PubMed Health⌕ Search

Biomedical subjects

Xiang-Fu Wu

Publications and source records attributed to Xiang-Fu Wu.

At least 19 recordsLinked to original sources

Expression, purification and characterization of human GM-CSF using silkworm pupae (Bombyx mori) as a bioreactor.

To date, many recombinant proteins have been expressed in Bombyx mori cells or silkworm larvae, apart from in pupae. Silkworm pupae may be more suitable for the expression of heterologous proteins as a bioreactor. If maintained at an appropriate temperature, silkworm pupae could be inoculated with recombinant baculovirus for the expression of a protein of interest. In this study, human granulocyte-macrophage colony-stimulating factor was successfully expressed in silkworm pupae using B. mori nucleopolyhedrovirus, purified and characterized with respect to its physico-chemical properties. The target protein expressed had an apparent molecular mass of 29 kDa and an isoelectric point of 5.1. The protein was purified using three chromatographic steps with a final recovery of 10.3%. Finally, approximately 3.5mg of the protein was obtained with a biological activity of up to 8.4 x 10(6) cfu mg(-1). The results of this study suggest that silkworm pupae represent a convenient and low-cost bioreactor for the expression of heterologous proteins.

Animals↗

Recombinant functional human lactoferrin expressed in baculovirus system.

Human lactoferrin (hLf) is a multifunctional iron-binding glycoprotein. In this study, we amplified hLf cDNA by reverse transcription-polymerase chain reaction from normal human mammary gland. The nucleotide sequence of the hLf was identical to the known hLf. We constructed a recombinant virus, vBm-hLf, harboring the hLf gene and exploited the BmN cells as host to produce recombinant human lactoferrin (rhLf). It was found that a recombinant protein with a molecular mass of approximately 78 kDa was expressed. Approximately 13.5 microg rhLf was purified from 1-2x10(5) BmN cells infected by vBm-hLf and the rhLf proved to be biologically active. This method established in our study will pave the way for efficient production of rhLf for further application of this protein in the future.

Animals↗

High level expression of functionally active human lactoferrin in silkworm larvae.

In this paper, recombinant human lactoferrin (rhLf) was expressed very well using Bombyx mori nuclear polyhedrosis baculovirus expression system. Infection of silkworm larvae with recombinant virus, vBm-hLf, the rhLf was efficiently secreted into larvae hemolymph and the concentration of product purified was about 65 microg/ml. The isolated rhLf molecular mass was approximately 78 kDa, lower than that of the human lactoferrin (hLf) standards, which may be due to incomplete glycosylation or protein degradation. Furthermore, the rhLf was characterized and its biological activities were evaluated by in vivo bioassay using dextran sodium sulfate (DSS)-induced colitis mouse model that mimics some characteristics of colitis disease in human. We conclude that silkworm expression system can be used successfully to express functional human lactoferrin.

Animals↗

The C-terminal appended domain of human cytosolic leucyl-tRNA synthetase is indispensable in its interaction with arginyl-tRNA synthetase in the multi-tRNA synthetase complex.

Human cytosolic leucyl-tRNA synthetase is one component of a macromolecular aminoacyl-tRNA synthetase complex. This is unlike prokaryotic and lower eukaryotic LeuRSs that exist as free soluble enzymes. There is little known about it, since the purified enzyme has been unavailable. Herein, human cytosolic leucyl-tRNA synthetase was heterologously expressed in a baculovirus system and purified to homogeneity. The molecular mass (135 kDa) of the enzyme is close to the theoretical value derived from its cDNA. The kinetic constants of the enzyme for ATP, leucine, and tRNA(Leu) in the ATP-PP(i) exchange and tRNA leucylation reactions were determined, and the results showed that it is quite active as a free enzyme. Human cytosolic leucyl-tRNA synthetase expressed in human 293 T cells localizes predominantly to the cytosol. Additionally, it is found to have a long C-terminal extension that is absent from bacterial and yeast LeuRSs. A C-terminal 89-amino acid truncated human cytosolic leucyl-tRNA synthetase was constructed and purified, and the catalytic activities, thermal stability, and subcellular location were found to be almost identical to native enzyme. In vivo and in vitro experiments, however, show that the C-terminal extension of human cytosolic leucyl-tRNA synthetase is indispensable for its interaction with the N-terminal of human cytosolic arginyl-tRNA synthetase in the macromolecular complex. Our results also indicate that the two molecules interact with each other only through their appended domains.

Adenosine Triphosphate↗

Cloning and identification of methionine synthase gene from Pichia pastoris.

Methionine synthase (MS) is grouped into two classes. Class One MS (MetH) and Class Two MS (MetE) share no homology and differ in their catalytic model. Based on the conserved sequences of metE genes from different organisms, a segment of the metE gene was first cloned from Pichia pastoris genomic DNA by PCR, and its 5' and 3' regions were further cloned by 5'- and 3'-rapid amplification of cDNA ends (RACE), respectively. The assembled sequence reveals an open reading frame encoding a polypeptide of 768 residues, and the deduced product shares 76% identity with MetE of Saccharomyces cerevisiae. P. pastoris methionine synthase (PpMetE) consists of two domains common to MetEs. The active site is located in the C-terminal domain, in which the residues involved in the interaction of zinc with substrates are conserved. Homologous expression of PpMetE in P. pastoris was achieved, and the heterologous expression of PpMetE in the S. cerevisiae strain XJB3-1D that is MetE-defective restored the growth of the mutant on methionine-free minimal media. The gene sequence has been submitted to GenBank/EMBL/DDBJ under accession No. AY601648.

5-Methyltetrahydrofolate-Homocysteine S-Methyltran↗

Expression, purification and sublocalization of SARS-CoV nucleocapsid protein in insect cells.

The causative agent of severe acute respiratory syndrome (SARS) is a previously unidentified coronavirus, SARS-CoV. The nucleocapsid (N) protein of SARS-CoV is a major viral protein recognized by acute and early convalescent sera from SARS patients. To facilitate the studies on the function and structure of the N protein, this report describe the expression and purification of recombinant SARS-CoV N protein using the baculovirus expression system. Recombinant hexa-histidine-tagged N protein with a molecular mass of 47 kD was produced in insect cells. Recombinant N protein was purified to near homogeneity by Ni2+-NTA affinity chromatography. In addition, we examined the subcellular localization of the N protein by confocal microscopy in Trichoplusia ni BT1 Tn 5B1-4 cells infected with recombinant baculovirus. The N protein was found localized in the cytoplasm as well as in the nucleolus. The purified recombinant N protein can be used in further functional study of SARS-CoV.

Animals↗

Expression of an antimicrobial peptide identified in the male reproductive system of rats.

Bin1b is a beta-defensins-like molecule originally isolated from the rat epididymis. Owing to its bactericidal activity, Bin1b may have therapeutic properties suitable for the treatment of sexually transmitted diseases. The amino terminus of the mature Bin1b peptide contains a conserved myristoylated Gly residue. We studied the requirement of the terminal myristoylated Gly residue in the bactericidal activity of Bin1b and found that the terminal myristoylated Gly residue is not essential for the bactericidal activity. In addition, we expressed the tandem repeats of Bin1b in Escherichia coli and found that two tandem repeats of Bin1b protein were successfully expressed. The bacterially expressed tandem Bin1b repeats may be used in a diverse array of biochemical and cell biological studies.

Amino Acid Sequence↗

Production of recombinant human osteoprotegrin from Trichoplusia ni cells and Bombyx mori larvae.

Human osteoprotegrin (OPG) and its truncated mutant OPG-280 and lengthened mutant OPG-Fc were constructed and successfully expressed in Trichoplusia ni cells and Bombyx mori larvae. Native SDS-PAGE and Western blot analysis revealed that OPG-Fc is present as a homodimer in Tn cells or B. mori larvae compared with OPG and OPG-280. Furthermore, the hypocalcemic effect assay showed that truncation of the C-terminal 100 residues OPG does not abolish the biological activity and Fc can be helpful in forming the OPG homodimer with improved biological activity.

Animals↗

[Research on TALF expression in Escherichia coli].

The expression of cDNA encoding Tachyleus auti-lipoposaccharide (LPS) factor, which is of interest for use as a potential inhibitor of the common core subunit of Gram-negative bacterial endotoxin. First, the TALF gene was inserted into expression vectors pGEX-4T-2, pET22b and pET28a to construct recombinant expression plasmids. The recombinant plasmids were transformed to E. coli BL21 (DE3) and the expression of TALF was examined. Results show that TALF in pET22b and pET28a vectors can't be expressed. Only the fusion protein GST-TALF was expressed in E. coli BL21 existing as inclusion bodies. From 1 liter of culture, about 4mg of fusion protein GST-TALF with 91% purity was finally obtained. No apparent bactericidal activity and LPS neutralizing activity of the fusion protein GST-TALF were found. After digested with thrombin, the fusion protein GST-TALF exhibited strong bactericidal activity and LPS neutralizing activity.

Antimicrobial Cationic Peptides↗

Human mitochondrial leucyl-tRNA synthetase with high activity produced from Escherichia coli.

The processing of human mitochondrial leucyl-tRNA synthetase had been previously investigated in insect cell. In the present work, the gene encoding human mitochondrial leucyl-tRNA synthetase with the same N-terminus as that processed in the mitochondria of insect cell was cloned and expressed in Escherichia coli. The enzyme was purified by affinity chromatography on Ni-NTA column. About 6 mg of human mitochondrial leucyl-tRNA synthetase was obtained from 1 liter of culture. The specific activity of the purified enzyme is 127.7 units/mg, the highest activity of the reported results; this enzyme has the potential for characterizing the mitochondrial tRNA mutants associated with some human mitochondrion-related neuromuscular disorders. The kinetic constants for three substrates: leucine, ATP, and E. coli tRNA1Leu (CAG) in the leucylation reaction are also reported herein.

Electrophoresis, Polyacrylamide Gel↗

Promoter activities in the baculovirus envelope glycoprotein gp64 gene.

Baculovirus GP64 envelope glycoprotein is a specific major component of the envelope of the budded virus and is involved in virus entry into the host cells by endocytosis. For promoter activity analysis in the baculovirus gp64 gene, two DNA fragments containing 437 and 439 bp upstream of 5' ends of the BmNPV and AcMNPV gp64 ORF were amplified by polymerase chain reaction and cloned, respectively. The sequence analysis indicated that two gp64 genes have both early (CAGT) and late (A/GTAAG) transcriptional start sites. By use of the plasmids with a reporter luciferase gene (Luc) driven by gp64 promoter to transfect insect cells, transient expression assay showed that pBmgp64Luc had high expression levels in permissive Bm-N cells and very low levels in non-permissive Sf-21 cells, while pAcgp64Luc had relatively high expression levels both in permissive Sf-21 cells and in non-permissive Bm-N cells. Furthermore, the transcription of both gp64 promoters appeared to be transactivated by 2.4-4 times in corresponding permissive cells by corresponding viral factors, separately. By inserting BmNPV homologous region-3 (hr3) into the downstream of luciferase reporter gene driven by gp64 promoter, it enhanced transcription from both gp64 promoters by 13 - 22 times in Bm-N cells and over 7000 - 14,000 times in Sf-21 cells, respectively. In the presence of BmNPV hr3, correspondingly, the viral factors transactivated the transcriptional activity from two promoters by about 73 - 78 times in corresponding permissive cells. It suggested that BmNPV hr3 plays an important role in co-activation with viral factors onto the gp64 promoter besides the functions of viral DNA origin and enhancer.

Animals↗

[Expression of a human ribonuclease inhibitor variant in Escherichia coli and silkworm insect cell (Bombyx mori)].

Ribonuclease inhibitor (RI) is an acidic 50 kD protein with a high content of leucine and cysteine residues. RI inhibits RNases of the pancreatic type. A variant of RI was cloned from human fetal liver cDNA library by polymerase chain reaction (PCR). Compared with the reported RI, only two variations Arg(359)Ala and Leu(365)Pro were found in RIv amino acid sequence. Recombinant RIv has been expressed both in Escherichia coli and silkworm insect cells (Bombyx mori). The recombinant RIv exhibited inhibition activity on ribonucleolytic activity of RNase A in vitro system.

Animals↗

[Expression of phytase gene in Bombyx mori].

Phytase gene of Aspergillus niger 963 was cloned into baculovirus transfer vector. DNA of the recombinant vector was co-transfected with Bm-BacPAK6 DNA into BmN cells, and recombinant virus was selected by plaque assays. The recombinant virus was identified by Dot blot and Southern-blot with the specific probe for phytase gene. Phytase gene was expressed in silkworm larvae and pupae. The expression product was 1.43 g/L haemolymph for silkworm larvae and 1.90 g/L haemolymph for pupae, respectively. The enzymic characteristicses of phytase expressed in baculovirus-expression system were studied in this paper.

6-Phytase↗

Expression and functional analysis of an inhibitor of apoptosis protein from Trichoplusia ni.

An inhibitor of the apoptosis protein (IAP) family gene from Trichoplusia ni, Tn-IAP1v, a variant of lepidopteran Tn-IAP1, was cloned by RT-PCR. There are six single nucleotide polymorphisms between the two Tn-IAP1 variants, resulting in three predicted single amino acid polymorphisms. With the GST fusion expression system, soluble recombinant Tn-IAP1v was highly expressed in Escherichia coli and then purified by affinity chromatography. Caspase inhibition assays indicated that recombinant Tn-IAP1v could specifically inhibit human caspase-9 in vitro instead of caspase-3, -7, and -8, which was further confirmed by the observation that recombinant Tn-IAP1v can directly bind caspase-9 in the protein pull-down assay. These results suggested that Tn-IAP1v might serve as an initiator caspase inhibitor in vivo in the conserved mitochondria apoptotic pathway.

Animals↗

Cell surface antigen CD109 is a novel member of the alpha(2) macroglobulin/C3, C4, C5 family of thioester-containing proteins.

Cell surface antigen CD109 is a glycosylphosphatidylinositol (GPI)-linked glycoprotein of approximately 170 kd found on a subset of hematopoietic stem and progenitor cells and on activated platelets and T cells. Although it has been suggested that T-cell CD109 may play a role in antibody-inducing T-helper function and it is known that platelet CD109 carries the Gov alloantigen system, the role of CD109 in hematopoietic cells remains largely unknown. As a first step toward elucidating the function of CD109, we have isolated and characterized a human CD109 cDNA from KG1a and endothelial cells. The isolated cDNA comprises a 4335 bp open-reading frame encoding a 1445 amino acid (aa) protein of approximately 162 kd that contains a 21 aa N-terminal leader peptide, 17 potential N-linked glycosylation sites, and a C-terminal GPI anchor cleavage-addition site. We report that CD109 is a novel member of the alpha 2 macroglobulin (alpha 2M)/C3, C4, C5 family of thioester-containing proteins, and we demonstrate that native CD109 does indeed contain an intact thioester. Analysis of the CD109 aa sequence suggests that CD109 is likely activated by proteolytic cleavage and thereby becomes capable of thioester-mediated covalent binding to adjacent molecules or cells. In addition, the predicted chemical reactivity of the activated CD109 thioester is complement-like rather than resembling that of alpha 2M proteins. Thus, not only is CD109 potentially capable of covalent binding to carbohydrate and protein targets, but the t(1/2) of its activated thioester is likely extremely short, indicating that CD109 action is highly restricted spatially to the site of its activation.

Amino Acid Sequence↗

High-level expression of human extracellular superoxide dismutase in Escherichia coli and insect cells.

Much is known about the physical properties of the Cu,Zn- and Mn-superoxide dismutases (SODs). However, the biochemical characteristics and pharmacological properties of extracellular (EC)-SOD have been severely limited due to difficulties in obtaining and purifying the enzyme. The EC-SOD cDNA was inserted into the Escherichia coli expression plasmid pET-28a(+) which contains the T7 promoter and transformed into the E. coli BL21(DE3). After induction with 1 mmol/L isopropyl beta-D-thiogalactoside, the recombinant human EC-SOD was highly expressed as inclusion bodies. SDS-PAGE analysis revealed that recombinant EC-SOD accumulated up to 26% of the total soluble protein of E. coli cells. The expression product was purified by a Ni(2+)-IDA-Sepharose 6B column. After the denaturing and refolding processes, the recombinant human EC-SOD retains the specific enzymatic activity of 920 U/mg of the purified product. The gene encoding human EC-SOD mature peptide was also inserted into the donor plasmid pFastBacHTb. After transposition, transfection, and amplification were performed, the recombinant baculoviruses infected the Tn-5B1-4 cells and EC-SOD was highly expressed in Tn-5B1-4 cells. SDS-PAGE and Western blot analysis revealed that the subunit molecular weight of the expression product is 28 kDa. Furthermore, recombinant human EC-SOD retains the enzymatic specific activity of 200 U/mg of the Tn-5B1-4 cell lysates.

Animals↗

Cloning of anti-lPS factor cDNA from Tachypleus tridentatus, expression in Bombyx mori larvae and its biological activity in vitro.

In this article we report the cloning and expression of a cDNA encoding Tachypleus anti-lipopolysaccharide (LPS) factor, which is of interest for use as a potential inhibitor of the common core subunit of Gram-negative bacterial endotoxins. First, two degenerate primers were designed based on the sequence homology of anti-LPS factors purified from different species of horseshoe crab. The total RNA was extracted from amebocytes of Tachypleus tridentatus. The cDNA was then obtained by using the RT-PCR methods. Second, the cDNA of Tachypleus anti-LPS factor (TALF) was expressed in Bombyx mori larvae using baculovirus expression system, which showed a yield of up to 600 mg/L. Last, we determined the biological activity of the recombinant proteins by LPS neutralization assay and bacteriostatic assay in vitro.

Amino Acid Sequence↗

Cloning and high-level expression of scorpion toxin BmKITa1 in Escherichia coli and insect cells.

BmK ITa1 cDNA was cloned and highly expressed in E. coli and insect cell. SDS-PAGE and western blot analysis revealed that subunit molecular weight of expression products is about 40 kDa and 10 kDa respectively. The expression product purified by a Ni(2+)-IDA-sepharose 6B column was toxic for insect, which indicated that it was biologically activity. Furthermore, Quantitative estimation show that the biological activity of recombinant BmK ITa1 from Tn cells was more powerful than from E. coli.

Amino Acid Sequence↗