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Biomedical subjects

G M Jones

Publications and source records attributed to G M Jones.

At least 37 records · Page 2Linked to original sources

Restricted immunoglobulin variable region (Ig V) gene expression accompanies secondary rearrangements of light chain Ig V genes in mouse plasmacytomas.

The many binding studies of monoclonal immunoglobulin (Ig) produced by plasmacytomas have found no universally common binding properties, but instead, groups of plasmacytomas with specific antigen-binding activities to haptens such as phosphorylcholine, dextrans, fructofuranans, or dinitrophenyl. Subsequently, it was found that plasmacytomas with similar binding chain specificities not only expressed the same idiotype, but rearranged the same light (V(L)) and heavy (V(H)) variable region genes to express a characteristic monoclonal antibody. In this study, we have examined by enzyme-linked immunosorbent assay five antibodies secreted by silicone-induced mouse plasmacytomas using a broader panel of antigens including actin, myosin, tubulin, single-stranded DNA, and double-stranded DNA. We have determined the Ig heavy and light chain V gene usage in these same plasmacytomas at the DNA and RNA level. Our studies reveal: (a) antibodies secreted by plasmacytomas bind to different antigens in a manner similar to that observed for natural autoantibodies; (b) the expressed Ig heavy genes are restricted in V gene usage to the V(H)-J558 family; and (c) secondary rearrangements occur at the light chain level with at least three plasmacytomas expressing both kappa and lambda light chain genes. These results suggest that plasmacytomas use a restricted population of B cells that may still be undergoing rearrangement, thereby bypassing the allelic exclusion normally associated with expression of antibody genes.

Amino Acid Sequence↗

Analysis of vertical fluorescence resonance energy transfer from the surface of a small-diameter sphere.

Fluorescence resonance energy transfer (FRET) measurements have been used to analyze fluorophore separations in a number of varying geometries, including small particles and extended surfaces. This study focuses on the geometry created by a donor extended above the surface of a small sphere (radius < R0), where the acceptors are integrated into the sphere surface. The model of this geometry was based on an amphipathic molecule with its lipophilic region integrated into a detergent micelle and its hydrophilic region extending outward from the micelle surface, where the donor fluorophore is attached to the hydrophilic region of the molecule. Based on random acceptor incorporation into the micelle, a Poisson distribution was used to calculate the distribution of acceptor probes across the micelle population. The model converges to RET on a flat surface when the radius of the micelle exceeds 0.8 R0. The model was also used to simulate FRET data showing that the positions of donors above the micelle surface could be uniquely resolved. Experimental verification of the model was achieved in a sulfobetaine palmitate micelle with fluorescein isothiocyanate donors attached to detergent-solubilized lipopolysaccharide (LPS) and lipophilic Fast-DiI acceptors. The use of steady-state analysis allowed resolution of cases in which donors were located at different distances from the surface. Combining steady-state with excited-state lifetime analysis allowed resolution of cases where there was a combination of distances. Given the large number of biomolecules that interact with lipids, this approach may prove generally useful for defining molecular conformation.

Biophysical Phenomena↗

Factors affecting the success of human blastocyst development and pregnancy following in vitro fertilization and embryo transfer.

OBJECTIVE: To determine the factors affecting blastocyst development and pregnancy after IVF and ET. DESIGN: Retrospective analysis of data arising from a clinical trial. SETTING: Private in vitro fertilization clinic. PATIENT(S): Fifty-six patients aged < or = 40 years, undergoing IVF procedures for infertility, recruited specifically for blastocyst transfer. INTERVENTION(S): All zygotes were cultured to days 5 or 6 after insemination, and one to four of the most advanced blastocysts were transferred to the patient's uterus. MAIN OUTCOME MEASURE(S): Development of zygotes to blastocysts in vitro and pregnancy and implantation rates after ET. RESULT(S): Fifty-one percent of all zygotes developed to blastocysts. Significant positive correlation between the number of blastocysts formed was observed with the number of oocytes, pronuclear zygotes, and eight-cell embryos formed. There was a negative correlation with male factor infertility. By day 5 or 6, 93% of the patients had at least one blastocysts, and the clinical pregnancy rate per transfer was 43% and the implantation per embryo transferred was 25%. No other clinical factor significantly affected the number of blastocysts formed, pregnancy rate, or implantation rate. CONCLUSION(S): The numbers of oocytes, zygotes, and normally developing embryos in culture significantly affects the production of blastocysts in vitro. Male infertility significantly reduces blastocyst production. The number and the quality of the blastocysts transferred significantly influences clinical pregnancy rate.

Adult↗

Evolution of a culture protocol for successful blastocyst development and pregnancy.

A cell-free culture system was designed for human embryo development to the blastocyst stage by testing a range of culture conditions in a series of protocols. The culture system that was evolved has a brief 1 h exposure to spermatozoa and then culture of the pronucleate zygote for 2 days in IVF-50 medium. Two or three embryos were cultured together in 20 microl microdrops of medium under oil. Embryos were then regrouped and two or three at a similar stage were cultured together in 50 microl microdrops of Gardner's G2 medium under oil from days 3 to 5. Embryos were transferred to fresh G2 medium on day 5 and cultured for a further 1 or 2 days (day 6 or 7). No serum was used in any of the cultures. The embryo transfer medium and G2 medium were supplemented with human serum albumin. The zonae of all blastocysts to be transferred to patients were completely removed enzymatically. Using this protocol, 52% of zygotes developed to blastocysts and 34 out of 35 patients treated received 82 blastocysts and 11 morulae on day 5 or 6. Twenty-one fetal sacs with positive heartbeats (23% implantation rate) were detected in 13 ongoing pregnancies (38% pregnancy rate/transfer or 37%/patient treated). We anticipate that further improvements in embryo development and the selection of viable embryos can be achieved using this simple and effective culture system.

Adult↗

Oocyte maturation.

Primary oocytes recovered from small and growing follicles of > or = 3 mm in the ovaries of untreated women, can be matured in vitro, will fertilize and develop in vitro, and when transferred to the patient, develop to term. However, the implantation rate of cleaved embryos has been disappointingly low and when embryos are allowed to develop beyond the 4-cell in vitro, retardation of development and blockage is frequently observed, with relatively few embryos developing to blastocysts. We have devised new culture systems for human embryos to enable high rates of development of in-vivo matured oocytes to blastocysts within 5-6 days of culture, and high implantation rates of these blastocysts when they are transferred to the patients' uterus. These culture systems are now being used for in-vitro matured oocytes. In order to determine whether embryo developmental competence could be improved, a number of factors were examined. Treatment of patients with pure follicle stimulating hormone (FSH) early in the follicular phase, or treatment with oestrogen prior to oocyte recovery, had no apparent effect on any parameters of oocyte developmental competence. There was no indication that a medium made specifically for human oocyte maturation improved oocyte developmental competence. Nuclear and cytoplasmic changes in oocytes matured in vitro appear to be similar to that in vivo, although some lack of synchronization in completing maturation is evident. It is possible that follicles of < 10 mm diameter in the human contain developmentally-incompetent oocytes. However, the development to term and birth of normal babies from germinal vesicle stage oocytes recovered from small follicles and matured in vitro, suggests that further research will identify the factors necessary to improve embryo developmental competence. The application of immature oocyte collection (IOC) and in vitro maturation (IVM) as an alternative to ovulation stimulation with high doses of gonadotrophins for in-vitro fertilization (IVF), remains a priority for research in human medicine.

Animals↗

Indomethacin is a potent inhibitor of pristane and plastic disc induced plasmacytomagenesis in a hypersusceptible BALB/c congenic strain.

Continuous indomethacin (INDO) administration in the drinking water (10 to 20 microg/mL) profoundly inhibited plasmacytoma (PCT) development initiated by three 0.2- or 0.5-mL intraperitoneal (i.p.) injections of pristane in hypersusceptible BALB/c.DBA/2-Idh1-Pep3 congenic mice. The most effective inhibitions were obtained with continuous INDO treatment. When treatment was delayed until 50 to 60 days after the first pristane injection, there was approximately a 50% reduction in PCT incidence. The primary action of pristane is the induction of a chronic inflammation in the peritoneal connective tissues and the formation of a microenvironment where PCTs develop. INDO, a powerful inhibitor of prostaglandin synthases (cyclooxygenases 1 and 2), did not inhibit the formation of mesenteric oil granuloma nor the appearance of cells in this chronic inflammatory tissue carrying c-myc illegitimately joined to an Ig heavy chain switch region, ie, the t(12;15) chromosomal translocation. INDO inhibited PCT induction by the i.p. implantation of 21 x 2 mm polycarbonate discs. These solid objects predominantly induce the formation of a patchy fibroplastic tissue on contacting peritoneal surfaces. These and previous data indicate that indomethacin inhibits an intermediate stage in PCT development after the arrival of cells bearing the T(12;15) translocation in the oil granuloma and before these cells acquire transplantability to a pristane-conditioned host. The biological mechanism that explains how INDO inhibits PCT development is not yet established but appears to result from decreased production of prostaglandins in chronic inflammatory tissues (oil granuloma, fibroplasia), suggesting that prostaglandins play an active role in oil and solid plastic induced PCT formation.

Administration, Oral↗

Migration of cells with immunoglobulin/c-myc recombinations in lymphoid tissues of mice.

Recombinations between c-myc and immunoglobulin (Ig) sequences that typically occur in pristane-induced mouse plasmacytomas were detected in secondary lymphoid tissues from normal mice, chiefly in the gut-associated lymphoid tissue. Based on the analysis of recombination sequences as clonotypic markers, migration of c-myc recombination-positive cells was observed between Peyer's patches and into the intestine. Treatment of plasmacytoma-susceptible BALB/cAn mice with pristane induced proliferation and migration of these cells into mesenteric lymph node, spleen, and oil granuloma within 7 days. Plasmacytoma-resistant strains of mice (DBA/2N, C3H/HeJ, C57BL/6) differed in that (1) they harbored fewer clones (Ig/c-myc recombinations were detected in 33% of resistant mice versus 91% of BALB/cAn mice after pristane treatment); (2) Ig/c-myc-positive cells were rarely detected in the oil granuloma, and (3) c-myc recombined predominantly with the Ig alpha locus in BALB/cAn mice (72%), but with the Ig mu locus in DBA/2N and in C57BL/6 (67%). The results demonstrate that normal mice generate a large number of lymphocytes with aberrant c-myc in intestinal tissues without developing tumors.

Animals↗

Analysis of fluorescence lifetime and quenching of FITC-conjugated antibodies on cells by phase-sensitive flow cytometry.

Fluorescent antibodies are often used to measure the number of receptor sites on cells. The quantitative estimate of the number of receptor sites using this procedure assumes that the fluorescence intensity on a cell is proportional to the number of bound antibodies. Quenching may invalidate this assumption. For many fluorophores, intermolecular interactions and energy transfer between molecules in close proximity to one another results in self-quenching. This effect can occur in antibody probes with a high fluorochrome to protein (F/P) ratio. It can also occur due to close proximity antibodies relative to one another on a highly labeled cell surface. Since self-quenching is accompanied by a change in the fluorescence decay and a decrease in the fluorescence lifetime, it may be conveniently identified using fluorescence lifetime spectroscopy. In this paper we apply the phase-sensitive detection method to investigate the impact of self-quenching on fluorescence lifetimes by flow cytometry, using a model system consisting of FITC conjugated anti-mouse Thy1.2 antibodies bound to murine thymus cells. We show that in addition to the expected variation of lifetimes as a function of F/P ratio of the probes, the fluorescence lifetime diminishes also as a function of antibody labeling concentration on the cell surface. This is consistent with self-quenching effects expected at high densities of FITC molecules.

Animals↗

Detection of immunoglobulin/c-myc recombinations in mice that are resistant to plasmacytoma induction.

Interchromosomal recombinations between c-myc and immunoglobulin sequences can be found in preneoplastic lesions (oil granulomata) during pristane-induced plasmacytoma development in susceptible BALB/cAn mice. In this study we used a more sensitive approach, hybridization-enriched templates with nested PCR, to detect microclones with Ig alpha/c-myc recombinations in oil granulomata of susceptible and resistant mice. Recombinations were detected in as many as 73% (32/44) of plasmacytoma-susceptible BALB/cAn mice 30 days after an injection of pristane. Mice that are resistant to plasmacytoma induction can also harbor recombination-positive cells, but these are less frequent [2/20 DBA/2N, 8/20 (BALB/cAn x DBA/2N)F1, hereafter called CD2F1]. The clones in DBA/2N mice were small (< 400 cells), whereas in BALB/cAn, the oil granuloma harbored up to several thousand of these cells. We conclude that the molecular machinery for generating characteristic interchromosomal recombinations can be found in all strains of mice. Both the frequency of generating Ig alpha/c-myc recombinations and the expansion of recombination-positive cells are greater in susceptible mice than in resistant strains.

Animals↗

Fluorescence resonance energy transfer analysis of lipopolysaccharide in detergent micelles.

Bacterial endotoxins or lipopolysaccharides (LPS), cell wall components of gram-negative bacteria, are involved in septic shock. LPS consists of a lipid A tail attached to core and O-antigen polysaccharides, but little is known about the supramolecular structure of LPS in blood. We have developed an approach to locate donor and acceptor probes in sulfobetaine palmitate detergent micelles using steady-state and time-resolved fluorescence resonance energy transfer. C18-fluorescein and several LPS species of varying molecular weight labeled with fluorescein isothiocyanate (FITC-LPS) were the donor probes. Acceptor probes were 1,1-dilinoleyl-3,3,3',3'-tetramethyl indocarbocyanine perchlorate (Fast C18-Dil, Ro approximately 68 A), and octadecyl B rhodamine chloride (C18-Rhd, Ro approximately 58 A). With either acceptor, the transfer was of similar high efficiency when FITC-LPS Salmonella minnesota Re 595 (2,500 mol wt, lacking both core and O-antigen) or C18-fluorescein were the fluorescent donor probes. Thus, the donor FITC-LPS with short polysaccharide chain S. minnesota Re 595 and the control donor C18-fluorescein appear to be close to the micelle surface. The transfer efficiency decreased as the molecular weight of the LPS increased. Separation distances between the longest FITC-LPS, S. minnesota (20,000 mol wt, with a long O-antigen), and the micelle were estimated to be 1.5 Ro or more (approximately 100 A), consistent with an extended conformation for the longer O-antigen polysaccharide chain in the detergent.

Animals↗

Early recovery of the actin cytoskeleton during renal ischemic injury in vivo.

The actin cytoskeleton of proximal tubule cells is important for both the maintenance of membrane domains and attachment to neighboring cells and underlying substrata. Adenosine triphosphate (ATP) depletion during ischemic injury causes early alterations in the actin cytoskeleton, resulting in loss of membrane domains and cellular attachment. We examined the actin cytoskeleton during recovery from ischemic injury. As shown previously in cell culture studies, ATP depletion to 14% of control values from in vivo ischemia resulted in decreases in G-actin consistent with net polymerization of the cytoskeleton. After 20 minutes of recovery restored ATP levels to 24% of control values, percent G-actin increased back to control values, yet cytoplasmic actin polymerized with little evidence of apical recovery. After 120 minutes of recovery, ATP levels had increased to 48% of control values with little qualitative or quantitative change in actin polymerization from 20 minutes of recovery. When ATP levels recovered to 65% of control values at 360 minutes after ischemia, movement of F-actin back toward the apical surface was observed. These data, along with prior data using maleic acid, suggest that thresholds of cellular ATP may cause differing effects on distinct cellular actin pools. We conclude that actin cytoskeletal recovery occurs very early and may be necessary for reestablishment of polarity essential for normal reabsorptive functions.

Absorption↗

Genomic instability in B-cells and diversity of recombinations that activate c-myc.

Genetic rearrangements activating the proto-oncogene c-myc comprise a mandatory oncogenic step in plasma cell tumor development in BALB/cAnPt mice. In the majority of plasmacytomas, c-myc activating rearrangements take the form of reciprocal chromosomal translocations t(12;15) that juxtapose c-myc to the immunoglobulin heavy chain alpha locus (IgH alpha) in particular the switch alpha region (S alpha). The genetic basis for the prevalence of S alpha/c-myc recombinations in BALB/cAnPt plasmacytomas is not known but may be related to a hypothetical regional genomic instability of the c-myc and IgH alpha loci in BALB/cAnPt mice. We wished to test whether the genomic instability of both loci might be revealed by the diversity of genetic recombinations that can be observed in IgH alpha and c-myc. We employed PCR methods to detect new recombinations of c-myc and IgH alpha in the preneoplastic stage of plasma cell tumor development and found that c-myc can be joined to more genes or genomic regions than known before. This is indicative but does not formally prove a particular genomic instability of c-myc and IgH alpha in BALB/cAnPt B cells. Since defective DNA repair provides a mechanistic explanation for genomic instability, we measured the efficiency of repair in IgH alpha and c-myc using an assay that quantitates the removal of UV-induced pyrimidine dimers within specific genomic regions. We used plasmacytoma XRPC 24 as a model system and found that both IgH alpha and c-myc were poorly repaired, whereas c-abl, a proto-oncogene not related to conventional pristane-induced plasmacytoma-genesis, was efficiently repaired.

Animals↗

Transfer of HIV-1-specific cytotoxic T lymphocytes to an AIDS patient leads to selection for mutant HIV variants and subsequent disease progression.

An HIV-1-seropositive volunteer was infused with an expanded autologous cytotoxic T lymphocyte (CTL) clone directed against the HIV-1 nef protein. This clone was adoptively transferred to determine whether supplementing CTL activity could reduce viral load or improve clinical course. Unexpectedly, infusion was followed by a decline in circulating CD4+ T cells and a rise in viral load. Some of the HIV isolates obtained from the plasma or CD4+ cells of the patient were lacking the nef epitope. These results suggest that active CTL selection of viral variants could contribute to the pathogenesis of AIDS and that clinical progression can occur despite high levels of circulating HIV-1-specific CTLs.

Acquired Immunodeficiency Syndrome↗

Is the stepping test a specific indicator of vestibulospinal function?

We studied the effect of walking on a horizontally rotating disk (circular treadmill) on the stepping test in seven normal subjects. Subjects walked for 2 hours on the perimeter of the treadmill with eyes open while remaining stationary in space. Then, off the treadmill, they attempted to step in place with eyes closed for 50 paces without turning. All subjects exhibited post-treadmill turning in the same direction as that of the previous walking relative to the treadmill. Post-treadmill average angular velocities were 207 to 880 deg/min greater than pretreadmill values. No subject experienced any sensation of motion relative to ground or space. The stepping test may no longer be considered a specific indicator of vestibulospinal function.

Adult↗

DNA repair defects associated with chromosomal translocation breaksite regions.

Using an assay that measures the removal of UV-induced pyrimidine dimers in specific DNA sequences, we have found that the Pvt-1, immunoglobulin H-C alpha (IgH-C alpha), and IgL-kappa loci are poorly repaired in normal B lymphoblasts from plasmacytoma-susceptible BALB/cAnPt mice. Breaksites in these genes are associated with the chromosomal translocations that are found in > 95% of BALB/cAnPt plasmacytomas. In contrast to those from BALB/cAnPt mice, B lymphoblasts from plasmacytoma-resistant DBA/2N mice rapidly repair Pvt-1, IgH-C alpha, and IgL-kappa. Further, (BALB/cAnPt x DBA/2N)F1 hybrids, which are resistant to plasmacytoma development, carry an efficient (DBA/2N-like) repair phenotype. Analysis of allele-specific repair in the IgH-C alpha locus indicates that efficient repair is controlled by dominant, trans-acting factors. In the F1 heterozygotes, these factors promote efficient repair of BALB/cAnPt IgH-C alpha gene sequences. The same sequences are poorly repaired in the BALB/cAnPt parental strain. Analysis of the strand specificity of repair indicates that both strand-selective and nonselective forms of repair determine repair efficiency at the gene level in nonimmortalized murine B lymphoblasts.

Animals↗