PubMed Health⌕ Search

Biomedical subjects

F Tan

Publications and source records attributed to F Tan.

At least 37 records · Page 2Linked to original sources

Topography of cone electrophysiology in the enhanced S cone syndrome.

PURPOSE: To investigate the topography of cone electroretinographic (ERG) responses in the enhanced S cone syndrome (ESCS). METHODS: A 19-year-old female with ESCS who was one of the original cases defining the syndrome was studied. Full-field, focal (Maculoscope) and multifocal (VERIS) ERGs were performed using white light. Multifocal ERG responses were also generated with red and blue stimuli and with a slow m-sequence to elicit off-responses. Results were analyzed by averaging data in rings at increasing eccentricity from the fovea and compared to data recorded identically from a normal subject. RESULTS: The full-field ERG from this patient showed typ ical large slow photopic waveforms and was unchanged from recordings made 9 years earlier. The focal ERG showed signals of borderline low amplitude from the fovea with the multifocal ERG, the ESCS responses from the central macula had a relatively normal waveform, and those 9 degrees to 20 degrees from fixation showed the prolonged wave-form that characterizes the full-field ERG. Responses were larger to blue light than red light in ESCS in both center and periphery. The central ESCS responses were relatively normal in timing to both red and blue light, whereas the peripheral ESCS responses were markedly delayed to both. Off-responses were seen in ESCS only near the foveal center. CONCLUSIONS: The marked differences between central and peripheral ERG responses in ESCS suggest that there are different distributions of S, L, and M cones in these regions and that S cones may feed into different neural pathways in the center and periphery. It was postulated that in ESCS, S cones may partially replace L and M cones centrally and feed into the usual S cone pathways. In the periphery, however, there is little L and M cone b-wave activity in ESCS, and S cones may usurp both the space and neural pathways of the rods.

Adult↗

Chromosomal localization of the genes for human carboxypeptidase D (CPD) and the active 50-kilodalton subunit of human carboxypeptidase N (CPN1).

Human carboxypeptidase N is a 280-kDa tetrameric enzyme consisting of two 83-kDa regulatory subunits and two catalytic 50-kDa subunits. The 83-kDa subunit is a member of the leucine-rich repeat family of proteins and has been localized to chromosome 8p22-p23. The 50-kDa subunit is a member of the regulatory B-type carboxypeptidase family, which includes carboxypeptidases M, E/H, AEBP1, and a newly described member, carboxypeptidase D, which has three tandem active site domains. The human genes for carboxypeptidase D (HGMW-approved symbol CPD) and the 50-kDa subunit of carboxypeptidase N (HGMW-approved symbol CPN1) were localized to chromosomes 17 and 10, respectively, using the polymerase chain reaction with gene-specific primers and DNAs derived from somatic cell hybrids. The carboxypeptidase D gene was further localized to the centromeric region 17p11.1-q11.1/11.2 by use of a regional mapping panel derived from somatic cell hybrids containing different portions of chromosome 17.

Carboxypeptidases↗

[A prospective study on post-transfusion hepatitis G virus infection].

OBJECTIVE: To study the incidence of post-transfusion hepatitis G virus (HGV) infection in our country and the relationship between it and post-transfusion hepatitis B (HB) and C (HC). METHODS: Hepatitis B surface antigen, hepatitis Be antigen, antibodies against HBsAg, HB core antigen HBe and HC virus, HCV RNA and HGV RNA were detected for 138 patients with blood transfusion before and after ther surgical operations. RESULTS: There occurred 53 cases of post-transfusion hepatitis virus infection, 48 with HCV infection and two with HBV infection (including one of super-infection with HBV and HCV). HGV infection could be found with nested reverse transcription polymerase chain reaction in seven cases, three of them co-infected with HCV all with elevated activity of serum alanine transaminase (ALT). But, ALT was kept normal in the patients with simple HGV infection. HGV RNA could be detected for one month to half a year. Residual donor's blood for five of the seven patients with post-transfusion HGV infection was available for examination, and HGV RNA was detected positive in at least one of the donor's blood for 3 cases. CONCLUSION: No clinical manifestation with viral hepatitis and no elevation in activity of serum ALT were found in blood donors and blood transfusion patients with infection of simple HGV, which did not conform to the view that HGV was an important hepatitis virus.

Adolescent↗

Sequence of human carboxypeptidase D reveals it to be a member of the regulatory carboxypeptidase family with three tandem active site domains.

We have cloned the cDNA for human carboxypeptidase D (CPD), a new B-type metallocarboxypeptidase that is membrane bound and has an acidic pH optimum. The 5.8 kb of cDNA sequenced contains an open reading frame of 4131 bp encoding 1377 amino acid residues. The sequence is similar (75% identity) to duck gp180, a protein that was isolated, cloned and sequenced as a hepatitis B virus-binding protein but not characterized as a carboxypeptidase. Hydropathic analysis revealed a hydrophobic region at the N-terminus, representing the signal peptide, and one near the C-terminus that probably represents the transmembrane anchor. The most striking feature is the presence of three tandem carboxypeptidase homology domains that have sequence similarity to the regulatory B-type carboxypeptidase family, typified by carboxypeptidases M, E and N. Because of the three repeats, CPD is about three times larger (175-180 kDa) than other members of this family (approx. 50-62 kDa). Domain 2 is most closely related to carboxypeptidases M, E and N (45-48% identity), followed by domain 1 (37-38%) and domain 3 (20-27%). There is a much higher sequence identity in regions containing putative active site residues, and all catalytically important residues are strictly conserved in domains 1 and 2. In domain 3, however, only 1 of 8 active site residues is conserved, indicating that this portion might not be catalytically active. Northern blotting of mRNA from human tissues and cells showed high levels of CPD mRNA in placenta, pancreas and Hep G2 hepatoma cells, and smaller amounts in skeletal muscle, heart and HT-29 colon carcinoma and melanoma cell lines.

Amino Acid Sequence↗

Identification of a membrane-bound carboxypeptidase as the mammalian homolog of duck gp180, a hepatitis B virus-binding protein.

A unique membrane-bound carboxypeptidase was discovered and characterized in membrane fractions of human skin fibroblasts and the mouse monocyte-macrophage cell line J774A.1 and was partially purified from human placenta. Enzymatic characterization identified it as a new member of the regulatory B-type metallocarboxypeptidases, different from carboxypeptidases B, E, M, N and U. It is, however, similar to the newly described bovine carboxypeptidase D, suggested to be a homolog of duck gp180, a 180 kDa hepatitis B virus-binding protein. To prove this, a partial cDNA encoding a 20 kDa fragment of the human homolog of duck gp180 was expressed in bacteria and the recombinant protein was purified. Antibodies raised to the protein immunoprecipitated 94% or 72% of the low pH carboxypeptidase activity in human skin fibroblasts or J774A.1 cells and gave a 175 kDa protein band in Western blots. Thus, carboxypeptidase D is the mammalian homolog of duck gp180 and is distributed in a variety of different cell types.

Animals↗

Excision of the polydnavirus chromosomal integrated EP1 sequence of the parasitoid wasp Cotesia congregata (Braconidae, Microgastinae) at potential recombinase binding sites.

Cotesia congregata polydnavirus (CcPDV) is essential for successful parasitism of Manduca sexta larvae by the braconid wasp Cotesia congregata. To determine the molecular mechanisms for the vertical transmission of CcPDV in the wasps, we analysed the different forms of the virus sequences containing the gene encoding the early parasitism-specific protein 1 (EP1). By a detailed molecular analysis, we demonstrated that the EP1 sequences are present in wasp DNA in two forms: a circular form as seen in the virus particles and a form integrated into the wasp genome. Moreover, we showed that the integrated form of the EP1 sequences is able to excise in the ovary cells. A fragment corresponding to an EP1 'empty locus' (without the viral sequence) was PCR-amplified from ovarian DNA. Comparison of the sequences isolated from the EP1 circle, the integrated form and the empty locus revealed that the extremities of the EP1 genomic sequences constitute a direct repeat. Strikingly, these sequences contain a potential binding site for a recombinase of the Hin family located in close vicinity to the position where the DNA strand exchange occurs. Thus, the data bear upon the possibility that the bracovirus circles are excised via a mechanism related to the Hin mediated Conservative Specific-Specific Recombination (CSSR) of prokaryotes.

Animals↗

Potentiation of the actions of bradykinin by angiotensin I-converting enzyme inhibitors. The role of expressed human bradykinin B2 receptors and angiotensin I-converting enzyme in CHO cells.

Part of the beneficial effects of angiotensin I-converting enzyme (ACE) inhibitors are due to augmenting the actions of bradykinin (BK). We studied this effect of enalaprilat on the binding of [3H]BK to Chinese hamster ovary (CHO) cells stably transfected to express the human BK B2 receptor alone (CHO-3B) or in combination with ACE (CHO-15AB). In CHO-15AB cells, enalaprilat (1 mumol/L) increased the total number of low-affinity [3H]BK binding sites on the cells at 37 degrees C, but not at 4 degrees C, from 18.4 +/- 4.3 to 40.3 +/- 11.9 fmol/10(6) cells (P < .05; Kd, 2.3 +/- 0.8 and 5.9 +/- 1.3 nmol/L; n = 4). Enalaprilat preserved a portion of the receptors in high-affinity conformation (Kd, 0.17 +/- 0.08 nmol/L; 8.1 +/- 0.9 fmol/10(6) cells). Enalaprilat decreased the IC50 of [Hyp3-Tyr(Me)8]BK, the BK analogue more resistant to ACE, from 3.2 +/- 0.8 to 0.41 +/- 0.16 nmol/L (P < .05, n = 3). The biphasic displacement curve of the binding of [3H]BK also suggested the presence of high-affinity BK binding sites. Enalaprilat (5 nmol to 1 mumol/L) potentiated the release of [3H]arachidonic acid and the liberation of inositol 1,4,5-trisphosphate (IP3) induced by BK and [Hyp3-Tyr(Me)8]BK. Moreover, enalaprilat (1 mumol/L) completely and immediately restored the response of the B2 receptor, desensitized by the agonist (1 mumol/L [Hyp3-Tyr(Me)8]BK); this effect was blocked by the antagonist, HOE 140. Finally, enalaprilat, but not the prodrug enalapril, decreased internalization of the receptor from 70 +/- 9% to 45 +/- 9% (P < .05, n = 7). In CHO-3B cells, enalaprilat was ineffective. ACE inhibitors in the presence of both the B2 receptor and ACE enhance BK binding, protect high-affinity receptors, block receptor desensitization, and decrease internalization, thereby potentiating BK beyond blocking its hydrolysis.

Angiotensin-Converting Enzyme Inhibitors↗

Increased prevalence of systemic sclerosis in a Native American tribe in Oklahoma. Association with an Amerindian HLA haplotype.

OBJECTIVE: To investigate a high prevalence of systemic sclerosis (SSc; scleroderma) in a well-defined population of 21,255 Choctaw Indians residing in 8 southeastern Oklahoma counties who were "users" of Indian Health Services. METHODS: A case-control study of 12 SSc cases and 48 matched non-SSc controls (4 per case) was conducted to investigate potential occupational, residential, and infectious exposures, as well as genetic factors which might predispose to SSc. HLA class II alleles were determined by DNA oligotyping, and class I and III alleles were defined serologically. RESULTS: The prevalence of SSc in full-blooded Choctaws was at least 8/1,704, or 469/100,000 (95% confidence interval [95% CI] 203-930) over the 4-year interval 1990-1994 and was significantly higher than that among non-full-blooded Choctaws (6/19,551, or 31/100,000) (P = 0.00001, odds ratio [OR] = 15.4, 95% CI 4.9-49.8). The overall prevalence of SSc in Oklahoma Choctaws (66/100,000) also was significantly higher than that in other Native Americans in Oklahoma (9.5/100,000) (P = 10(-6), OR = 6.95, 95% CI 3.3-13.7), who showed a prevalence similar to that reported for whites (2.1-25.3/100,000). Among the SSc cases, there was striking homogeneity of disease expression with the majority exhibiting diffuse scleroderma, pulmonary fibrosis, and autoantibodies to topoisomerase I. No environmental exposures were found to be in excess among cases versus controls. The strongest risk factor for SSc in cases (100%) versus controls (54%) was an HLA haplotype bearing the alleles B35, Cw4, DRB1*1602 (DR2), DQA1*0501, and DQB1*0301 (DQ7) (P = 0.002, Pcorr = 0.036, OR = 21, 95% CI 2.9-437). Survey of another group of Choctaws residing in another state revealed no cases of SSc despite a high frequency of the same HLA haplotype. CONCLUSION: Full-blooded Choctaw Native Americans living in southeastern Oklahoma have the highest prevalence of SSc yet found in any population. A major risk factor for disease is a uniquely Amerindian HLA haplotype; however, additional genes and/or an as-yet-unidentified environmental exposure seem likely.

Adult↗

Generation and analysis of 280,000 human expressed sequence tags.

We report the generation of 319,311 single-pass sequencing reactions (known as expressed sequence tags, or ESTs) obtained from the 5' and 3' ends of 194,031 human cDNA clones. Our goal has been to obtain tag sequences from many different genes and to deposit these in the publicly accessible Data Base for Expressed Sequence Tags. Highly efficient automatic screening of the data allows deposition of the annotated sequences without delay. Sequences have been generated from 26 oligo(dT) primed directionally cloned libraries, of which 18 were normalized. The libraries were constructed using mRNA isolated from 17 different tissues representing three developmental states. Comparisons of a subset of our data with nonredundant human mRNA and protein data bases show that the ESTs represent many known sequences and contain many that are novel. Analysis of protein families using Hidden Markov Models confirms this observation and supports the contention that although normalization reduces significantly the relative abundance of redundant cDNA clones, it does not result in the complete removal of members of gene families.

Adult↗

Isolation and characterization of an avian A1 adenosine receptor gene and a related cDNA clone.

We have isolated the gene for a chick A1 adenosine receptor along with a cDNA that codes for the same adenosine receptor. The cDNA clone was isolated from both adipose tissue and heart cDNA libraries and encodes a 324-amino acid protein with 80% identity with mammalian A1 adenosine receptors. Transient expression of the cDNA in human embryonic kidney (HEK) 293 cells shows that it encodes a protein that binds [3H]CCPA (2-chloro-N6-[cyclopentyl-2,3,4,5-3H]cyclopentyladenosine, a specific agonist radioligand, with a KD of 5.6 +/- 2.4 nM. Cyclic AMP measurements in HEK 293 cells co-transfected with the chick cDNA and a cDNA for a luteinizing hormone/choriogonadotropin receptor shows that A1 adenosine receptor agonists antagonize the cyclic AMP-elevating effect of bovine luteinizing hormone. Two partial genomic clones were isolated. The first contains 5'-untranslated sequence including a putative promoter region which does not contain a TATA box, an intron and the first third of the coding sequence of the A1 adenosine receptor cDNA. The coding sequence of this partial genomic clone terminates at a second intron. The second partial genomic clone contains the rest of the coding sequence and the 3'-untranslated elements in a single exon. Thus the chick A1 adenosine receptor gene contains one intron in the 5'-untranslated region and a minimum of one intron in the coding sequence.

Adenosine↗

Expression of rat kallikrein and epithelial polarity in transfected Madin-Darby canine kidney cells.

Many properties of urinary kallikrein are well characterized, but the intracellular processing of prokallikrein and release by kidney cells have yet to be clarified. We report here on the synthesis of prokallikrein in Madin-Darby canine kidney (MDCK) cells transfected with rat submaxillary gland kallikrein cDNA and on its activation by MDCK cells and by an enriched liver Golgi membrane preparation. Transfected MDCK cells secreted only prokallikrein at both the apical and basolateral sides in about a 4:1 ratio, but cells transfected with kallikrein cDNA in reverse orientation or untreated cells released only traces of the enzyme. Prokallikrein, in culture medium or in homogenized MDCK cells, was fully activated by trypsin but activated only to 44% by thermolysin. Prokallikrein was synthesized and released into the medium at a high rate: the enzyme secreted by 5 x 10(6) cells in 24 hours cleaved 46 nmol/min D-Val-Leu-Arg-7-amino-4-methylcoumarin and liberated 63 ng/min bradykinin after activation. Immunocytology indicated the association of prokallikrein with the Golgi apparatus in the transfected cells. Antiserum to rat urinary kallikrein detected a single band in a Western blot of conditioned medium and also immunoprecipitated the enzyme. Aprotinin inhibited activated prokallikrein. Although MDCK cells released prokallikrein, their homogenates activated prokallikrein at both pH 5.5 and 7.5. Prokallikrein was also activated by a highly enriched liver Golgi membrane fraction and by an endoplasmic reticulum preparation, but the Golgi preparation was 38-fold more active. The activation was blocked significantly by inhibitors of serine proteases and less by cysteine protease inhibitors.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Plasma membrane-bound and lysosomal peptidases in human alveolar macrophages.

Alveolar macrophages protect the lungs against noxious agents. Proteases and peptidases are essential for this defense and many metabolic activities. Human alveolar macrophages were evaluated for the presence of six important peptidases. Deamidase, a serine peptidase identical with the lysosomal protective protein and possibly with cathepsin A, had high specific activity in alveolar macrophages and is also present in cultured mouse J774A.1 and human U937 cells, used for the sake of comparison. In fractionated J774A cells, most of the deamidase activity was in the lysosomal fraction and in the final supernatant. Deamidase in human alveolar macrophages, obtained by bronchoalveolar lavage from 23 patients, cleaved dansyl-Phe-Leu-Arg at a rate of 2.26 mumol/h/mg protein and hydrolyzed the chemotactic peptide N-f-Met-Leu-Phe even faster, at a rate of 53.1 mumol/h/mg protein, the highest activity for this enzyme with any of the cells we tested. Rabbit antiserum, elicited with the recombinant partial sequence of the enzyme, immunoprecipitated 77-88% of the macrophage deamidase. In immunocytochemistry, this antiserum localized deamidase within the human macrophages. The enzyme was inhibited by diisopropylfluorophosphate (DFP; 1 mM) and by ebelactone B (10 microM), noncompetitively. The mRNA of deamidase was detected in mouse macrophages by Northern blot; the two protein chains of deamidase were shown in human macrophages by Western blot. In addition, two other serine peptidases were also highly active in macrophages: dipeptidyl peptidase IV (1.38 mumol/h/mg protein) and prolylcarboxypeptidase (0.72 mumol/h/mg protein). The activity of plasma membrane zinc metallopeptidases, neutral endopeptidase 24.11 and carboxypeptidase M, in contrast, was low or absent (angiotensin I converting enzyme; kininase II).(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Dominant chymotrypsin-like esterase activity in human lymphocyte granules is mediated by the serine carboxypeptidase called cathepsin A-like protective protein.

We identified a chymotrypsin-like activity in the granules of IL-2 lymphokine-activated killer (LAK) cells and a NK cell line (YT) that reacted preferentially with the oligopeptide substrate succinyl-Phe-Leu-Phe-thiobenzyl ester (Suc-Phe-Leu-Phe-SBzl). The enzyme was isolated by detergent extraction of sedimented cytotoxic granules and then by a sequence of sieve, hydrophobic, and anion exchange chromatography. On SDS-PAGE, the protein migrated at 42 kDa in nonreduced form and became two bands (31 and 19 kDa, respectively) after reduction. Amino-terminal sequencing of the reduced protein bands revealed 100% homology with cathepsin A-like protective protein (CAPP), a lysosomal enzyme that expresses serine carboxypeptidase and deamidase activities. The carboxypeptidase activity of lymphocyte CAPP was verified by showing that the protease preferred hydrophobic amino acids in the penultimate position of the C terminus (i.e., cleaved arginine from dansyl-Phe-Leu-Arg). The presence of lymphocyte CAPP in secretory lysosomes was demonstrated by showing that Suc-Phe-Leu-Phe-SBzl activity co-migrated with tryptase and Asp-ase activities on Percoll density gradients and that 95% of the Suc-Phe-Leu-Phe-SBzl activity in granule fractions of cavitated YT cells could be immunoprecipitated with an anti-CAPP antiserum. In addition, calcium ionophore-stimulated YT cells were shown to secrete immunoprecipitable CAPP. As proposed for platelets, lymphocyte CAPP may be secreted to function extracellularly by inactivating bioactive peptides.

Amino Acid Sequence↗

Increased expression of neprilysin (neutral endopeptidase 24.11) in rat and human hepatocellular carcinomas.

BACKGROUND: Neprilysin (EC 3.4.24.11) (NEP), a membrane metallopeptidase, is identical with common acute lymphoblastic leukemia antigen or cluster differentiation antigen 10. This antigen is present in blast cells in acute lymphoblastic leukemias and is implicated in differentiation of B lymphocytes. NEP cleaves a variety of peptides including bradykinin, substance P, bombesin, enkephalins, and atrial natriuretic peptide. We investigated its expression in several variants of rat hepatomas and a human hepatocellular carcinoma cell line. Normal rat and human livers were used as controls. EXPERIMENTAL DESIGN: The expression of NEP (common acute lymphoblastic leukemia antigen) was determined with: (a) enzyme assays; (b) high performance liquid chromatography analysis of bradykinin metabolism; (c) immunoprecipitation; and (d) mRNA characterization. RESULTS: NEP activity increased by 2 to 3 orders of magnitude in all rat hepatomas and in the human SK-HEP1 cell line, compared with normal tissues. Antiserum against rat NEP precipitated 93% of endopeptidase activity in rat hepatomas, whereas monoclonal antibody to common acute lymphoblastic leukemia antigen immunoprecipitated 99% of that in human hepatocarcinoma cells. Solubilized rat hepatoma membranes cleaved bradykinin to a hepta- and dipeptide; the reaction was inhibited by an NEP inhibitor. Activity of three other membrane peptidases did not increase in rat hepatomas. Northern hybridization revealed the presence of NEP mRNA in rat hepatoma, but not in normal liver. Reverse transcriptase-polymerase chain reaction showed that hepatomas have higher amounts of NEP mRNA than normal liver of the same strain. CONCLUSIONS: Rat hepatomas and a human hepatocarcinoma cell line express high amounts of NEP, in contrast to normal rat and human livers, which have very little. The increase in NEP activity could be due to increased transcription by tumor cells and may signal malignant transformation of liver cells.

Animals↗