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Biomedical subjects

J Tang

Publications and source records attributed to J Tang.

At least 361 records · Page 20Linked to original sources

Isolation and characterization of human milk bile salt-activated lipase C-tail fragment.

Glycosylation positions and oligosaccharide characteristics in the proline-rich, mucin-like, C-terminal region (C-tail) of human milk bile salt-activated lipase (BAL) were studied in order to assess the possible physiological functions of this region. A large-scale purification method has been devised to purify the C-tail fragment from human milk BAL. Chymotryptic, tryptic, and cyanogen bromide cleavages of partially purified BAL and subsequent molecular sieve chromatography yielded 20-30 mg of C-tail fragment from 1 L of human milk. The N-terminal sequence and amino acid composition of the purified C-tail fragment establish that it is derived from residues 528-712 of the enzyme. The O-glycosylated carbohydrates of the C-tail fragment contain fucose, galactose, glucosamine, galactosamine, and neuraminic acid in a molar ratio of 1:3:2:1:0.3, respectively. beta-Elimination reaction revealed that nine threonine residues and less than one serine residue were glycosylated. Edman degradation of C-tail fragment and its pronase subfragment suggest a number of glycosylation sites which are flanked by a consensus motif of PVPP. We suggest that this motif may serve as a signal for O-glycosylation in the C-tail region of BAL. Immunochemical studies indicated that the oligosaccharide chains in the C-tail region of BAL contain Lewis x and Lewis a antigens and, less prominently, sialyl Lewis x and sialyl Lewis a antigens. C-tail fragment was also found to bind jacalin lectin. These observations suggest the possibility that the C-tail region may contribute to adhesive activity in the physiological function of BAL.

Amino Acid Sequence↗

Lysosome-associated membrane protein-1-mediated targeting of the HIV-1 envelope protein to an endosomal/lysosomal compartment enhances its presentation to MHC class II-restricted T cells.

A subset of endogenously synthesized Ags can be processed for class II-restricted presentation, probably through multiple mechanisms. Processing of exogenous Ags for class II-restricted presentation appears to occur in unique endosomal processing compartments with lysosomal characteristics including the presence of the lysosomal membrane protein LAMP-1. Therefore, we attempted to enhance the efficiency of class II-restricted presentation of an endogenous Ag, the HIV-1 envelope (env) protein, by specifically targeting the Ag to class II processing compartments through the pathway followed by LAMP-1. Because the env protein associates tightly with CD4 shortly after synthesis, we first targeted the env protein using a chimeric CD4 protein consisting of the extracellular domain of CD4 and the transmembrane and cytoplasmic domains of LAMP-1. When co-expressed with this chimeric protein, the env protein was efficiently localized to lysosome-like compartments. Enhanced stimulation of env-specific CD4+ T cell clones by APC expressing the env protein and the CD4-LAMP-1 chimera was readily demonstrated in both cytotoxicity assays and proliferation assays. We also targeted the env protein directly as a chimeric protein consisting of the extracellular domain of the env protein and the transmembrane and cytoplasmic domains of LAMP-1. The proliferative response of env-specific CD4+ T cell clones to the env-LAMP-1 chimera was greatly enhanced compared with wild-type env protein, especially when limiting numbers of stimulator cells were used. The enhanced stimulatory capacity of APC expressing LAMP-1-targeted Ags has important implications for vaccine design.

Antigen Presentation↗

A kinetic model for comparing proteolytic processing activity and inhibitor resistance potential of mutant HIV-1 proteases.

A kinetic model is presented for the comparison of potential proteolytic processing activities of wild-type and mutant human immunodeficiency virus proteases in the presence and absence of protease inhibitors. The protease processing of gag substrate in the immature virions is assessed by the kinetic parameters, kcat, Km and Ki. The relationship of the estimated potential processing activities to the viability of the HIV mutants and their tendencies to resist inhibitors also are discussed. A fully developed model has the potential to stimulate the results of inhibitor resistance either in vivo or in cell culture.

Drug Resistance, Microbial↗

COOH-terminal proteolytic processing of secreted and membrane forms of the alpha subunit of the metalloprotease meprin A. Requirement of the I domain for processing in the endoplasmic reticulum.

Cell surface isoforms of meprin A (EC 3.4.24.18) from mice and rats contain beta subunits that are type I integral membrane proteins and alpha subunits that are disulfide-linked to or noncovalently associated with membrane-anchored meprin subunits. Both alpha and beta subunits are synthesized with COOH-terminal domains predicted to be cytoplasmic, transmembrane, and epidermal growth factor-like; these domains are retained in beta subunits but are removed from alpha during maturation. The present studies establish that an inserted 56-amino acid domain (the "I" domain), present in alpha but not in beta, is necessary and sufficient for COOH-terminal proteolytic processing of the alpha subunit. This was demonstrated by expression of mutant meprin subunits (deletion mutants, chimeric alpha beta subunits, and beta mutants containing the I domain) in COS-1 cells. Mutations of two common processing sites present in the I domain (a dibasic site and a furin site) did not prevent COOH-terminal proteolytic processing, indicating that the proteases responsible for cleavage are distinct from those having these specificities. Deletion of the I domain from the alpha subunit resulted in accumulation of unprocessed subunits in a preGolgi compartment. Furthermore, COOH-terminal proteolytic processing of wild-type alpha subunits occurred before acquisition of endoglycosidase H resistance. Pulse-chase experiments and expression of an alpha subunit transcript containing a c-myc epitope tag, confirmed that proteolytic processing at the COOH terminus occurs in the endoplasmic reticulum. This work identifies the region of the alpha subunit that is essential for COOH-terminal processing and demonstrates that the differential processing of the evolutionarily-related subunits of meprin A that results in a structurally unique tetrameric protease begins in the endoplasmic reticulum.

Amino Acid Sequence↗

Allotransplantation of whole spleen in patients with hepatic malignant tumors or hemophilia A. Operative technique and preliminary results.

BACKGROUND: It has been reported that the spleen performs a vital function in the fight against malignant tumors. The spleen is the primary producer of tuftsin, which can directly or indirectly kill tumor cells or inhibit their growth. The spleen is also believed to produce coagulating factor VIII. Therefore, allotransplantation of the spleen can be used in the treatment of patients with malignant tumors and hemophilia A. DESIGN: Heterotopic allotransplantation of whole spleen was performed in six patients with advanced hepatocellular carcinoma and hemophilia A. An adjuvant immunotherapy with interferon alfa was simultaneously administered in the patients with liver cancer. SETTING: Tongji Hospital, Tongji Medical University, Wuhan, China. RESULTS: Among six cases of allografting of whole spleen, five grafts were successful; one failed because of torsion of the splenic hilum. Three patients with hepatocellular carcinoma survived 9, 11, and 5 months after transplantation. Marked shrinkage of hepatic tumors and reduced serum alpha-fetoprotein levels were observed in these patients. On 5-year follow-up, three patients with hemophilia who had undergone splenic allografts were alive, and two had experienced substantial clinical improvement. In these two patients, when the grafts were functioning well and the recipients were free of acute rejection or graft-vs-host reaction, the mean plasma factor VIII activity remained between 30% and 36%, with peak factor VIII activities of 53.7% and 66.6%. We also evaluate operative technique and posttransplantation complications. CONCLUSION: Our results strongly imply that the spleen is one of the primary sites of synthesis of factor VIII and that the spleen has an inherent ability to fight malignant diseases. Allografting of whole spleen may be a promising technique for the treatment of patients with unresectable hepatocellular carcinoma and severe hemophilia A.

Adult↗

Rearranging the domains of pepsinogen.

Most eukaryotic aspartic protease zymogens are synthesized as a single polypeptide chain that contains two distinct homologous lobes and a pro peptide, which is removed upon activation. In pepsinogen, the pro peptide precedes the N-terminal lobe (designated pep) and the C-terminal lobe (designated sin). Based on the three-dimensional structure of pepsinogen, we have designed a pepsinogen polypeptide with the internal rearrangement of domains from pro-pep-sin (native pepsinogen) to sin-pro-pep. The domain-rearranged zymogen also contains a 10-residue linker designed to connect sin and pro domains. Recombinant sin-pro-pep was synthesized in Escherichia coli, refolded from 8 M urea, and purified. Upon acidification, sin-pro-pep autoactivates to a two-chain enzyme. However, the emergence of activity is much slower than the conversion of the single-chain zymogen to a two-chain intermediate. In the activation of native pepsinogen and sin-pro-pep, the pro region is cleaved at two sites between residues 16P and 17P and 44P and 1 successively, and complete activation of sin-pro-pep requires an additional cleavage at a third site between residues 1P and 2P. In pepsinogen activation, the cleavage of the first site is rate limiting because the second site is cleaved more rapidly to generate activity. In the activation of sin-pro-pep, however, the second site is cleaved slower than the first, and cleavage of the third site is the rate limiting step.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Preparation of Tyr-C-peptide from genetically altered human insulin precursor.

C-peptide radioimmunoassay (C-peptide RIA) is widely used in determination of pancreatic B-cell secretion activity. 125I labeled Tyr-C-peptide is indispensable in C-peptide RIA kit. Herein we discuss a way of obtaining recombinant Tyr-C-peptide. Arg32Tyr human pro-insulin mutant (R32Y-proinsulin) gene was constructed by site-directed mutagenesis and overexpressed in Escherichia coli. Purified R32Y-proinsulin was converted to insulin and Tyr-C-peptide by trypsin and carboxypeptidase B codigestion. Tyr-C-peptide was isolated through reverse-phase HPLC (RP-HPLC) and identified by C-peptide RIA and amino acid analysis.

Base Sequence↗

Antigens in phenotypes of Heligmosomoides polygyrus raised selectively from different strains of mice.

Antigens from Heligmosomoides polygyrus, which had been passaged selectively for over 40 generations through naive (Hpn) and immune (Hpa) mice, were extracted as whole worm (WWA) and membrane bound antigens (MBA), soluble adult worm homogenates (AWH), and excretory/secretory (ES) products. The antigen complexes were separated by SDS-PAGE, and 2-dimensional electrophoresis and assayed by western blot. Qualitative and quantitative differences were observed between profiles and antigenic reactivity of the constituents from selected parasites, which reflected their genetic heterogeneity. The survival of Hpa parasite phenotypes was improved compared with that of their Hpn counterparts in homologous strains of immunized mice but this did not correlate strongly with the antigenic differences observed. Three small molecules at 18, 21 and 23 kDa, respectively, dominated the somatic and ES components of all worms but they were of low immunogenicity during natural infection in mice and after vaccination in rabbits; and their role in immunomodulation is discussed.

Animals↗

Mitochondrial alleles of Simulium damnosum sensu lato infected with Onchocerca volvulus.

Onchocerca volvulus infected Simulium damnosum s.l. were analysed by directed heteroduplex analysis. Of 73 infected flies, 68 produced heteroduplex products identical to those previously identified. All 6 major sibling species, except S. leonense, were present in this group. In the 5 remaining flies, 2 new heteroduplex patterns were noted. Molecular phylogenetic analysis of these samples suggested that they belonged to the S. squamosum/S. yahense subcomplex. The ability to reliably genotype adult flies will permit studies of the vectorial capacity of the sibling species of S. damnosum s.l. for the blinding and non-blinding strains of O. volvulus.

Alleles↗

Thermopsin.

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Amino Acid Sequence↗

Scanning electron microscopy of microarterial anastomoses with a diode laser: comparison with conventional manual suture.

A diode-laser (830 nm)-assisted carotid artery end-to-end microanastomosis (LAMA) and a contralateral manual suture anastomosis (CMA) were performed in 70 Wistar rats. The vessel sealing was performed on the left carotid by laser pulses (average 3) of 500 mW power and 4.5 sec exposure time, the beam being focused on a spot of 300 microns diameter (700 W/cm2). The CMA was achieved on the right carotid by six 10-0 stitches. From day 0 to day 210, 40 specimens underwent scanning electron microscopy. The laser impact produced a wall injury of 100 microns in width, with an immediate sealing effect due to protein denaturation and collagen fusion of media and adventitia. The anastomosis became re-endothelialized by day 3, while the longitudinal arrangement of the endothelial cells was restored from day 10 on. In the long term, a thick collagenous meshwork of collagen and elastic fibers maintained the strength of the media, while normal endothelium covered the anastomosis. Inversely, after CMA vessel repair was delayed, and the anastomotic line was more irregular and underlined by medial fibrotic scar. In both anastomoses, the patency rate was 93 percent, with nonlethal complications. The advantages of LAMA vs. CMA were: shorter operating time (13 min/22 min), reduced intraoperative trauma, better healing of endothelium, and a miniaturization of the laser source well adapted to microsurgery.

Anastomosis, Surgical↗

Cellular origin, complementary deoxyribonucleic acid and N-terminal amino acid sequences of human seminal progastricsin.

The aspartic protease progastricsin (EC 3.4.23.3) is found in all parts of the mammalian stomach and has also been found extragastrically. In humans and monkeys, seminal fluid usually contains high concentrations of progastricsin. Using immunohistochemistry and in situ hybridization, we determined in this investigation the origin of seminal progastricsin to be the epithelia of both the prostatic gland and the seminal vesicles. In addition, Northern (RNA) blotting showed the presence of a 1.8-kb transcript in both tissues. Seminal progastricsin clones from two human prostatic gland cDNA libraries were isolated and sequenced. The combined sequence manifested only six nucleotide differences from the published genomic and gastric cDNA sequence. One conservative base substitution was present in both libraries. N-Terminal amino acid sequencing of all 43 residues of the seminal proenzyme and the first 34 residues of the mature enzyme yielded sequences identical to those deduced from cDNAs derived from both gastric and prostatic origin. The results obtained indicate that gastric and seminal progastricsin are products of the same gene and that the observed molecular differences between the zymogen from the two sources are probably due to posttranslational modifications.

Blotting, Northern↗