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Biomedical subjects

T J Chang

Publications and source records attributed to T J Chang.

At least 37 records · Page 2Linked to original sources

Tyrosine phosphorylation of focal adhesion kinase stimulated by hepatocyte growth factor leads to mitogen-activated protein kinase activation.

Focal adhesion kinase (FAK) is a cytoplasmic tyrosine kinase involved in integrin-mediated signal transduction pathway. In this report, we describe that the treatment of hepatocyte growth factor (HGF) stimulates a significant increase in the tyrosine phosphorylation of FAK in human embryonic kidney 293 cells. This stimulation is independent of cell adhesion or the integrity of the actin cytoskeleton, suggesting potentially different mechanisms by which the HGF receptors and integrins regulate the tyrosine phosphorylation of FAK. Our results also suggest that the activation of Src upon HGF stimulation is likely to be one, if not the only, of the mechanisms responsible for the HGF-induced tyrosine phosphorylation of FAK. Furthermore, we showed that a mutation in the Grb2 binding site Tyr-925 of FAK partially abolishes its increase in HGF-induced phosphorylation. Finally, we demonstrated that HGF stimulates the association of FAK with Grb2 in vitro and in intact cells and provided evidence that FAK might contribute to the activation of mitogen-activated protein kinase through Ras in HGF signaling by functioning as an adapter molecule.

Adaptor Proteins, Signal Transducing↗

Recombinant pseudorabies virus DNase exhibits a RecBCD-like catalytic function.

The pseudorabies virus (PRV) DNase gene has previously been mapped within the PRV genome. To characterize further the enzymic properties of PRV DNase, this enzyme was expressed in Escherichia coli with the use of a pET expression vector. The protein was purified to homogeneity and assayed for nuclease activity in vitro. Recombinant PRV DNase exhibited an alkaline pH preference and an absolute requirement for Mg2+ ions that could not be replaced by Ca2+ and Na+ ions. Further studies showed that PRV DNase exhibited endonuclease, 5'-exonuclease and 3'-exonuclease activities in both single-stranded and double-stranded DNA. This activity occurred randomly and no significant base preference was demonstrated. The multiple biochemical activities of PRV DNase are similar to the activities of Neurospora crassa endo-exonuclease and E. coli RecBCD, two additional enzymes that are involved in recombination. Taken together, the similarity of action between N. crassa endo-exonuclease, E. coli RecBCD, and PRV DNase suggests that PRV DNase might have a role in the process of recombination that occurs during PRV infection.

Catalysis↗

From mosquito to man: identification of a novel protein kinase, HsHPK, which is highly expressed in human hepatoma tissues.

Protein kinases play an important role in the signaling pathway of growth factors in most of the higher organisms. During the study of protein kinase profiles of mosquitoes using RT-PCR and degenerate primers for consensus catalytic domain motifs to amplify protein kinase genes, we have noticed that a novel mosquito kinase, AaPK-38, shares a stretch of amino acids identical to the corresponding domain in Tousled gene of Arabidopsis thaliana that is required for leaf and flower development. A 2.1-kb cDNA encoding human HsHPK gene, which is a homolog of AaPK-38, was isolated from human testis cDNA library. This cDNA contains an open reading frame of 563 amino acids, with a complete kinase domain in its carboxyl terminus. The expressed Flag-tagged HsHPK was shown to have kinase activity based on in vitro autophosphorylation. Northern blot analysis revealed that human HsHPK mRNA is most abundant in testes, much less in heart and skeletal muscle and almost undetectable in liver and lung. Finally, we found that the expression of HsHPK in 4 out of 6 human hepatoma tissues is much higher than that in the adjacent normal counterpart. This result suggests HsHPK may play a role in the development of human hepatoma.

Amino Acid Sequence↗

DNA vaccination induces a long-term antibody response and protective immunity against pseudorabies virus in mice.

In order to investigate the mechanism of long-term immunity and the effect of protective immunity induced by DNA vaccination, we constructed the expression plasmid containing a pseudorabies virus (PRV) gD gene encoding an envelope glycoprotein. Intramuscular vaccination of mice with the plasmid DNA induced a strong antibody response which lasted for one year after final vaccination. An IgM to IgG class switch occurred, indicating helper T-lymphocyte activity. We further analyzed the persistence and expression of gD gene by polymerase chain reaction and reverse transcriptase polymerase chain reaction. The results showed that gD gene was present and expressed in the muscle cell up to one year after final booster injection. Furthermore, mice vaccinated with the plasmid DNA were protected against a subsequent lethal challenge with PRV. Therefore, the DNA vaccination does induce a protective immunity and long-term antibody response against PRV, which could be maintained by persistent expression of gD gene in muscle cells.

Animals↗

The recombinant nucleocapsid protein of classical swine fever virus can act as a transcriptional regulator.

The cDNA of the nucleocapsid (core) protein of classical swine fever virus (CSFV) was generated by reverse transcription-polymerase chain reaction (RT-PCR) and cloned into a eukaryotic expression vector. The effect of the recombinant core protein on the transcriptional regulation of cellular as well as viral promoters was studied. Using transient transfection assay, our results demonstrated that the core protein can activate the promoter of human heat shock protein 70 gene, and suppressed the SV40 early promoter. These findings indicate that the core protein appears to function not only as a viral structural protein but also as a regulator of gene expression. The implications of core proteins on the viral maturation are discussed.

Animals↗

Identification, expression, and characterization of the pseudorabies virus DNA-binding protein gene and gene product.

The pseudorabies virus (PRV) gene encoding a DNA-binding protein (DBP) was first identified in this study. The DBP gene has an open reading frame of 3531 nucleotides, capable of coding a 1177-amino-acid polypeptide of 125 kDa. The deduced DBP exhibits a conserved zinc-binding motif and a conserved DNA-binding region, suggesting the similar DNA-binding mechanism occurs among alphaherpesviral DBP homologs. To further identify the biochemical properties of PRV DBP, this protein was expressed in Escherichia coli by using a pET expression vector and purified to homogeneity. The PRV DBP binds cooperatively and preferentially to single-stranded DNA with no significant base preference, judged by agarose gel electrophoresis and competitive nitrocellulose filter binding assays. Taken together, these results suggest that PRV DBP may play an important role in PRV DNA replication by binding cooperatively and nonspecifically to single-stranded DNA that is formed during the replication origin unwinding and replication fork movement.

Amino Acid Sequence↗

Establishment and characterization of a strial marginal cell line maintaining vectorial electrolyte transport.

E6/E7 genes of human papilloma virus type 16 were used to immortalize a primary culture of marginal cells (MC) from gerbils. One of the cloned lines was selected which demonstrated preservation of the main characteristics of the MC, both morphologically and physiologically. Electron microscopic examination showed well-developed junctional complexes and apical microvilli which suggested its epithelial origin. Polymerase chain reaction (PCR) demonstrated the incorporation of E6/E7 genes with the genome. Reverse transcription PCR revealed the existence of mRNA of the IsK channel, a unique marker of MC among the inner ear cells, in this clone. Flow cytometric analysis of this cell line's DNA content was diploid. Numerous large domes formed after confluence of the cell monolayer. Electrophysiologic studies displayed evidence of apical K+ and Na+ channels which were blocked by Ba2+ (2 mM) and amiloride (10(-5) M), respectively. Existence of basolateral Na,K-ATPase and Na+/Cl-/K+ cotransporter was shown by blockage by ouabain (10(-3) M) and bumetanide (50 microM), individually. Injection of the cell line to nude mice failed to induce growth of tumors. This cell line was serum-, density- and anchorage-dependent when cultured in plastic dishes. In conclusion, this cell line shows characteristics of well-differentiated MC maintaining the major ionic transport processes, and provides us a good model to study the possible mechanisms and regulating factors of endolymph production.

Animals↗

Cloning, expression and sequence analysis of the classical swine fever virus nucleocapsid protein.

The DNA complementary to the 5'-terminal 1929 nucleotides of classical swine fever virus (CSFV; alias hog cholera virus, HCV) LPC vaccine strain RNA was cloned and sequenced. The sequence encompasses a 5'-noncoding region (NCR) of 264 nucleotides and an open reading frame (ORF) of 1665 nucleotides. The cloned sequence contains genes of four viral proteins, P23, nucleocapsid (core) protein, E0 and part of E1 proteins. Alignment of the 5'-terminal 1929 nucleotides of LPC strain with other strains of CSFV showed well conservation and a homology as high as 84-95% was found between these strains. The cDNA of CSFV-LPC core was cloned into an expression vector, and a fusion protein of 38.5 kDa was obtained which reacted strongly to CSFV antiserum. Purification of the core fusion protein was achieved by a single-step affinity chromatography and the purified product could be recognized by the sera of CSFV-infected swine in ELISA assay. Phylogenetic analysis of the 5'-terminal 1929 nucleotides between pestiviruses revealed that the 5'-end region seems to be suitable for differentiation of different strains of CSFV.

Amino Acid Sequence↗

Molecular cloning and nucleotide sequence of 3'-terminal region of classical swine fever virus LPC vaccine strain.

A cDNA of the 3'-terminus of classical swine fever virus (LPC vaccine strain) was cloned and sequenced. The 3431 nucleotides and deduced amino acid sequences were compared with those of other pestiviruses, and the similarity of nucleotide sequences and deduced amino acid sequences were found to be 84-95% and 95-98%, respectively. Similar to other isolates of classical swine fever virus, the sequenced region included the non-structural gene p58 (NS5A) and part of p76 (NS5B) gene. The p76 gene of LPC vaccine strain also contained a highly conserved motif G-D-D (Gly-Asp-Asp) that is present in the RNA replicase of positive-stranded RNA viruses. With the sequence data currently available, we carried out a phylogenetic analysis and obtained a genealogical relationship among members of the classical swine fever virus.

Amino Acid Sequence↗

Intraocular pressure lowering effects of novel arylpiperazine derivatives.

Arylpiperazine derivatives were synthesized and investigated in this study. Two animal models, including an intraocular pressure (IOP) recovery method and an alpha-chymotrypsin-induced glaucoma model, were used to determine the ocular pharmacological effects of the arylpiperazine derivatives. In the IOP recovery method, New Zealand rabbits with normal IOP were instilled with 50 microliters of 0.5% eye drops, then 10% sodium chloride solution was infused through the ear marginal vein. The relative percent of IOPs were calculated, then delta IOPt% was obtained from the difference of IOPt% between the treated and controlled eye. In the alpha-chymotrypsin-induced glaucoma model, the induced glaucoma rabbits were topically instilled with 0.5% arylpiperazines onto the eyes, and then the IOP changes were calculated to evaluate the effect of eye drops. Our results showed that in the IOP recovery method, BG31 and YCT2-2 demonstrated a very significant effect for reducing IOP; delta IOPt% were -27.6 and -25.5 for BG31 and YCT2-2, respectively. Two other compounds, C219 and C220 also lowered IOP, but the effects were less significant. In alpha-chymotrypsin-induced glaucoma, the maximum effect of YCT2-2 on the IOP was found at 5 hrs. The delta IOP and delta delta IOP were -12.5 +/- 1.7 and -5.8 +/- 1.1 mmHg (p < 0.01), respectively. For BG-31 and C220, there existed a trend to increase IOP with time. In the study, we found that YCT2-2 with higher solubility in the acidic condition was correlated to the significant IOP lowering effect.

Administration, Topical↗

Expression of the glycoprotein E2 of the classical swine fever virus in Escherichia coli.

The glycoprotein E2 sequences of classical swine fever virus (strain p97) were cloned, sequenced and expressed in E. coli. Result from SDS-polyacrylamide gel electrophoresis analysis of expressed proteins revealed the presence of a prominently stained band corresponding to a molecular mass of 61 kDa, which is in agreement with the predicted size from the DNA sequence. The recombinant E2 protein contained an aminoterminal tag of six histidines that could be used for purification by the nickel chelate affinity chromatography. The elution fractions of the expressed protein also contain additional bands of 40 and 35 kDa proteins, indicating proteolytic cleavages might occur. Our Western blotting result also supported that the expression of the recombinant E2 protein of the classical swine fever virus were accomplished.

Animals↗

RET protooncogene mutations in patients with apparently sporadic medullary thyroid carcinoma.

We examined RET protooncogene mutations in sporadic medullary thyroid carcinoma (MTC), using polymerase chain reaction (PCR)-based sequencing. DNA was extracted from tumor tissue and peripheral blood leukocytes of seven unrelated individuals with apparently sporadic MTC. Oligonucleotide primers were selected to amplify exons 10, 11, 13, 15, and 16 of the RET protooncogene, to examine the sequences of codons 609, 611, 618, and 620 of exon 10, codon 634 of exon 11, codon 768 of exon 13, codon 883 of exon 15, and codon 918 of exon 16. Direct DNA sequencing from PCR products was then performed. The results showed that one patient had a somatic mutation at codon 918 (ATG-->ACG), causing a Met-->Thr substitution. One patient had a de novo germline mutation at codon 634 (TGC-->CGC), causing a Cys-->Arg substitution. Another patient had a germline mutation at codon 634 (TGC-->TTC), causing a Cys-->Phe substitution. In the remaining four cases, no RET mutations were found. Unexpectedly, two offspring of the patient (a female) with a germline mutation at codon 634 (TGC-->TTC) harbored homozygous alleles for the mutation; because the father did not carry this mutation, the other affected allele was suspected to have resulted from a de novo germline mutation of paternal origin. One of these offspring was subsequently diagnosed as having MTC. Our findings suggest that all patients with apparently sporadic MTC should be screened for the RET protooncogene by molecular analysis to detect occult or de novo multiple endocrine neoplasia 2 (MEN 2) or familial MTC. This would allow early treatment of affected family members.

Adult↗

Germline RET proto-oncogene mutations in two Taiwanese families with multiple endocrine neoplasia type 2A.

To elucidate the germline RET proto-oncogene mutations in Taiwanese families with multiple endocrine neoplasia type 2A (MEN 2A), we extracted DNA from peripheral blood leukocytes of 28 members of two families with MEN 2A. Oligonucleotide primers for exons 10 and 11 were used to analyze the nucleotide sequence of codons 609, 611, 618, and 620 of exon 10, and codon 634 of exon 11 of the RET proto-oncogene. Two fragments of genomic DNA were amplified by polymerase chain reaction (PCR). The amplified PCR products were separated and purified from primers and free nucleotides in agarose gels, and the expected 187-bp and 234-bp bands were cut from the gels and sequenced. Thirteen family members in the two MEN 2A kindreds had mutations in codon 634 of exon 11. In kindred 1 (15 members available for this study), a heterozygous codon 634 mutation in nine members and a homozygous codon 634 mutation in one member led to the substitution of Phe (TTC) for Cys (TGC). Three members of kindred 2 (13 members available for this study) had a heterozygous base pair change in codon 634, which led to the substitution of Arg (CGC) for Cys (TGC). In this study, we found two mutation events occurring in two MEN 2A kindreds and also discovered a homozygous point mutation in one woman that led to heterozygous mutations in all of her children.

Drosophila Proteins↗

Effectiveness of slow-release lanreotide, a long-acting somatostatin analogue, in the treatment of acromegaly.

We evaluated the effectiveness of slow-release lanreotide, a long-acting somatostatin analogue, in the treatment of acromegaly. Eleven patients with acromegaly were recruited, six of whom had received long-term treatment with octreotide. Lanreotide 30 mg was administered by intramuscular injection every other week for 24 weeks. The frequency of injection was adjusted as clinically needed after 2 weeks. Clinical effects were evaluated, and symptoms were recorded and scored. Finger circumferences and hand volumes were measured. Serum growth hormone (GH) and insulin-like growth factor-1 (IGF-1) concentrations were determined, and an oral glucose test was done at baseline and after treatment. Symptom scores, circumferences of the fingers, hand volumes, and serum GH and IGF-1 concentrations significantly decreased during treatment. Serum GH concentrations returned to normal in five (46%) of the 11 patients, while serum IGF-1 concentrations returned to normal in three (27%). Glucose intolerance was not significantly improved at the end of treatment. Although the mean serum GH concentration was significantly decreased after treatment, it was still not suppressed by glucose. In conclusion, slow-release lanreotide, given either twice or three times a month, is effective in controlling acromegalic symptoms as well as GH and IGF-1 hypersecretion. The treatment is well tolerated and convenient for patients.

Acromegaly↗

Thyrotropin-secreting pituitary adenoma.

Thyrotropin (TSH)-secreting pituitary adenoma (TSPA) is a rare cause of hyperthyroidism and detailed reports of this entity in Taiwan are uncommon. We report a patient with TSPA with symptoms of hyperthyroidism and describe the presentation, endocrine and histologic findings, and treatment. The patient, a 42-year-old man, presented with a 2-year history of weight loss, palpitation, anxiety, and bad temper. He had increased basal serum thyroxine (T4, 18.3 micrograms/dL) and triiodothyronine (T3, 250 ng/dL) concentrations. The TSH concentration was normal (4.6 microIU/mL) and showed impaired response to stimulation by TSH-releasing hormone. Tests for antithyroid antibodies were negative. Thyroid scintigraphy showed mild thyroid enlargement. The thyroid uptake of radioactive iodine (131I) was high at 2 hours (34%) and 24 hours (63%) after 131I administration. Other serum hormone concentrations were within normal limits. Magnetic resonance imaging of the brain showed a microadenoma in the pituitary region. Octreotide and bromocriptine tests showed 78.4% and 58.3% inhibition of TSH, respectively. The patient underwent trans-sphenoidal pituitary tumor excision, and the symptoms of hyperthyroidism subsided after surgery. Six months after the operation, there was no evidence of recurrence of the tumor or symptoms of hyperthyroidism. Hormonal supplements were also not necessary. In conclusion, TSPA is a rare cause of hyperthyroidism. However, in patients with symptoms of hyperthyroidism and increased basal serum T1 and T3 concentrations, but normal or even elevated serum TSH concentrations, TSPA should be considered in the differential diagnosis.

Adenoma↗

Stimulation of type I DNA topoisomerase gene expression by pseudorabies virus.

Previous results from our laboratory have demonstrated that type I DNA topoisomerase activity is required for the replication and gene expression of pseudorabies virus (PRV). In the present report, we further analyzed the expression of topoisomerase I in PRV-infected cells, and the western blot result showed that the expression of topoisomerase I was increased after virus infection. The increase sustained to late time of infection when the cytopathic effect was obvious and the synthesis of most host proteins was shut off by PRV. From transient expression assay, it was also found that the promoter of cellular topoisomerase I gene could be stimulated by immediate-early protein (IE180) and viral early protein 0 (EP0), and these two regulatory proteins appeared to work synergistically. Collectively, these findings provide evidence that PRV can stimulate the expression of topoisomerase I and that the stimulation is mediated at least by IE180 and EP0 proteins of PRV at the transcriptional level.

Animals↗

Immunolocalization of the pseudorabies virus immediate-early protein IE180 by immunoperoxidase staining.

The immediate-early (1E) gene of pseudorabies virus (PRV) expresses immediately upon infection, a phosphorylated protein (immediate-early protein, IE180) that can transactivate viral other genes and plays an essential role in regulating viral gene expression. In order to detect and localize IE180 in infected cells early on, this gene was cloned for overexpression, and the expressed products were applied to generate specific antibodies against IE180 protein. Two recombinant expression plasmids pN and pNB were constructed by cloning the IE gene onto pET 30a(+) expression vector via NcoI and BamHI sites. Plasmid pN contains the 1.8-kb NcoI-NcoI fragment of IE gene coding for the N-terminus of 616 amino acid residues, while pNB contains the 2.8-kb NcoI-Bam HI fragment coding for the rest of the IE180 protein. Both pN and pNB were transformed, respectively, into E. coli cells and produced large amounts of IE protein products during induction with 1 mM IPTG. The expressed IE proteins for pN and pNB were 60 kDa and 100 kDa in size, respectively. These expression products were purified and then used as antigens to immunize mice for preparing specific antibodies against PRV IE180 protein. The specificities of the mice immune sera were confirmed by their abilities to react with IE180 protein present in the PRV infected cells in the Western immunoblotting assay. Furthermore, immunoperoxidase staining of PRV infected cells undertaken with these antisera revealed the subcellular distribution of the IE proteins in the infected cells and also demonstrated their transportation from the cytoplasm to the nucleus during infection.

Animals↗

The presence of RNA splicing signals in the cDNA construct of the E2 gene of classical swine fever virus affected its expression.

E2 is the major neutralizing antigen for classical swine fever virus (CSFV) infection. Previously, we have cloned and sequenced the E2 cDNA of Taiwan strain p97 by the reverse transcription-polymerase chain reaction (RT-PCR) method from CSFV-infected tissue. The presence of RNA splicing donor and acceptor sites were found in the cDNA sequence. In this study, transfection of E2 cDNA into mammalian cells resulted in the production of a spliced RNA. Site-directed mutagenesis of the donor and acceptor sites prevented the RNA splicing event and generated a full length transcript in COS7 cells. Although the spliced E2 transcript has not been reported in natural infection of CSFV, this study suggested that the potential splicing sites affected the E2 gene expression when the plasmid-based E2 gene was introduced into mammalian cells.

Amino Acid Sequence↗