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Biomedical subjects

L Yuan

Publications and source records attributed to L Yuan.

At least 19 recordsLinked to original sources

Steady-state kinetics of the schistosomal hypoxanthine-guanine phosphoribosyltransferase.

Schistosomiasis is a trematode infection of some 200 million people. The hypoxanthine-guanine phosphoribosyltransferase (HGPRTase) of the major etiologic agent, Schistosoma mansoni, has been proposed as a potential target for antischistosomal chemotherapy [Dovey, H. F., McKerrow, J. H., & Wang, C. C. (1984) Mol. Biochem. Parasitol, 11, 157-167]. The steady-state kinetic mechanism for the schistosomal HGPRTase has been determined by including both hypoxanthine and guanine in the forward and reverse reactions under identical conditions. Double-reciprocal plots of initial velocity versus the concentration of one substrate, at a series of fixed concentrations of the other, give groups of intersecting straight lines indicating a sequential mechanism for the schistosomal HGPRTase-catalyzed reactions. In product inhibition studies, the results show that magnesium pyrophosphate (MgPPi) is a noncompetitive inhibitor with respect to dimagnesium phosphoribose pyrophosphate (Mg2PRPP), hypoxanthine, and guanine. Also, magnesium inosine monophosphate (MgIMP) and magnesium guanosine monophosphate (MgGMP) are noncompetitive inhibitors with respect to hypoxanthine or guanine, respectively, but are competitive inhibitors to Mg2PRPP. Furthermore, Mg2PRPP is a competitive inhibitor with respect to MgIMP and MgGMP but is a non-competitive inhibitor to MgPPi. The minimum kinetic model which fits the experimental data is an ordered bi-bi mechanism, where the substrates bind to the enzyme in a defined order (first Mg2PRPP followed by the purine bases), while products are released in sequence (first MgPPi followed by MgIMP or MgGMP).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Cell contour extraction on multi-threshold images.

A procedure for the extraction of cell and nuclear contours from digital images is presented. The procedure is simple and suitable for efficient implementation in an interactive environment where the user selects a region of interest containing the cell to be segmented. Segmentation is facilitated by multi-thresholding where the threshold values are determined by an iterative algorithm using the mean square error criteria to cluster the image pixel values. Edges are detected on the threshold images by employing a binary morphological filter and the desired contours are selected by considering closed contours in the edge image. The cell region is first extracted by performing segmentation, edge detection and contour extraction on the region of interest. The nuclear region is subsequently extracted by reapplication of the algorithms within the extracted cell region. Segmentation examples are presented.

Algorithms

Detection of point mutations of the phenylalanine hydroxylase gene and prenatal diagnosis of phenylketonuria.

The known mutant alleles of the human phenylalanine hydroxylase (PAN) gene were analyzed in 25 phenylketonuria (PKU) families from North China by using polymerase chain reaction and allele-specific oligonucleotide dot blot hybridization techniques. The results showed that the six mutations analyzed accounted for 62% of all PKU genes. The three most frequent mutations were R243Q, R413P and Y204C. Seven prenatal gene diagnoses were carried out in 6 PKU families and were confirmed after birth or by examination of aborted materials.

Base Sequence

Brefeldin A's effects on endosomes, lysosomes, and the TGN suggest a general mechanism for regulating organelle structure and membrane traffic.

Addition of brefeldin A (BFA) to most cells results in both the formation of extensive, uncoated membrane tubules through which Golgi components redistribute into the ER and the failure to transport molecules out of this mixed ER/Golgi system. In this study we provide evidence that suggests BFA's effects are not limited to the Golgi apparatus but are reiterated throughout the central vacuolar system. Addition of BFA to cells resulted in the tubulation of the endosomal system, the trans-Golgi network (TGN), and lysosomes. Tubule formation of these organelles was specific to BFA, shared near identical pharmacologic characteristics as Golgi tubules and resulted in targeted membrane fusion. Analogous to the mixing of the Golgi with the ER during BFA treatment, the TGN mixed with the recycling endosomal system. This mixed system remained functional with normal cycling between plasma membrane and endosomes, but traffic between endosomes and lysosomes was impaired.

Animals

High level expression in Escherichia coli of soluble, enzymatically active schistosomal hypoxanthine/guanine phosphoribosyltransferase and trypanosomal ornithine decarboxylase.

The bacterial alkaline phosphatase (phoA) promoter and signal peptide have been used previously to control recombinant expression and secretion of eukaryotic proteins in Escherichia coli. Other reports have shown that this expression system can generate relatively modest levels of active hypoxanthine/guanine phosphoribosyltransferase (HPRT; hypoxanthine phosphoribosyltransferase; IMP:pyrophosphate phosphoribosyltransferase, EC 2.4.2.8), which carries part of the signal peptide but remains in the cytosol of the bacteria. Herein, the phoA promoter without its associated signal peptide is used to regulate expression of the HPRT of Schistosoma mansoni and the ornithine decarboxylase (ODC; L-ornithine carboxy-lyase, EC 4.1.1.17) of Trypanosoma brucei, two enzymes that have been identified as potential targets for antiparasitic chemotherapy. The levels of recombinant expression range from 20% to 60% of the total bacterial protein, and the majority of both recombinant enzymes was soluble. The specific activity for the recombinant trypanosomal ODC was one-third to two-thirds that of the authentic native enzyme and yields were predicted to be 15-30 mg of active enzyme per liter of bacterial culture. The specific activity for the recombinant schistosomal HPRT was equivalent to that for the native enzyme purified from schistosomes and up to 10 mg of enzymatically active HPRT has been purified from a 0.5-liter culture of treated bacteria. These results represent a break-through in recombinant expression of HPRT and ODC.

Animals

Inability of malaria vaccine to induce antibodies to a protective epitope within its sequence.

Saimiri monkeys immunized with a recombinant protein containing 20 copies of the nine amino acid repeat of the Plasmodium vivax circumsporozoite (CS) protein developed high concentrations of antibodies to the repeat sequence and to sporozoites, but were not protected against challenge. After intravenous injection of an immunoglobulin G3 monoclonal antibody (NVS3) against irradiated P. vivax sporozoites, four of six monkeys were protected against sporozoite-induced malaria, and the remaining two animals took significantly longer to become parasitemic. Epitope mapping demonstrated that NVS3 recognizes only four (AGDR) of the nine amino acids within the repeat region of the P. vivax CS protein. The monkeys immunized with (DRAADGQPAG)20 did not produce antibodies to the protective epitope AGDR. Thus, determination of the fine specificity of protective immune responses may be critical to the construction of successful subunit vaccines.

Amino Acid Sequence

[Propionic acidemia: one case report].

A case of propionic acidemia is reported. The main features of this patient were recurrent vomiting, ketosis and occasional episodes of seizure. Serum concentrations of propionic acid and glycine were within the normal range. Blood ammonia was slightly elevated. Characteristic organic acids were present in the patient's urine. they were: 3-hydroxypropionic acid, propionylglycine, methyl-citric acid, tiglyglycine, 3-hydroxyvaleric acid, etc. The etiology, pathogenesis, clinical features, diagnosis, and treatment of propionic acidemia are briefly discussed.

Amino Acid Metabolism, Inborn Errors

The hypoxanthine-guanine phosphoribosyltransferase of Schistosoma mansoni. Further characterization and gene expression in Escherichia coli.

Due to the lack of de novo purine nucleotide biosynthesis, hypoxanthine-guanine phosphoribosyltransferase (HGPRTase) is an essential enzyme in the human parasite Schistosoma mansoni for supplying guanine nucleotides and has been proposed as a potential target for antiparasitic chemotherapy. While the enzyme can be purified from adult schistosome worms, yields are too low to allow extensive structural and kinetic studies. We therefore cloned and sequenced the cDNA and gene encoding the schistosomal enzyme but were unable to positively identify the amino-terminal sequence of the enzyme from the DNA sequence. Knowledge of the exact amino terminus was necessary before accurate expression of active enzyme could be attempted. Therefore, we purified the HGPRTase from crude extracts of the adult worms. The purified enzyme has a subunit molecular mass of 26 kDa and an amino-terminal sequence of Met-Ser-Ser-Asn-Met. This sequence matched one of the potential initiation sites predicted from the cDNA and gene sequence. We next expressed the correct size cDNA of the S. mansoni HGPRTase in Escherichia coli using a vector that is regulated by a bacterial alkaline phosphatase promoter and uses an E. coli signal peptide for secretion of expressed product into the periplasmic space. Using this expression system, some of the recombinant enzyme is secreted and found to have a correct amino terminus. That remaining in the cytoplasm has part of the signal peptide attached to the amino terminus. The recombinant schistosomal HGPRTase isolated from the periplasm of the transformed E. coli was purified and found to have kinetic and physical properties identical to those of the native enzyme.

Amino Acid Sequence

Evaluation of an in vitro assay aimed at measuring protective antibodies against sporozoites.

We have evaluated the in vitro biological activities of antibodies directed against sporozoites and compared them with their capacity to protect against challenge with both human and rodent malaria. The anti-Plasmodium falciparum antibodies evaluated with the test included monoclonal antibodies (MAbs) NFS1 and NFS2 as well as polyclonal antibodies contained in human hyperimmune sera directed against sporozoites of P. falciparum. The inhibitory effect of these antibodies was dependent on their concentration. However, total inhibition was not observed except occasionally with highly concentrated MAbs (10-100 micrograms/ml). Strong but also incomplete inhibition was observed with sera from humans living in hyperendemic areas. In the P. yoelii rodent system, we tested sera from mice immunized with subunit vaccines. None of these mice were protected in vivo against challenge with 40-200 sporozoites. In vitro only a sub-total inhibition was achieved (maximum 91% at 1:10 serum dilution). In contrast, we tested sera from mice that received NYS1, an IgG3 MAb, in passive transfer and were protected against challenge with 5000 sporozoites. At 1:10 dilution, 100% inhibition was achieved in vitro while IFA titres from these mice were similar to those of vaccinated mice. These data show a close correlation between in vivo and in vitro findings and thus suggest that the inhibition of liver-stage development assay (ILSDA) appears appropriate to evaluate the potential of antibodies.

Adult

Dual action of anti-sporozoite antibodies in vitro.

With the use of a double staining technique that permits localization of the sporozoite during the process of entering a host cell, we studied the biologic effects of three mAb directed against determinants contained in the circumsporozoite of Plasmodium yoelii. These mAb, which included one IgM and two IgG3, were studied in primary cultures of rodent hepatocytes inoculated with sporozoites of P. yoelii. These results confirm previous reports of the extended action of antibodies on Plasmodium falciparum after entering hepatocytes by producing a strong intrahepatocyte inhibitory effect in addition to the inhibitory effect on sporozoite entry. As with P. falciparum the intracellular effects on P. yoelii liver stages are only observed when the antibodies are present at the time the sporozoite enters the cell. While carrying out experiments on this phenomenon, it was discovered that, at lowered antibody concentrations, an increase in number of maturing liver schizonts occurs, with the increase or enhancement of infection reaching up to 150% of that of controls. It was also observed that there was an inverse relationship between the antibody concentration that was inhibitory and that which enhanced parasite infectivity.

Animals

Lysosomal integral membrane glycoproteins are expressed at high levels in the inclusion bodies of I-cell disease fibroblasts.

The localization, expression, and transport of two lysosomal integral membrane glycoproteins of human cells, hLAMP-1 and hLAMP-2, have been studied in mucolipidosis II (I-cell disease) fibroblasts. These cells are deficient in N-acetylglucosaminylphosphotransferase, one of the enzymes required for addition of the mannose 6-phosphate recognition signal to newly synthesized lysosomal hydrolases and a prerequisite for the sorting and transport of the hydrolases to lysosomes. I-cells analyzed by immunofluorescence microscopy with monoclonal antibodies against hLAMP-1 and hLAMP-2 showed intense staining of the inclusion bodies covering most of the cytoplasm of the cells. Immunoelectron microscopy confirmed this localization and showed that the hLAMP-positive vesicles commonly contained membrane structures or electron-dense homogeneous material characteristic of secondary lysosomes. Studies of the biosynthesis of hLAMP-2 in I-cells pulse-labeled with [35S]methionine indicated that the molecule is glycosylated in the Golgi system, is transported to vesicles with the high density characteristic of lysosomes, and has chemical properties similar to those of the glycoprotein synthesized in normal cells. The concentration of the hLAMP-2 glycoprotein was three- to fourfold greater than that in normal fibroblasts, in sharp contrast to the reduced levels of lysosomal hydrolases seen in I-cells. These experiments demonstrate that the inclusion bodies in I-cells have properties of secondary lysosomes and that the transport and targeting of the lysosomal membrane glycoproteins to the inclusion bodies of these cells is not coupled to the mannose 6-phosphate system for transporting soluble acid hydrolases.

Antigens, CD

Characterization of a proteinase inhibitor isolated from the fungal pathogen Coccidioides immitis.

A proteinase inhibitor was isolated from the cytosol and cell wall of the fungal respiratory pathogen Coccidioides immitis. The inhibitor was purified to apparent homogeneity by acid precipitation, gel filtration and reverse-phase h.p.l.c. It has an Mr of about 5000 under reducing conditions, as revealed by SDS/polyacrylamide-gel electrophoresis, and is both heat-stable and tolerant to low pH. The inhibitor can efficiently block activity of a 36,000-Mr serine proteinase previously isolated from the same cell-wall fraction of C. immitis, and the two molecules react in a 1:1 stoichiometry. The dissociation constant (Ki) of the enzyme-inhibitor complex is 2.3 x 10(-8) M. We suggest that the low-Mr inhibitor may play a role in regulation of the activity of the cell-wall-associated 36,000-Mr proteinase during sporulation of C. immitis.

Amino Acids