocytes. Suppression by GT1b depended on the presence of sialic acid moieties because asialo-GM1 was not suppressive. In the present report, GT1b was found to act transcriptionally to suppress class I genes because both the interferon-gamma induction of RNA and the activity of class I promoter constructs were inhibited. Furthermore, GT1b suppressed promoter activity through interferon regulatory factor elements, indicating an effect on the transcription activation factor, interferon regulatory factor 1. Interferon-gamma induced interferon regulatory factor 1 within 8 h, and GT1b suppressed this induction. The suppression of interferon regulatory factor 1 by GT1b correlated with the suppression of gamma-activated factor binding at the promoter of the interferon regulatory factor 1 gene. The suppression of gamma-activated factor by GT1b appeared to involve increased protein tyrosine phosphatase activity because treatment of the cells with pervanadate reversed the effect of GT1b on the gamma-activated factor and, correspondingly, phosphotyrosine content. In sum, GT1b displays specific effects on interferon-gamma signaling and negative feedback regulatory molecules in astrocytes.

Animals↗

Regulation of Drosophila heat shock factor trimerization: global sequence requirements and independence of nuclear localization.

Heat shock transcription factor (HSF) is a multidomain protein that exists as a monomer under normal conditions and is reversibly induced upon heat shock to a trimeric state that binds to DNA with high affinity. The maintenance of the monomeric state is dependent on hydrophobic heptad repeats located at the amino- and carboxy-terminal regions which have been proposed to form an intramolecular coiled-coil structure. In a systematic deletion analysis to identify other regions of HSF that may be required to regulate its oligomeric state, we have found that local sequences encompassing the carboxy-terminal end of the DNA binding domain and a broad region of HSF between the heptad repeats also contribute to this regulation. Immunocytochemical analysis of mutant HSF proteins revealed a canonical motif required for nuclear localization. HSF proteins lacking the nuclear localization signal remain in the cytoplasm, but these HSFs nonetheless exhibit reversible heat stress-inducible trimerization. The results indicate that the signals that regulate HSF trimerization operate in both the nuclear and cytoplasmic compartments of the cell.

Animals↗

Finely tuned regulation of cytoplasmic retention of Xenopus nuclear factor 7 by phosphorylation of individual threonine residues.

Xenopus nuclear factor 7 (xnf7) is a maternal gene product that functi ons in dorsal/ventral patterning of the embryo. The xnf7 protein is stored in the oocyte nucleus germinal vesicle in a hypophosphorylated state. At oocyte maturation, xnf7 is hyperphosphorylated and released into the cytoplasm, where it is anchored until the midblastula stage, where it is dephosphorylated and enters the nucleus. We demonstrated that cytoplasmic anchoring of xnf7 was regulated by changes in the phosphorylation status of four threonines within two sites, site 1 (Thr-103) and site 2 (Thr-209, Thr-212, and Thr-218), which function in an additive manner. A mutant form of xnf7 (xnf7thr-glu) in which the threonines at sites 1 and 2 were mutated to glutamic acids to mimic a permanent state of phosphorylation was retained in the cytoplasm in oocytes and embryos through the gastrula stage. The cytoplasmic form of xnf7 was detected in a large 670-kDa protein complex probably consisting of xnf7 and several other unknown protein components. Anchoring of xnf7 was not dependent on association with either microtubule or microfilament components of the cytoskeleton, since treatment with cytochalasin B and nocodazole did not affect cytoplasmic retention. Both wild-type xnf7 and xnf7thr-glu form dimers in the yeast two-hybrid system; however, homodimerization was not required for cytoplasmic retention. We suggest that the cytoplasmic retention of xnf7 depends on the phosphorylation state of the protein whereas the cytoplasmic anchoring machinery appears to be constitutively present in oocytes and throughout development until the gastrula stage.

Amino Acid Sequence↗

Human ARF4 expression rescues sec7 mutant yeast cells.

Vesicle-mediated traffic between compartments of the yeast secretory pathway involves recruitment of multiple cytosolic proteins for budding, targeting, and membrane fusion events. The SEC7 gene product (Sec7p) is a constituent of coat structures on transport vesicles en route to the Golgi complex in the yeast Saccharomyces cerevisiae. To identify mammalian homologs of Sec7p and its interacting proteins, we used a genetic selection strategy in which a human HepG2 cDNA library was transformed into conditional-lethal yeast sec7 mutants. We isolated several clones capable of rescuing sec7 mutant growth at the restrictive temperature. The cDNA encoding the most effective suppressor was identified as human ADP ribosylation factor 4 (hARF4), a member of the GTPase family proposed to regulate recruitment of vesicle coat proteins in mammalian cells. Having identified a Sec7p-interacting protein rather than the mammalian Sec7p homolog, we provide evidence that hARF4 suppressed the sec7 mutation by restoring secretory pathway function. Shifting sec7 strains to the restrictive temperature results in the disappearance of the mutant Sec7p cytosolic pool without apparent changes in the membrane-associated fraction. The introduction of hARF4 to the cells maintained the balance between cytosolic and membrane-associated Sec7p pools. These results suggest a requirement for Sec7p cycling on and off of the membranes for cell growth and vesicular traffic. In addition, overexpression of the yeast GTPase-encoding genes ARF1 and ARF2, but not that of YPT1, suppressed the sec7 mutant growth phenotype in an allele-specific manner. This allele specificity indicates that individual ARFs are recruited to perform two different Sec7p-related functions in vesicle coat dynamics.

ADP-Ribosylation Factor 1↗

Identification of a new biological function for the integrin alpha v beta 3: initiation of fibronectin matrix assembly.

Fibronectin matrix assembly is a complex cellular process initiated by specific fibronectin-binding cell surface receptors. Although the integrin alpha 5 beta 1 has been implicated in the assembly of fibronectin matrices, fibroblastic cells derived from alpha 5 integrin null mutant embryos assemble a fibronectin matrix. Thus, alternative receptors must support this process. Although the platelet integrin alpha IIb beta 3 supports fibronectin matrix assembly, its expression is restricted to platelets. We report that alpha v beta 3 integrin, a fibronectin receptor expressed on many cell types provides an alternative pathway for the assembly of soluble fibronectin into the extracellular matrix. This process occurs independent of alpha 5 beta 1, is also modulated by activation, and the resulting matrix is biochemically indistinguishable from that assembled under the control of alpha 5 beta 1. Matrix assembly requires binding to the RGD site in the 10th type III repeat of fibronectin, as well as the participation of the amino-terminal matrix assembly domain. The participation of two distinct integrins in fibronectin matrix assembly suggests a model for the involvement of integrins in a dual system of extracellular matrix assembly and recognition controlled by intracellular activation of extracellular receptors.

Animals↗

Circulating total and ionized magnesium after ethanol ingestion.

Hypomagnesemia is associated with alcoholism (Lim P, Jacob E. Metabolism 1972;21:1045-51). Here we assess two measurements of blood magnesium in emergency care patients with confirmed ethanol ingestion. Serum total and ionized magnesium (tMg, iMg) were measured in 88 patients with ethanol concentrations of 6-128 mmol/L and in sera of 97 hospitalized patients (control group). iMg was measured by an ion-selective electrode method; tMg was measured spectrophotometrically. iMg was significantly lower for the ethanol-containing specimens (0.35 +/- 0.12 mmol/L, mean +/- SD) than for the control group (0.46 +/- 0.15 mmol/L), with P <0.0001. The tMg for the test group (0.87 +/- 0.20 mmol/L) was not significantly different from the controls (0.88 +/- 0.33 mmol/L), with P = 0.5987. tMg was not well-correlated with iMg in the ethanol-positive specimens. Most ethanol-positive patients had abnormally low serum iMg (87 of 88 had iMg <0.53 mmol/L).

Alcohol Drinking↗

[Results on Ivor-Lewis esophagogastrectomy for 338 cases of carcinoma of esophagus].

Three hundred thirty eight patients with carcinoma in the middle and lower thirds of the esophagus received Ivor-Lewis esophagogastrectomy (separate laparotomy and right thoracotomy incisions) from February 1986 to June 1992. The total resectability was 95.2%. Lymph node metastases were found in 136 cases (40.2%). Postoperative complications developed in 10.3% of the patients. No anastomotic leakage, nor postoperative (within 30 days) death and hospital death occurred. Major pulmonary complications occurred in 28.6% of the patients. The overall 1-, 3- and 5-year survival rate was 88.5% (231/261), 63.1% (125/198) and 48.4% (60/124), respectively. The five-year survival rate was 64.1% (41/64) in patients with negative lymph nodes as compared to 31.7% (19/60) with positive nodes. The superiority of this technique was a significant improvement of the 5-year survival rate. This was due to better exposure of the operation field which made thorough dissection of lymph nodes possible, especially those along the right recurrent laryngeal nerve. Better operative exposure also provided chances for redical resection with less interference from the aortic arch. It made anastomosis easier to perform so that stenosis and leakage were less likely to occur. Ivor-Lewis esophagogastrectomy is a superior surgical procedure of choice for the treatment of cancer at the lower and middle thirds of the esophagus.

Adult↗

Purification and properties of an ATP-dependent nucleosome remodeling factor.

We report the purification of an ATP-dependent nucleosome remodeling factor (NURF) from Drosophila embryo extracts. NURF is composed of at least four polypeptides that act in concert with the GAGA transcription factor to alter chromatin structure at the hsp70 promoter. The energy requirement is attributed to an ATPase activity that is stimulated by nucleosomes but not by free DNA or histones, suggesting that NURF acts directly on a nucleosome to perturb its structure. This finding and the physical properties of NURF contrast sharply with the multisubunit SWI2/SNF2 complex, which has also been shown to alter nucleosomes in an ATP-dependent manner. The results suggest that two distinct systems may be involved in remodeling chromatin for transcription.

Adenosine Triphosphatases↗

ISWI, a member of the SWI2/SNF2 ATPase family, encodes the 140 kDa subunit of the nucleosome remodeling factor.

The generation of an accessible heat shock promoter in chromatin in vitro requires the concerted action of the GAGA transcription factor and NURF, an ATP-dependent nucleosome remodeling factor. NURF is composed of four subunits and is biochemically distinct from the SWI2/SNF2 multiprotein complex, a transcriptional activator that also appears to alter nucleosome structure. We have obtained protein microsequence and immunological evidence identifying the 140 kDa subunit of NURF as ISWI, previously of unknown function but highly related to SWI2/SNF2 only in the ATPase domain. The ISWI protein is localized to the cell nucleus and is expressed throughout Drosophila development at levels as high as 100,000 molecules/cell. The convergence of biochemical and genetic studies on ISWI and SWI2/SNF2 underscores these ATPases and their close relatives as key components of independent systems for chromatin remodeling.

Adenosine Triphosphatases↗

Integrin activation and cytoskeletal interaction are essential for the assembly of a fibronectin matrix.

Fibronectin (Fn) matrices are vital to vertebrate development and wound healing and modulate tumorigenesis. We used a recombinant Fn-binding integrin alpha IIb beta3, to define rules for integrin-initiated Fn matrix formation. We report the following. First, multiple Fn-binding integrins can support matrix assembly; their activation state controls fibrillogenesis. Second, Fn binding to cells expressing an activated integrin is necessary but not sufficient for matrix assembly. Additional "postoccupancy" events involving the integrin beta, but not the alpha subunit, cytoplasmic domain are needed. Third, these postoccupancy events require an intact actin cytoskeleton. We propose a model for integrin involvement in Fn fibrillogenesis that reconciles previous paradoxes and suggests novel approaches to the therapeutic control of Fn matrix assembly.

Actins↗

Isolation and characterization of a cDNA clone encoding a member of the Com44/Cim44 envelope components of the chloroplast protein import apparatus.

Many of the proteins in the chloroplast envelope play an important role in facilitating the biochemical and transport processes of the compartment. For the transport of proteins into the chloroplast, we have recently identified at least three different envelope proteins (Com44/Cim44, Com70, and Cim97) in close physical proximity to a partially translocated chimeric precursor protein (Wu, C., Seibert, F. S., and Ko, K. (1994) J. Biol. Chem. 269, 32264-32271). In this study we report the characterization of a cDNA clone encoding a member of the Com44/Cim44 envelope proteins. The combined data from nucleotide sequencing, and RNA and protein blot analyses indicate the existence of multiple forms of the 44-kDa envelope protein. Depending on the plant species examined, immunologically-related protein bands with molecular masses of 42 to 46 kDa were observed. Organelle subfractionation, protease treatment, and immunomicroscopic studies together provide an indication that the immunologically-related proteins may be present in both the outer and inner envelope membranes. Co-migration of the product synthesized from the cDNA insert with a 44-kDa immunoreactive band of the chloroplast envelope, and the in vitro import results, together suggest that the in vitro synthesized 44-kDa protein is targeted to the envelope membrane without any further processing.

Amino Acid Sequence↗

Pheromone response in yeast: association of Bem1p with proteins of the MAP kinase cascade and actin.

Haploid cells of the yeast Saccharomyces cerevisiae respond to mating pheromones with polarized growth toward the mating partner. This morphological response requires the function of the cell polarity establishment protein Bem1p. Immunochemical and two-hybrid protein interaction assays revealed that Bem1p interacts with two components of the pheromone-responsive mitogen-activated protein (MAP) kinase cascade, Ste20p and Ste5p, as well as with actin. Mutants of Bem1p that are associated with defective pheromone-induced polarized morphogenesis interacted with Ste5p and actin but not with Ste20p. Thus, the association of Bem1p with Ste20p and Ste5p may contribute to the conveyance of spatial information that regulates polarized rearrangement of the actin cytoskeleton during yeast mating.

Actins↗