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Biomedical subjects

S Boyle

Publications and source records attributed to S Boyle.

At least 37 records · Page 2Linked to original sources

Molecular cloning of a human cDNA IGSF3 encoding an immunoglobulin-like membrane protein: expression and mapping to chromosome band 1p13.

We report the isolation and characterization of a novel cDNA IGSF3 that contains a 3648-bp open reading frame encoding an apparent immunoglobulin (Ig)-like membrane protein characterized by eight Ig domains. IGSF3 has an overall structural similarity and strong sequence similarity to V7, a human leukocyte surface protein. The IGSF3 mRNA is highly expressed in placenta, kidney, and lung, but is also present in a wide range of other human tissues. Although a small internal sequence of the IGSF3 cDNA hybridizes to a YAC derived from the centromeric region of chromosome 21, in situ hybridization experiments on human metaphase chromosomes show that the gene corresponding to the long cDNA that we cloned is located in chromosome band 1p13 and that related sequences are located on chromosomes 2 and 13. These data serve to emphasize the potential difficulties in transcriptional mapping in centromeric regions.

Amino Acid Sequence↗

The Epstein-Barr virus nuclear protein SM is both a post-transcriptional inhibitor and activator of gene expression.

The Epstein-Barr virus (EBV) nuclear protein BS-MLF1 (SM) is expressed early after entry of EBV into the lytic cycle. SM transactivates reporter gene constructs driven by a wide variety of promoters, but the mechanism of SM action is poorly understood. In this study, we demonstrate that the SM protein inhibits expression of intron-containing genes and activates expression of intron-less genes. We demonstrate that SM has the predicted inhibitory effect on expression of a spliced EBV gene but activates an unspliced early EBV gene. SM inhibited gene expression at the post-transcriptional level by preventing the accumulation of nuclear and cytoplasmic RNA transcripts. Conversely, SM led to increased accumulation of nuclear mRNA from intron-less genes without affecting the rate of transcription, indicating that SM enhances nuclear RNA stability. The ratio of cytoplasmic to nuclear polyadenylated mRNA was increased in the presence of SM, suggesting that SM also enhances nucleo-cytoplasmic mRNA transport. The degree of transactivation by SM was dependent on the sequence of the 3'-untranslated region of the target mRNA. Finally, we demonstrate that the amino-terminal portion of SM fused to glutathione-S-transferase binds radioactively labeled RNA in vitro, indicating that SM is a single-stranded RNA binding protein. Importantly, the latent and immediate-early genes of EBV contain introns whereas many early and late genes do not. Thus, SM may down-regulate synthesis of host cell proteins and latent EBV proteins while simultaneously enhancing expression of specific lytic EBV genes by binding to mRNA and modulating its stability and transport.

Cell Line↗

Waiting lists. The wrong target.

The numbers now waiting for treatment in the NHS are more than double what they were in 1948 despite huge increases in activity. Increased activity has not reduced the time patients wait. Mean waiting times in the 1990s were 13-14 weeks, the same as in the 1960s and 1970s. An increase in activity to reduce the numbers waiting for treatment may, in fact, increase the number being put on the waiting list. Government targets should concentrate on how long individual patients have to wait, rather than reducing the numbers on the waiting list.

Elective Surgical Procedures↗

The reticulocalbin gene maps to the WAGR region in human and to the Small eye Harwell deletion in mouse.

We describe the localization of the gene encoding reticulocalbin, a Ca2+-binding protein of the endoplasmic reticulum, on human chromosome 11p13 midway between the WT1 and the PAX6 genes and show that it is hemizygously deleted in WAGR individuals. The mouse reticulocalbin gene is also shown to map to the region of conserved synteny on mouse chromosome 2 and to be deleted in the Small eye Harwell (SeyH) mutation. Loss of the reticulocalbin gene could contribute to the early lethality of SeyH and SeyDey homozygotes.

Abnormalities, Multiple↗

Regression of a large gastric MALT lymphoma with antibiotic treatment to eradicate Helicobacter pylori.

We report a case of a large low-grade gastric lymphoma of mucosa-associated lymphoid tissue (MALT), which regressed following the eradication of concurrent Helicobacter pylori infection. This case lends further support to a policy of H pylori eradication as a first line therapy for all these lesions, irrespective of size. The long-term prognosis of tumours treated in this way, however, needs further evaluation.

Amoxicillin↗

Scaffold attachments within the human genome.

It is generally agreed that, above the level of the 30 nm fibre, eukaryotic chromatin is constrained into loops, but there is disagreement about the nature of the substructure that serves to anchor loops and the DNA sequences that act as the attachment sites. This problem may stem from the very different methods that all purport to separate loop and attached DNAs. We have tested ideas about how the genome is arranged into loops by analysing the average loop size over different cytologically resolvable regions of human chromosomes using fluorescence in situ hybridisation with loop and attached DNA fractions. Variations in average loop size, along and between chromosomes, measurable at this level of resolution were small but significant and were dependent on the extraction method. This emphasises the fundamental differences between the nuclear substructure probed by different protocols. DNA attached to the nuclear 'scaffold' or 'matrix' hybridises preferentially to gene-poor regions of the genome (G-bands). Conversely, fractions attached to the nuclear 'skeleton' hybridise preferentially to gene-rich R-bands and sites of high levels of transcription. The inactive X chromosome has a deficit of associations with the nuclear skeleton but not with the matrix or scaffold. A large excess of attached sequences is found at some sites of constitutive heterochromatin, but not at centromeres.

Cell Nucleus↗

Chromosomal localization in mouse and human of the vasoactive intestinal peptide receptor type 2 gene: a possible contributor to the holoprosencephaly 3 phenotype.

The neuropeptides vasoactive intestinal peptide (VIP) and pituitary adenylate cyclase activating polypeptide (PACAP) have been shown to act on a wide range of tissue and cell types, both in the central nervous system and in the periphery. Two distinct receptors for VIP, the VIP receptor type 1 (VIPR1) and the VIP receptor type 2 (VIPR2), have recently been cloned, each of which binds PACAP and VIP with equal affinity. We report here the chromosomal mapping of the human and mouse VIPR2 genes by fluorescence in situ hybridization. The VIPR2 gene maps to the human chromosomal region 7q36.3 and to the F2 region of mouse chromosome 12. Our localization of the human gene places it in the region where the locus for the craniofacial defect holoprosencephaly type 3 (HPE3) maps. Further mapping experiments, carried out on cell lines derived from patients with HPE or HPE microforms and associated 7q deletions, have led us to redefine the distal extent of the HPE3 minimal critical region, originally characterized by Gurrieri et al. (1993, Nature Genet. 3: 247-251.) The VIPR2 gene lies within this new HPE3 minimal critical region. Our results suggest that deletion of the VIPR2 gene is not the sole factor responsible for the HPE3 phenotype. However, it is possible that monosomy at the VIPR2 locus may contribute to the phenotype observed in many cases of HPE3.

Animals↗

Analysis of three deletion breakpoints in Xp21.1 and the further localization of RP3.

The gene responsible for X-linked retinitis pigmentosa (xlRP) in Xp21.1 (RP3) was initially localized by deletion analysis to within a 150- to 170-kb region between the CYBB locus and the proximal deletion junction (BBJPROX) from a patient, BB, who suffered from Duchenne muscular dystrophy (DMD), McLeod syndrome, chronic granulomatous disease (CGD), and xlRP. This gene has recently been isolated and was found to be located outside and 400 kb proximal to the BB deletion. Further analysis of BBJPROX has identified the breakpoint junction sequence, showing that it occurs within an Alu repetitive element on the proximal side but with no significant homology to the distal sequence in dystrophin intron 30. Analysis of an overlapping deletion in patient NF, who suffered from DMD, CGD, and McLeod syndrome, shows that this deletion is within 4 kb but extends centromeric to BBJPROX, consistent with the location of RP3 outside the BB deletion region. A sequence with strong homology to a THE-1 transposon-like element was identified 7-13 kb from the proximal BB and NF breakpoints. These elements have been implicated in several highly unstable genomic regions. A third overlapping deletion, in a patient, SB, who suffered from CGD, McLeod syndrome, and xlRP, has here been shown to extend 380 kb proximal to the NF breakpoint, consistent with the finding that RP3 lies outside the BB deletion. This deletion has now been shown to disrupt the RP3 (RPGR) gene. The reason for the retinitis pigmentosa phenotype in patient BB remains unclear, but the most likely explanations include a long-range chromosomal position effect, a small secondary rearrangement, and the presence of a coincident autosomal form of retinitis pigmentosa.

Base Sequence↗

A high-resolution integrated physical, cytogenetic, and genetic map of human chromosome 11: distal p13 to proximal p15.1.

We describe a detailed physical map of human chromosome 11, extending from the distal part of p13 through the entirety of p14 to proximal p15.1. The primary level of mapping is based on chromosome breakpoints that divide the region into 20 intervals. At higher resolution YACs cover approximately 12 Mb of the region, and in many places overlapping cosmids are ordered in contiguous arrays. The map incorporates 18 known genes, including precise localization of the GTF2H1 gene encoding the 62-kDa subunit of TFIIH. We have also localized four expressed sequences of unknown function. The physical map incorporates genetic markers that allow relationships between physical and genetic distance to be examined, and similarly includes markers from a radiation hybrid map of 11. The cytogenetic location of cosmids has been examined on high-resolution banded chromosomes by fluorescence in situ hybridization, and FLpter values have been determined. The map therefore fully integrates physical, genic, genetic, and cytogenetic information and should provide a robust framework for the rapid and accurate assignment of new markers at a high level of resolution in this region of 11p.

Base Sequence↗

Aniridia-associated cytogenetic rearrangements suggest that a position effect may cause the mutant phenotype.

Current evidence suggests that aniridia (absence of iris) is caused by loss of function of one copy of the PAX6 gene, which maps to 11p13. We present the further characterisation of two aniridia pedigrees in which the disease segregates with chromosomal rearrangements which involve 11p13 but do not disrupt the PAX6 gene. We have isolated three human YAC clones which encompass the PAX6 locus and we have used these to show that in both cases the chromosomal breakpoint is at least 85 kb distal of the 3' end of PAX6. In addition, the open reading frame of PAX6 is apparently free of mutations. We propose that the PAX6 gene on the rearranged chromosome 11 is in an inappropriate chromatin environment for normal expression and therefore that a 'position effect' is the underlying mechanism of disease in these families.

Aniridia↗

Direct microdissection and microcloning of a translocation breakpoint region, t(1;11)(q42.2;q21), associated with schizophrenia.

We describe the generation of large-fragment microclone libraries from the chromosomal breakpoint of a reciprocal balanced translocation linked to schizophrenia. The abnormality was visible under the phase-contrast microscope, allowing direct dissection from unstained, unbanded metaphases. Two separate microdissection experiments yielded 443 and 672 recombinants, respectively. Following complete EcoRI digestion, inserts with an average size of 0.3 kb (range, 0.2-3 kb) were obtained in the first experiment and 1.5 kb (range, 0.15-6.5 kb) in the second. FISH analysis of pooled clones "painted" back onto the derivative chromosome and assignment of microclones to somatic cell hybrids confirmed the fidelity of the method. Microdissection of chromosome regions identified by karyotype rearrangements in unstained, unbanded metaphases is a potentially powerful tool for positional cloning.

Base Sequence↗

Multiple sclerosis progression in a natural history study: predictive value of cerebrospinal fluid free kappa light chains.

OBJECTIVES: To determine the relationship between baseline CSF immunologic abnormalities and MS disease progression; To determine progression rates in an untreated, recently-diagnosed MS sample using several validated clinical measures. BACKGROUND: CSF immune abnormalities are common in MS but have not been linked to disease progression. DESIGN METHODS: Thirty-six patients with definite (n = 28), probable (n = 2), or possible (n = 6) MS were studied prospectively. Baseline CSF was analyzed for free kappa and lambda light chains, myelin basic protein, IgG synthesis rate, and IgG index. MS patients were entered into the study within 5 years of symptom onset and examined semiannually for as long as 53.4 months (median length of follow up 38.9 months). MS progression was defined as sustained worsening on the following clinical measurement instruments: the Expanded Disability Status Scale (EDSS), the Ambulation Index (AI), the 9 Hole Peg Test (9HT) and the Box and Blocks test (BBT). Kaplan-Meier estimates of disease progression were calculated and the relationship between baseline CSF values and disease progression was determined using Cox proportional hazards regression models. RESULTS: By 36 months, 33% (95% CI = 10.3, 55.7) of patients had progressed on EDSS and 49.7% (95% CI = 27.7, 71.7) had progressed on at least one of the outcome measures. Patients with CSF free kappa chain levels in the upper quartile had a significantly higher risk of progression on EDSS (Hazard Ratio 3.78; p = 0.04) and 9HT (Hazard Ratio 10.77, p = 0.04). CONCLUSIONS: In this study, CSF free kappa light chains predicted subsequent physical deterioration in prospectively evaluated MS patients. If this is confirmed by larger studies, then CSF free kappa light chains could serve as a target for intervention in therapeutic trials.

Adolescent↗

Organization of the region encompassing the human serum amyloid A (SAA) gene family on chromosome 11p15.1.

The four members of the human serum amyloid A protein (SAA) gene family are clustered on human chromosome 11p15.1. Three genes are differentially expressed and encode small apolipoproteins of M(r) 12-19 kDa: SAA1 and SAA2 encode the acute phase SAAs (A-SAAs), and SAA4 encodes the constitutively expressed SAA (C-SAA). A fourth locus, SAA3, is a pseudogene. The human SAA gene family encompasses approximately 150 kb contained on a 900-kb yeast artificial chromosome contig. SAA1 and SAA2 are 15-20 kb apart and are arranged in divergent transcriptional orientations. SAA4 is 9 kb downstream of SAA2 and in the same orientation. SAA3 is 110 kb downstream of SAA4, and its relative orientation could not be determined. All genes known to be in the same human and mouse syntenic linkage group as SAA were mapped within the contig. Interphase FISH was used to orientate the region relative to the centromere: cen-LDHC-LDHA-SAA1-SAA2-SAA4-SAA3-TP H-D11S18- KCNC1-MYOD1-pter.

Animals↗