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Biomedical subjects

G Chu

Publications and source records attributed to G Chu.

16 recordsLinked to original sources

Bag model for DNA migration during pulsed-field electrophoresis.

A model for pulsed-field electrophoresis was developed by picturing large DNA as a deformable "bag" that (i) moves with limiting mobility in a continuous electric field, (ii) adopts an orientation aligned with the field direction, and (iii) reorients after a change in field direction in a size-dependent manner. The model correctly predicted the resolution of large DNA in a pulsed field including the surprising phenomena of mobility inversion, lateral band spreading, and improved resolution for obtuse angles. A simple parametrization agreed with observations of two completely different aspects of DNA behavior: bulk mobility as measured during gel electrophoresis and molecular reorientation as measured by linear dichroism. The model also provides quantitative guidelines for setting experimental parameters in pulsed-field electrophoresis experiments.

DNA

Enhanced detection of the t(14;18) translocation in malignant lymphoma using pulsed-field gel electrophoresis.

The t(14;18) chromosomal translocation that results in the juxtaposition of the bcl-2 proto-oncogene with the heavy chain JH locus is a common cytogenetic abnormality in human lymphoma. In particular, it is seen in about 85% of follicular lymphoma (FL) and up to one-third of diffuse lymphomas (DL). The chromosome 18 breakpoints have been shown to cluster into two regions. The major breakpoint region (mbr) within the 3' untranslated region of the bcl-2 proto-oncogene accounts for approximately 60% of the cases and the minor cluster region (mcr) 30 kb 3' of bcl-2 accounts for approximately 25% of the breakpoints. Because of variability in the position of the breakpoint, detection of the t(14;18) by Southern blot analysis provides an important clonal marker for the tumor. However, conventional electrophoresis (CE) fails to detect the translocation in 15% to 25% of cases. We have applied pulsed-field gel electrophoresis (PFGE) to the detection of the t(14;18) in a series of lymphoma prospectively analyzed by CE, polymerase chain reaction (PCR), and cytogenetic analysis. PFGE readily detected t(14;18) rearrangements as indicated by comigration of bands detected with probes for the mbr region (chromosome 18) and the JH locus (chromosome 14). In a series of 40 patients with FL, this method proved to be the most comprehensive for detection of the translocation compared with standard methods; in fact, in one case only PFGE was able to detect the chromosomal rearrangement. Ten percent of the FL cases were negative by all methods tested. In a separate analysis of matched tissue specimens from cases of tumor progression of FL to diffuse lymphoma, PFGE detected a common t(14;18) rearrangement confirming a clonal origin in seven of seven cases, whereas CE detected a rearrangement in only three of seven cases. Overall, PFGE was able to detect a translocation in 8 of 12 cases that were negative by CE and four of eight negative by cytogenetic analysis. In conclusion, PFGE analysis is more comprehensive than CE, PCR, and cytogenetic analysis for the detection of the t(14;18) breakpoint in tissue biopsies of malignant lymphoma.

Chromosome Mapping

Separation of large DNA by a variable-angle contour-clamped homogeneous electric field apparatus.

A device for separating large DNA molecules by pulsed field electrophoresis is described. Based on the principles of contour-clamped homogeneous electric fields (CHEF), it uses feedback to clamp voltages in a square electrode array, which is compact and inexpensive to construct, adaptable to computer control, and reorients the electric field by arbitrary angles. To illustrate its capabilities, pulsed fields with reorientation angles ranging from 90 to 140 degrees were used to separate DNAs of 4.7 and 5.7 megabases by up to four band-widths in 20 h. The combination of accessible technology and complete control of the electric field should facilitate the search for ways to resolve even larger DNA.

Buffers

Bone-inducing implants in head and neck surgery: an experimental study.

The use of autologous bone for head and neck reconstruction requires a separate harvesting procedure which provides limited quantities of bone that may become infected or undergo resorption after being implanted. In this study, a collagen/ceramic carrier containing osteoinductive factor extract (OFE) was used in a rabbit facial augmentation model. Bone-inducing activity of these implants were evaluated in subcutaneous, intramuscular, and subperiosteal sites. Implants with (test) and without OFE (control) were placed on opposite sides of the face in 40 rabbits, and were harvested at 21 days. Bone formation was evaluated by implant alkaline phosphatase determinations and histomorphometry. Osteoblastic activity, bone formation, and preservation of facial augmentation were noted in the OFE implants, showing maximal bone formation when implanted subperiosteally. Control (no OFE) and demineralized bone implants showed no bone formation. Before these implants can be used clinically, novel bone-inducing factors must be manufactured by recombinant deoxyribonucleic acid (DNA) methodology to verify activity of the homogeneous molecule which would be free of other proteins or infectious agents.

Alkaline Phosphatase

Transnasal butorphanol: a new method for pain relief in post-cesarean section pain.

This study was undertaken to evaluate the efficacy and the safety of transnasal butorphanol (TNB) compared to intravenous butorphanol (IVB) in 186 patients experiencing moderate to severe post-cesarean section pain. Patients were randomly assigned to five groups in a double-blind fashion: Group I (n = 37) received 2 mg IVB, Group II (n = 38) 2 mg TNB, Group III (n = 36) 1 mg TNB followed by a repeat dose of 1 mg TNB at 60 min, Group IV (n = 38) 0.5 mg TNB followed by a repeat dose of 0.5 mg at 60 min, and Group V (n = 37) received placebo. All administrations were double dummy. Pain intensity and relief were noted and the incidence of side effects was recorded. Remedication with the same study drug was allowed up to 72 h. Onset of analgesia was more rapid in the 2 mg IV group compared to the three TN groups: 5 min vs 15 min, respectively. However, the 2 mg and the 1-1 mg TN groups had a longer duration of analgesia, approximately 4.5 h, compared to 3.0 h for the 2 mg IV group (P less than 0.05). Somnolence was dose related and was the most frequent side effect, and was less frequent when the TN dose was divided into 2 doses administered 1 h apart. Multiple doses of TNB and IVB were safe and clinically acceptable up to 3 days at all doses studied. There were no incidences of nasal mucosa irritation, or cardiovascular or respiratory depression. It is concluded that transnasal butorphanol represents a safe and effective alternative to injectable butorphanol for post-cesarean section pain and offers a better and longer duration of analgesia compared to IV butorphanol. The optimum dose seems to be 2 mg TN butorphanol and it is tolerated better when divided into 1 mg increments, given 1 h apart.

Administration, Intranasal

Pulsed-field electrophoresis of megabase-sized DNA.

Success in constructing a physical map of the human genome will depend on two capabilities: rapid resolution of very large DNA and identification of migration anomalies. To address these issues, a systematic exploration of pulsed-field electrophoresis conditions for separating multimegabase-sized DNA was undertaken. Conditions were found for first liberating and then separating DNA up to 6 megabases at higher field strengths and more rapidly than previously reported. In addition, some conditions for transversely pulsed fields produced mobility inversion, in which increased size was accompanied by faster rather than slower migration. Importantly, anomalous migration could be identified by the presence of lateral band spreading, in which the DNA band remained sharply defined but spread laterally while moving down the gel. These results have implications for both practical applications and theoretical models of pulsed-field electrophoresis.

Blotting, Southern

Cisplatin-resistant cells express increased levels of a factor that recognizes damaged DNA.

Cancer treatment with the drug cisplatin is often thwarted by the emergence of drug-resistant cells. To study this phenomenon, we identified two independent cellular factors that recognize cisplatin-damaged DNA. One of the two factors, designated XPE binding factor, is deficient in complementation group E of xeroderma pigmentosum, an inherited disease characterized by defective repair of DNA damaged by ultraviolet radiation, cisplatin, and other agents. Human tumor cell lines selected for resistance to cisplatin showed more efficient DNA repair and increased expression of XPE binding factor. These results suggest that XPE binding factor may be responsible, at least in part, for the development of cisplatin resistance in human tumors and that the mechanism may be increased DNA repair.

Cell Line

How cells recognize damaged DNA: clues from xeroderma pigmentosum and yeast.

Xeroderma pigmentosum (XP) is characterized by the defective excision repair of DNA damaged by many agents, including ultraviolet radiation (UV) and cisplatin. We have identified a factor in human cells that recognizes multiple forms of DNA damage and is absent in XP complementation group E. Denoted XPE binding factor, it is expressed at five-fold higher levels in tumor cell lines resistant to the antitumor drug cisplatin. Finally, although it does not have photoreactivating activity, XPE binding factor shares multiple binding characteristics with yeast photolyase, suggesting that it is the human homolog of photolyase.

Cells, Cultured

Evidence that xeroderma pigmentosum cells from complementation group E are deficient in a homolog of yeast photolyase.

Xeroderma pigmentosum (XP) patients are deficient in the excision repair of damaged DNA. Recognition of the DNA lesion appears to involve a nuclear factor that is defective in complementation group E (XPE binding factor). We have now identified a factor in the yeast Saccharomyces cerevisiae that shares many properties with XPE binding factor, including cellular location, abundance, magnesium dependence, and relative affinities for multiple forms of damaged DNA. Yeast binding activity is dependent on photolyase, which catalyzes the photoreactivation of pyrimidine dimers. These results suggest that yeast photolyase may also function as an auxiliary protein in excision repair. Furthermore, XPE binding factor appears to be the human homolog of yeast photolyase.

Amino Acid Sequence

Xeroderma pigmentosum group E cells lack a nuclear factor that binds to damaged DNA.

The disease xeroderma pigmentosum is characterized by deficient repair of damaged DNA. Fusions of cells from different patients have defined nine genetic complementation groups (A through I), implying that DNA repair in humans involves multiple gene products. In this report, an extension of the gel electrophoresis binding assay was used to identify at least one nuclear factor that (i) bound to DNA damaged by ultraviolet radiation or the antitumor drug cisplatin, but (ii) was notably absent in cells from complementation group E. Therefore, the factor appears to participate in a versatile DNA repair pathway at the stage of binding and recognition.

Cell Line

Electroporation for the efficient transfection of mammalian cells with DNA.

A simple and reproducible procedure for the introduction of DNA into mammalian cells by electroporation is described. The parameters involving the cells, the DNA, and the electric field are investigated. The procedure has been applied to a broad range of animal cells. It is capable of transforming more than 1% of the viable cells to the stable expression of a selectable marker.

Acetyltransferases

Reappraisal of prick test to tree and weed antigens.

Although 3+ or 4+ prick test reactions to olive tree or Russian thistle are valid, the RAST values to these antigens are significantly lower than those in patients with similar reactions to grass antigens, suggesting that nonimmunologic factors are partially responsible for the skin test reactions to the tree and weed antigens.

Antigens

Three-dimensional imaging in the position camera using Fourier techniques.

A mathematical algorithm for three-dimensional reconstructions in the positron camera is described. Fouier techniques have been adapted for use in analysing the data from cameras with limited detector configuration. Noise instabilities from random fluctuations in the data are discussed and treated. The technique is tested on a computer-generated phantom and the results are presented. Ways of incorporating the effects of Compton scattering and detector response into the algorithm are discussed. It is concluded that the method is feasible and practical for obtaining accurate reconstructions.

Brain Neoplasms

Correlation between protein kinase-mediated stimulation of calcium transport by cardiac sarcoplasmic reticulum and phosphorylation of a 22000 dalton protein.

Increases in protein kinase-catalyzed phosphorylation of a 22000 dalton protein correlated closely with increases in phosphate-facilitated calcium transport measured concurrently in canine cardiac sarcoplasmic reticulum under similar conditions in the presence of varying concentrations of bovine cardiac protein kinase. A correlation coefficient of 0.93 and a P value of less than 0.001 were obtained. Protein kinase-catalyzed phosphorylation of the 22000 dalton microsomal protein may mediate the abbreviation of systole seen in the mammalian heart in response to inotropic agents like catecholamines.

Animals

Pulsed field electrophoresis in contour-clamped homogeneous electric fields for the resolution of DNA by size or topology.

The electrophoretic separation of DNA molecules can be controlled by the use of contour-clamped homogeneous electric fields (CHEF). This paper describes an improved CHEF apparatus with negligible distortion in the electric fields. When the electric field was periodically reoriented, DNA molecules up to 2 megabases were resolved in a highly uniform manner. Furthermore, when the field strength was changed with orientation, topological variations of conventional-sized DNA molecules were resolved.

DNA