Search results for " Splicing"

showing 10 items of 226 documents

Evaluating the effect of spastin splice mutations by quantitative allele-specific expression assay

2010

Background:  Mutations in the SPG4/SPAST gene are the most common cause for hereditary spastic paraplegia (HSP). The splice-site mutations make a significant contribution to HSP and account for 17.4% of all types of mutations and 30.8% of point mutations in the SPAST gene. However, only few studies with limited molecular approach were conducted to investigate and decipher the role of SPAST splice-site mutations in HSP. Methods:  A reverse transcriptase-polymerase chain reaction (RT-PCR) analysis and quantitative allele-specific expression assay were performed. Results:  We have characterized the consequence of two novel splice-site mutations (c.1493 + 1G>A and c.1414−1G>A) in the SPAST gene…

Genetics0303 health sciencesbusiness.industryHereditary spastic paraplegiaPoint mutationSpastinmedicine.disease03 medical and health sciencesExon0302 clinical medicineNeurologyRNA splicingMedicinespliceNeurology (clinical)businessSPAST gene030217 neurology & neurosurgeryAllele specific030304 developmental biologyEuropean Journal of Neurology
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The Clinical Significance of Unknown Sequence Variants in BRCA Genes.

2010

Abstract: Germline mutations in BRCA1/2 genes are responsible for a large proportion of hereditary breast and/or ovarian cancers. Many highly penetrant predisposition alleles have been identified and include frameshift or nonsense mutations that lead to the translation of a truncated protein. Other alleles contain missense mutations, which result in amino acid substitution and intronic variants with splicing effect. The discovery of variants of uncertain/unclassified significance (VUS) is a result that can complicate rather than improve the risk assessment process. VUSs are mainly missense mutations, but also include a number of intronic variants and in-frame deletions and insertions. Over …

GeneticsCancer ResearchBRCA genesNonsense mutationReviewBiologylcsh:Neoplasms. Tumors. Oncology. Including cancer and carcinogenslcsh:RC254-282oncogenetic counselingFrameshift mutationintegrated modelsGermline mutationOncologyvariantRNA splicingMissense mutationClinical significanceAlleleGeneCancers
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Alterations of pre-mRNA splicing in cancer

2005

Recent genomewide analyses of alternative splicing (AS) indicate that up to 70% of human genes may have alternative splice forms, suggesting that AS together with various posttranslational modifications plays a major role in the production of proteome complexity. Splice-site selection under normal physiological conditions is regulated in the developmental stage in a tissue type-specific manner by changing the concentrations and the activity of splicing regulatory proteins. Whereas spliceosomal errors resulting in the production of aberrant transcripts rarely occur in normal cells, they seem to be an intrinsic property of cancer cells. Changes in splice-site selection have been observed in v…

GeneticsCancer ResearchRNA SplicingAlternative splicingExonic splicing enhancerIntronExonsBiologymedicine.disease_causeIntronsCell biologyExonTumor progressionRNA splicingRNA PrecursorsGeneticsmedicineHumansspliceCarcinogenesisGenes, Chromosomes and Cancer
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Molecular analysis of METTL1, a novel human methyltransferase-like gene with a high degree of phylogenetic conservation.

1999

A novel human gene, METTL1, has been identified by its sequence similarity to the yeast ORF YDL201w. The human cDNA and the genomic structure of METTL1 have been analyzed. The transcript contains 1292 nucleotides and codes for a protein of 276 amino acids. The gene consists of seven exons and extends over 3.5 kb. The six introns vary in length between 93 and 1137 nucleotides. The gene is transcribed in a large variety of organs and tissues and shows differential splicing of two exons, giving rise to at least three different transcripts. The METTL1 gene was assigned to chromosome 12q13 by radiation hybrid mapping. The METTL1 gene product shows high sequence similarities to putative proteins …

GeneticsDNA ComplementaryBase SequenceSequence Homology Amino AcidMolecular Sequence DataNucleic acid sequenceIntronMethyltransferasesBiologyHomology (biology)Gene productExonMiceGene clusterRNA splicingGeneticsAnimalsHumansAmino Acid SequenceGenePhylogenyGenomics
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2006

During the past years, we and others discovered a series of human ATP-binding cassette (ABC) transporters, now referred to as ABC A-subfamily transporters. Recently, a novel testis-specific ABC A transporter, Abca17, has been cloned in rodent. In this study, we report the identification and characterization of the human ortholog of rodent Abca17. The novel human ABC A-transporter gene on chromosome 16p13.3 is ubiquitously expressed with highest expression in glandular tissues and the heart. The new ABC transporter gene exhibits striking nucleotide sequence homology with the recently cloned mouse (58%) and rat Abca17 (51%), respectively, and is located in the syntenic region of mouse Abca17 …

GeneticsExonPseudogeneGene duplicationAlternative splicingHuman genomeATP-binding cassette transporterBiologyMolecular BiologyGeneHomology (biology)BMC Molecular Biology
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In Silico Analysis of the Novel Variant Q375R in the Phenylalanine Hydroxylase Gene

2019

Background: Phenylketonuria is an inborn metabolic disorder inherited in an autosomal recessive pattern. The detection of pathogenic variations improves the power of at-risk carrier and prenatal detection. We previously found Q375R a novel phenylalanine hydroxylase variation in phenylketonuria patients from the south-west of Iran. Objectives: Here, we aimed to evaluate the rate of the pathogenicity of this novel variant and three other intron variants (IVS9 + 32insA, IVS11 + 163delC, and IVS12 + 30C>T). Methods: The pathogenicity and some structural features of Q375R were analyzed using bioinformatics tools including SIFT, PolyPhen, Mutpred, MutationTaster, nSSNP Analyzer, SNP effect, 3DLig…

GeneticsFoldXPhenylalanine hydroxylasebiologyIn silicoRNA splicingIntronbiology.proteinmedicineSNPPhenylketonuria (PKU)medicine.diseaseGeneGene, Cell and Tissue
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Stage, tissue, and cell specific distribution of alternative Ultrabithorax mRNAs and protein isoforms in the Drosophila embryo

1996

The homeotic gene Ultrabithorax encodes a family of six homeoproteins translated from alternatively spliced mRNAs. The structures of these UBX isoforms have been conserved among anciently diverged Drosoph-ila species and functional distinctions between some isoforms have been reported that suggest subtle but important roles in Ubx action. We present a detailed analysis of the expression patterns of Ubx mRNAs and proteins during embryogenesis, using isoform-specific monoclonal antibodies and synthetic oligonucleotide probes. These patterns are remarkably complex, each mRNA and corresponding protein isoform being expressed in a partially overlapping but distinct stage and tissue-specific patt…

GeneticsGene isoformProtein isoformMessenger RNAExonRNA splicingGeneticsIntronBiologyHomeotic geneUltrabithoraxDevelopmental BiologyRoux's Archives of Developmental Biology
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Axolotl MHC class II β chain: predominance of one allele and alternative splicing of the β1 domain

2001

The axolotl MHC is composed of multiple polymorphic class I loci linked to class II B loci. In this report, evidence of the existence of one class II B locus (Amme-DAB) that codes for two different transcripts is given. A 2.1-kb transcript is translated to a complete β chain and a shorter transcript of 1.8 kb encodes a molecule lacking the β1 domain. For two complete class II B mRNA synthesized, up to one mRNA devoid of the β1 domain is synthesized. Alternative splicing involving a peptide binding domain at a class II B locus evidenced in axolotl (Ambystoma mexicanum) is also observed for A. trigrinum, the tiger salamander. Very little variability is found among various axolotl MHC class II…

GeneticsMHC class IIbiologyCD74ImmunologyAlternative splicingPeptide bindingbiology.organism_classificationMajor histocompatibility complexMolecular biologyAxolotlMHC class Ibiology.proteinImmunology and AllergyAlleleEuropean Journal of Immunology
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A chimeric ribozyme in Clostridium difficile combines features of group I introns and insertion elements

2002

CdlSt1, a DNA insertion of 1975 bp, was identified within tcdA-C34, the enterotoxin gene of the Clostridium difficile isolate C34. Located in the catalytic domain A1-C34, Cd/St1 combines features of two genetic elements. Within the first 434 nt structures characteristic for group I introns were found; encoding the two transposase-like proteins tlpA and tlpB nucleotides 435-1975 represent the remainder of a IS605-like insertion element. We show that the entire CdlSt1 is accurately spliced from tcdA-C34 primary transcripts and that purified TcdA-C34 toxin is of regular size and catalytic activity. A search for CdlSt1-related sequences demonstrates that the element is widespread in toxinogenic…

GeneticsOpen reading framebiologyRNA splicingIntronRibozymebiology.proteinInterrupted geneGroup I catalytic intronGroup II intronORFSMolecular BiologyMicrobiologyMolecular Microbiology
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Thirty-four novel mutations of the GLA gene in 121 patients with Fabry disease

2005

Fabry disease (FD) is an X-chromosomal disorder caused by mutations in the GLA gene encoding the lysosomal enzyme alpha-galactosidase A. We performed mutation screening on a cohort of 121 patients including 84 male and 37 female index cases and identified a total of 90 different mutations, 34 of which are reported for the first time here. Both point mutations (74.4%) and 'short length' rearrangements (25.6%) were found, including missense (54.4%), nonsense (14.4%), and splice site point mutations (5.6%), deletions (17.8%) or insertions/duplications (5.6%) of a few nucleotides, and complex rearrangements including larger deletions (2.2%). GLA mutations were identified in 82 (97.6%) of the 84…

GeneticsPoint mutationmedia_common.quotation_subjectNonsenseBiologymedicine.diseaseFabry diseaseGla geneRNA splicingGeneticsmedicineMutation screeningMissense mutationPeptide sequenceGenetics (clinical)media_commonHuman Mutation
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