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Biomedical subjects

D J Porteous

Publications and source records attributed to D J Porteous.

At least 91 records · Page 5Linked to original sources

Modelling cystic fibrosis in the mouse.

Animal models of human diseases are of vital importance, both for understanding basic disease mechanisms, and for developing potential treatments. Recent advances in molecular biology have helped identify the lesions underlying many genetic diseases. In conjunction with the development of techniques for manipulating the mouse embryo the possibility of mimicking these diseases in vivo has been raised. The example of cystic fibrosis illustrates this potential very well, demonstrating the usefulness of mouse models for gaining an improved understanding of the disease in humans and for the testing of new treatments.

Animals↗

Lung disease in the cystic fibrosis mouse exposed to bacterial pathogens.

Lung disease is the major cause of death in cystic fibrosis (CF), but there is no evidence for overt lung involvement at birth. We show here that the same is true for the gene targeted cftrm1HGU mutant mouse. Furthermore, this CF mouse model demonstrates an impaired capacity to clear Staphylococcus aureus and Burkholderia (Pseudomonas) cepacia, two opportunistic lung pathogens closely associated with lung disease in CF subjects. The cftrm1HGU homozygotes display mucus retention and frank lung disease in response to repeated microbial exposure. Thus, lung disease in the cftrm1HGU mouse develops in response to bacterial infection, establishing a model to dissect the pathogenesis of CF pulmonary disease and providing a clinically relevant end point to assess the efficacy of pharmacologic or genetic interventions.

Animals↗

Catch-linker + PCR labeling: a simple method to generate fluorescence in situ hybridization probes from yeast artificial chromosomes.

A simple and efficient method to generate hapten-labeled DNA fragments from a trace amount of YAC DNA isolated by PFGE is described. After agarase digestion of the gel slice containing the resolved YAC recombinant, the purified DNA is digested with Sau3Al and a compatible CL oligonucleotide duplex ligated on. A probe is generated by PCR amplification using a primer complementary to the CL with a single biotin moiety incorporated at the 5' end. When used as a FISH probe, this material yields mapping results superior to Alu-PCR or whole YAC labeling methods and allows sensitive detection of chimerism.

Base Sequence↗

Human repeat-mediated integration of selectable markers into somatic cell hybrids.

We describe a strategy to introduce preferentially the dominant selectable marker neoR into the human chromosome within a monochromosome hybrid cell line. Integration of a construct containing the marker is mediated by human-specific repeat elements that promote multilocus human-specific integration with a single targeting vector. We tested two classes of repeat elements: the Alu family of SINE repeats and the Line1 repeat family. We show that Alu sequences alone are insufficient to direct human-specific integration but when used in combination with a Line1 element, or when only Line1 elements are included, integration of the vector into the human component of a monochromosome somatic cell hybrid is favored. The vectors also carry sequences that facilitate mapping and selective cloning of the targeted region. This strategy provides a means to generate selectable human subchromosomal fragments that can be used for localization of genes through positional cloning and, more important, for the identification of functional units through DNA transfer.

Anti-Bacterial Agents↗

Bioelectric characteristics of exon 10 insertional cystic fibrosis mouse: comparison with humans.

Two important issues that can be addressed by animal models are disease pathogenesis and the testing of new treatments, including gene therapy. How closely these models mimic the relevant disorder in humans will determine their usefulness. This study examines how closely the characteristic bioelectric features of cystic fibrosis (CF) are reproduced in the airways and intestinal tract of the exon 10 insertional mutant mouse (cf/cf). In agreement with CF subjects these cf/cf mutant mice demonstrate the following: 1) reduced adenosine 3',5'-cyclic monophosphate-related chloride secretion throughout the respiratory and intestinal tracts both in vivo and in vitro, 2) calcium-related chloride secretion that is preserved in the airways but reduced in the intestine, and 3) a more negative nasal potential difference and increased amiloride response compared with wild-type animals, likely to relate to increased sodium absorption. In contrast to humans, sodium absorption is not increased in the small intestine and is reduced in the trachea of the cf/cf mice. We conclude that the majority of the salient electrophysiological features of CF required for studies of pathogenesis or testing of new treatments are present in these cf/cf mice.

Animals↗

Regional localisation of 19 brain expressed sequence tags to human chromosome 11 using PCR amplification of somatic cell hybrid DNAs.

Expressed sequence tags (ESTs) provide an efficient route to the identification of genes involved in normal development and in disease. PCR amplification of somatic cell hybrid DNAs was used to localise 22 brain-derived ESTs to subregions of human chromosome 11. Problems encountered with the standardised PCR conditions were overcome by optimising the annealing temperatures and the use of "touchdown" PCR. Amplification of the correct target sequence allowed the mapping of 19 ESTs, 8 to the short arm and 11 to the long arm of chromosome 11. No definitive localisation could be determined for the three remaining ESTs.

Animals↗

Placement and refined mapping of established and new markers on human chromosome 11q using a small panel of somatic cell hybrids.

Constructing detailed chromosome maps relies on the ability to place new markers rapidly and accurately. Here we map two new anonymous DNA markers precisely on chromosome 11q and refine the location of established markers using a panel of just six fragmentation hybrids, with reference to four translocation chromosomes. As several of the hybrids retain multiple segments of chromosome 11, it is possible to quickly assign new markers to subintervals using this modest set of hybrid DNAs.

Base Sequence↗

Evaluation in vitro and in vivo of cationic liposome-expression construct complexes for cystic fibrosis gene therapy.

We have tested the cationic liposome N-(1-(2,3-dioleoyloxy)propyl)-N,N,N-trimethyl-ammoniummethylsul phate, (DOTAP), for gene delivery in vitro and in vivo with a view to clinical use in gene therapy for cystic fibrosis. Delivery of lacZ cDNA-DOTAP complexes via aerosol showed promoter-dependent differences in the pattern and longevity of expression. Repeated administration was well tolerated. The potential for the transfer of foreign genes into reproductive tissue was investigated by intravenous injection of DNA-DOTAP into female mice. Foreign DNA was undetectable in the ovaries by Southern blot analysis at 1 and 7 days after injection. Our results suggest that DOTAP merits testing in cystic fibrosis patients for delivery of the cystic fibrosis transmembrane conductance regulator (CFTR) gene to the respiratory tract and that substitution of the cytomegalovirus (CMV) promoter for the simian virus (SV) promoter may improve on the transitory response reported previously.

Aerosols↗

Long-term survival of the exon 10 insertional cystic fibrosis mutant mouse is a consequence of low level residual wild-type Cftr gene expression.

Recently we have created a mouse model of cystic fibrosis (CF) by insertional gene targeting to exon 10. In common with CF subjects, this model displays a low incidence of meconium ileus. This contrasts strikingly with the very high level of fatal intestinal obstruction in the three other CF mouse models so far described. We investigate here the molecular basis of this difference in phenotype. We show that the partial duplication consequent upon insertional gene targeting allows exon skipping and aberrant splicing to produce normal Cftr mRNA, but at levels greatly reduced compared with wild-type mice. Furthermore, instead of the predicted mutant Cftr transcript, a novel mRNA is produced that utilizes cryptic splice sites in the disrupting plasmid sequence. However, we have previously shown that these mice display the ion transport defect characteristic of CF, and mutant animals can be distinguished from their normal littermates on this basis. Consistent with this, residual CFTR function has recently been observed for several "mild" mutations in CF individuals who display pancreatic sufficiency but still develop lung disease. We conclude that (i) residual wild-type mRNA in the exon 10 insertional mutant mouse ameliorates the severity of the intestinal phenotype observed in the absolute "null" CF mice, (ii) the presence of low-level residual wild-type Cftr mRNA does not correct the CF ion transport defect, and (iii) the long-term survival of this insertional mutant mouse provides the opportunity to address the factors important in development of lung disease.

Animals↗

Alu-based vectorettes and splinkerettes. More efficient and comprehensive polymerase chain reaction amplification of human DNA from complex sources.

Alu-polymerase chain reaction (PCR) is widely used to amplify human specific fragments from complex heterologous DNAs, such as somatic cell hybrids or yeast artificial chromosome (YAC) recombinants, but the fragments amplified are limited in number and are nonrepresentative. This report describes a modified one-sided alu-PCR technique, which offers better representation of amplified sequences while maintaining human specificity. The method relies on the ligation of partially mismatched double-stranded oligonucleotides (vectorettes or splinkerettes) to endonuclease-restricted DNA and universal priming with a single alu-consensus primer, the complement to which is the unpaired region. Alu-vectorette and alu-splinkerette-PCR of two somatic cell hybrids results in a greater complexity of products than alu-PCR alone. The advantage of alu-splinkerette over alu-vectorette-PCR is the elimination of nonspecific priming owing to the presence of the vectorette primer and to an increase in the product size range, a consequence of the difference in the splinkerette design. Alu-splinkerette-PCR is a useful technique for generating new and more comprehensive markers of the human sequences contained in somatic cell hybrids and YACs.

Base Sequence↗

Cloning the shared components of complex DNA resources.

The complex and repetitive nature of mammalian genomes limits the ability of conventional molecular techniques to recover sequences of interest. Here we describe a rapid and simple procedure for the direct cloning of sequences which are coincident between DNA mixtures of whole genome complexity. The system, called end ligation coincident sequence cloning (EL-CSC), can enrich coincident DNA by greater than 10(6)-fold and overcomes problems associated with repetitive elements. Applying EL-CSC to various paired DNA resources enables the facile cloning of both genomic markers and novel genes. To demonstrate the power of the method we have i) selectively purified single copy sequences from a complete genome, and ii) isolated gene fragments from 260 kb of cloned genomic DNA.

Base Sequence↗

CFTR and calcium-activated chloride currents in pancreatic duct cells of a transgenic CF mouse.

We have studied the cystic fibrosis transmembrane conductance regulator (CFTR) and calcium-activated chloride currents in pancreatic duct cells isolated from a transgenic cf/cf mouse created by targeted insertional mutagenesis. Adenosine 3',5'-cyclic monophosphate (cAMP)-activated CFTR chloride currents were detected in 78% (29/37) of wild-type cells, in 81% (35/43) of heterozygote cells, and in 61% (29/47) of homozygous cf/cf duct cells (P > 0.05, cf/cf vs. wild-type and heterozygote). The CFTR current density measured at membrane potentials of +/- 60 mV averaged 22-26 pA/pF in wild-type and heterozygote groups but only 13 pA/pF in cells derived from cf/cf animals (P < 0.05, cf/cf vs. wild-type and cf/cf vs. heterozygotes). In contrast, duct cells from animals of all three genotypic groups exhibited calcium-activated chloride currents that were of similar magnitude and up to 11-fold larger than the CFTR currents. We speculate that these transgenic insertional null mice do not develop the pancreatic pathology that occurs in cystic fibrosis patients because their duct cells contain 1) some wild-type CFTR generated by exon skipping and aberrant splicing and 2) a separate anion secretory pathway mediated by calcium-activated chloride channels.

Animals↗

A series of vectors that simplify mammalian gene targeting.

In order to facilitate the procedure of mammalian gene targeting, we have produced and functionally tested a series of generic vectors. Homologous recombination has been achieved with each vector. The vectors are designed for both replacement and insertional recombination, are suitable for 'hit and run' strategies and contain all necessary genetic elements for both positive-negative and promoterless/gene fusion enrichment of homologous integrations. Multiple unique restriction sites are included to simplify the incorporation of genomic targeting sequences.

Animals↗