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B Qiang

Publications and source records attributed to B Qiang.

13 recordsLinked to original sources

Crystallization and preliminary X-ray analysis of a Trx domain of human thioredoxin-like protein.

The Trx domain of human thioredoxin-like protein has been purified and crystallized using ammonium sulfate as precipitant. The crystal belongs to space group C2, with unit-cell parameters a = 87.5, b = 48.5, c = 29.8 A, beta = 99.59 degrees. It has one molecule per asymmetric unit and diffracts beyond 2.2 A under cryoconditions (100 K) using an in-house Cu rotating-anode X-ray generator.

Crystallization↗

ASH2L: alternative splicing and downregulation during induced megakaryocytic differentiation of multipotential leukemia cell lines.

Abstract Drosophila ash2 is a member of the trxG gene super family, some human homologues of which are involved in hematopoiesis and leukemia. We report here the identification of the human homologue of Drosophila ash2 and its alternative splicing isoform, ASH2L1 and ASH2L2. ASH2L proteins are 60% homologous to Drosophila ash2. ASH2L also has a zinc finger motif (C2C2) although it is not identical to that in ASH2. Expression profile analysis showed that the amount of ASH2L transcripts is extremely high in fetal liver, testis, and leukemia cell lines with erythroid and megakaryocytic potential such as K562, Hel, and Dami. We treated these cells with differentiation inducers phorbol ester and hemin. We found that ASH2L is downregulated rapidly and dramatically in K562, Hel, and Dami cells during phorbol ester induced differentiation with megakaryocytic features. However, its expression is maintained at a high level during erythroid differentiation of K562 cells induced with hemin. These results suggest that ASH2L plays a role in hematopoiesis and is associated with some special kinds of leukemia.

Alternative Splicing↗

DSPP mutation in dentinogenesis imperfecta Shields type II.

We identified a nonsense mutation (Gln45stop) in exon 3 of the dentin sialophosphoprotein (DSPP) gene in a Chinese family with dentinogenesis imperfecta Shields type II (DGI-II), in which the affected members showed discoloration and severe attrition of their teeth, with obliterated pulp chambers.

Asian People↗

Confirmation of susceptibility gene loci on chromosome 1 in northern China Han families with type 2 diabetes.

OBJECTIVE: To confirm previous effort to identify type 2 diabetes susceptibility genes in a Northern Chinese population by conducting a new genome scan with both an increased number of type 2 diabetes families and a new set of microsatellite markers within the previously localized regions. METHODS: A genome scan method was applied. After multiplexed PCR, electrophoreses, genescan and genotyping analysis, we obtained size information for all loci, and then a further study was done by both parametric and non-parametric linkage analysis to investigate the P values and Z values of these loci. RESULTS: We surveyed 34 microsatellite markers which distributed within 5 regions along chromosome 1, and a total of 12,000 genotypes were screened. Evidence of linkage with diabetes was identified for 8 of the 34 loci. All P values of the 8 loci were lower than 0.05, and the highest Z value was 2.17. A very interesting finding is that all 5 markers at the p- terminal 1p36.3-1p36.23 region, spanning a long range of 16.9 cM, were identified to have a low P value of less than 0.05, which suggests that this region may contain multiple susceptibility genes. Regions 4 and 5 also confirmed the previous findings, and we narrowed these two regions to a 2.7 cM and 2.5 cM regions, respectively. CONCLUSIONS: We further confirmed the results gained in the previous genome-wide scan using an increased number of NIDDM families and a new set of microsatellite markers lying within the initially localized regions. The fact that all 5 loci at the p- terminal region displayed a low P value of less than 0.05 suggests that more than 1 susceptibility gene may reside in this region.

Chromosomes, Human, Pair 1↗

[Differentiation of human glioma cells BT-325 induced by sodium butyrate].

OBJECTIVE: To study the differentiation of human glioma cells BT-325 induced by sodium butyrate in vitro. METHODS: BT-325 cells were treated with 1 mmol/L sodium butyrate. Flow cytometry was used to analyze the cell cycle. Cell differentiation was identified by flow cytometry and Western blot analysis. RESULTS: After 6-8 days of sodium butyrate treatment, the differentiation characters could be observed distinctively, such as the reduced cell density, the increased cell size and the marked increase in cell process formation and cell-to-cell connection. At the same time, Western blot showed that the amount of glial fibrillary acidic protein was elevated after the sodium butyrate treatment. CONCLUSION: Human glioma cells BT-325 could be induced to differentiation by sodium butyrate.

Brain Neoplasms↗

[The identification and cloning of human ubiquitin binding enzyme cDNA].

OBJECTIVE: To identify and clone the gene encoding human ubiquitin binding enzyme and study its expression spectrum. METHODS: According to the sequence of human EST, which is highly homologous to the mouse ubiquitin conjugating enzyme (E2), primers used for library screening were synthesized to screen the human fetal brain cDNA library. The gene was analyzed by making use of bioinformatics and its expression spectrum was studied by using multiple-tissue Northern blot. RESULTS: Two cDNA clones encoding human ubiquitin conjugating enzyme were isolated and identified. Both containing the ubiquitin conjugating domain, they were 88% identical in amino acid sequences and found to be isoforms of each other with only an exon excised from the short sequence. They belonged to a highly conserved, and widely expressed E2 enzyme family. Northern blot showed that they were expressed exclusively in heart, placenta, and pancreas while no transcripts could be detected in brain, lung, liver, skeletal muscle, or kidney. CONCLUSIONS: The gene encoding human ubiquitin binding enzyme is expressed under both temporal and spatial control. As a key enzyme in the degradation of proteins, ubiquitin conjugating enzymes play a central role in the expression regulation on the level of post-translation.

Amino Acid Sequence↗

Isolation and identification of cDNA fragments and full-length cDNA differentially expressed in human glioblastoma cell line BT-325 versus all-trans retinoic acid induction .

OBJECTIVE: To investigate the differentiation process of the human glioblastoma cells. METHODS: Differential display reverse transcribed-PCR (DDRT-PCR) was used to isolate the genes differentially expressed in control and all-trans retinoic acid treated human glioblastoma cell line BT-325. Routine method of cDNA library screening was performed to clone full-length cDNA. RESULTS: Thirty-six RT-PCR reactions were performed and 64 differentially expressed fragments were recovered, amplified and cloned. Of them, 46 ESTs were sequenced and delivered into the GenBank. The homology comparison using BLAST algorithm revealed that 22ESTs are highly homologous with the known genes and many of them play important roles in the cell differentiation progress. A dot-blot hybridization was conducted to certify the differentiation expression. The result showed that 27 EST clones are expressed at different level in control and all-trans retinoic acid treated BT-325 cells. A full-length cDNA was cloned using the EST-HGBB098. CONCLUSION: DDRT-PCR was a simple and effective method to serially analyze the differentially expressed genes.

Amino Acid Sequence↗

Alteration in enterocyte gene expression may explain structural and functional changes following glutamine supplemented parenteral nutrition.

Following extensive bowel resection, the intestinal tract undergoes a variety of adaptive responses to enhance bowel function. The purpose of this study was to determine the effect of glutamine-supplemented parenteral nutrition on mucosal cellularity and gut function. In addition, enterocyte gene expression of two relevant systems was also characterized and related to the structural and functional changes that occurred. Male Wistar rats underwent a 60% small bowel resection and jugular vein catheterization and were randomized into two groups. The control group (n = 10) received a standard intravenous nutritional solution and the study group (n = 10) received a similar solution but enriched with alanylglutamine dipeptide. After 7 days blood was taken for amino acid analysis, and bowel was harvested to determine mucosal morphology and expression of mucosal cell glutaminase and IGF-I mRNA. Mesentery lymphnodes were cultured to determine the presence of bacteria and thus access bacteria translocation. Serum glutamine concentration and mucosal architecture were maintained in the study group compared to the controls. Seventy percent of lymphnodes were cultured positive in control vs. only 20% in the study group (P < 0.05). Jejunal mucosal glutaminase and ileum mucosal IGF-I mRNA increased twofold and threefold respectively compared to control animals. Parenteral nutrition supplemented with alanyl-glutamine dipeptide supports mucosal cellularity and regional immune function in rodents following intestinal resection, These alterations are associated with enhanced enterocyte expression of glutaminase and IGF-I. These changes may facilitate the structural and functional alterations which were observed in the glutamine treated animals.

Animals↗

[Differential display analysis of human fetal brain mRNAs and isolation of brain-specific novel ESTs].

Using the differential display technique (DDRT-PCR) originally developed by Liang and Pardee, we tried to isolate the stage-specific or tissue-specific genes in the developing human neural system (brain). With about fifty sets of arbitrary primers and anchored primers, DDRT-PCR was carried out to analyze the differentially expressed mRNAs between human fetal brains of different developmental stage or different parts of human fetal brain at the same developmental stage. About one hundred bands containing cDNA fragments of differential interest were cut out from the polyacrylamide gel, thirty-four of which were cloned and sequenced. They were accepted as novel cDNA sequences by GeneBank. In order to check the feasibility of DDRT-PCR, three of the thirty-four cDNA sequences were randomly chosen as probes for further analysis by dot blot RNA hybridization, and two proved to be specifically expressed in human brain.

Brain Chemistry↗

[Construction of poliovirus cDNA chimera with (NKNDD)n and (NANP)n].

Oligonucleotides encoding one copy of NKNDD, containing a P.f. B epitope NKND, and two copies of CSP repeated B epitope NANP were synthesized. After self-ligation, NKNDD and (NANP)2 were cloned into the intermediate vector pSKMM. Series of clones with different copies of NKNDD and NANP were identified. (NKNDD)n/MM with three, four, five, eight copies of NKNDD and (NANP)n/MM with four, six copies of NANP were chosen. Then (NKNDD)n and (NANP)n of these recombinants were recovered respectively and finally inserted into the N-Ag I site of poliovirus type I Mahoney strain full-length cDNA, which is contained in the expression plasmid pSV202H+. As using semi-quantitative hybridization in identifying tranformants, the procedure in our experiment for cloning different copies of NKNDD and NANP was greatly simplified.

Animals↗

Intervening sequences in an Archaea DNA polymerase gene.

The DNA polymerase gene from the Archaea Thermococcus litoralis has been cloned and expressed in Escherichia coli. It is split by two intervening sequences (IVSs) that form one continuous open reading frame with the three polymerase exons. To our knowledge, neither IVS is similar to previously described introns. However, the deduced amino acid sequences of both IVSs are similar to open reading frames present in mobile group I introns. The second IVS (IVS2) encodes an endonuclease, I-Tli I, that cleaves at the exon 2-exon 3 junction after IVS2 has been deleted. IVS2 self-splices in E. coli to yield active polymerase, but processing is abolished if the IVS2 reading frame is disrupted. Silent changes in the DNA sequence at the exon 2-IVS2 junction that maintain the original protein sequence do not inhibit splicing. These data suggest that protein rather than mRNA splicing may be responsible for production of the mature polymerase.

Amino Acid Sequence↗

High-level expression of recombinant protein A in Escherichia coli.

A high-level expression plasmid pPA-3 was constructed, which yielded up to 20% of soluble cell proteins as recombinant Protein A in E. coli DH5 alpha strain by heat shock induction. The recombinant Protein A contained only the five domains of native Protein A that bind with the Fc part of IgG. The molecular weights of the recombinant Protein A expressed in E. coli were determined to be 33kDa, 32.2kDa, 29.5kDa and 28.6kDa by SDS-PAGE and Western-blotting. The diversity of the molecular weights may be due to proteolysis, and a possible cleavage site is proposed. Some of the protein was purified with coupled human IgG by one-step affinity chromatography. The reactivity of the protein was compared with that of native Protein A and found that this protein could bind with more IgG than native Protein A in equal quantities of proteins.

Amino Acid Sequence↗