Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 20 de 24
Filter
Add more filters

Country/Region as subject
Publication year range
1.
Proc Natl Acad Sci U S A ; 119(27): e2113749119, 2022 07 05.
Article in English | MEDLINE | ID: mdl-35763574

ABSTRACT

Kisspeptin neurons in the mediobasal hypothalamus (MBH) are critical targets of ovarian estrogen feedback regulating mammalian fertility. To reveal molecular mechanisms underlying this signaling, we thoroughly characterized the estrogen-regulated transcriptome of kisspeptin cells from ovariectomized transgenic mice substituted with 17ß-estradiol or vehicle. MBH kisspeptin neurons were harvested using laser-capture microdissection, pooled, and subjected to RNA sequencing. Estrogen treatment significantly (p.adj. < 0.05) up-regulated 1,190 and down-regulated 1,139 transcripts, including transcription factors, neuropeptides, ribosomal and mitochondrial proteins, ion channels, transporters, receptors, and regulatory RNAs. Reduced expression of the excitatory serotonin receptor-4 transcript (Htr4) diminished kisspeptin neuron responsiveness to serotonergic stimulation. Many estrogen-regulated transcripts have been implicated in puberty/fertility disorders. Patients (n = 337) with congenital hypogonadotropic hypogonadism (CHH) showed enrichment of rare variants in putative CHH-candidate genes (e.g., LRP1B, CACNA1G, FNDC3A). Comprehensive characterization of the estrogen-dependent kisspeptin neuron transcriptome sheds light on the molecular mechanisms of ovary-brain communication and informs genetic research on human fertility disorders.


Subject(s)
Arcuate Nucleus of Hypothalamus , Estrogens , Fertility , Kisspeptins , Neurons , Ovary , Animals , Arcuate Nucleus of Hypothalamus/metabolism , Estrogens/metabolism , Female , Fertility/genetics , Gene Expression Profiling , Humans , Hypogonadism/congenital , Hypogonadism/genetics , Kisspeptins/genetics , Kisspeptins/metabolism , Mice , Mice, Transgenic , Neurons/metabolism , Ovary/metabolism
2.
Am J Hum Genet ; 107(5): 963-976, 2020 11 05.
Article in English | MEDLINE | ID: mdl-33157009

ABSTRACT

NCKAP1/NAP1 regulates neuronal cytoskeletal dynamics and is essential for neuronal differentiation in the developing brain. Deleterious variants in NCKAP1 have been identified in individuals with autism spectrum disorder (ASD) and intellectual disability; however, its clinical significance remains unclear. To determine its significance, we assemble genotype and phenotype data for 21 affected individuals from 20 unrelated families with predicted deleterious variants in NCKAP1. This includes 16 individuals with de novo (n = 8), transmitted (n = 6), or inheritance unknown (n = 2) truncating variants, two individuals with structural variants, and three with potentially disruptive de novo missense variants. We report a de novo and ultra-rare deleterious variant burden of NCKAP1 in individuals with neurodevelopmental disorders which needs further replication. ASD or autistic features, language and motor delay, and variable expression of intellectual or learning disability are common clinical features. Among inherited cases, there is evidence of deleterious variants segregating with neuropsychiatric disorders. Based on available human brain transcriptomic data, we show that NCKAP1 is broadly and highly expressed in both prenatal and postnatal periods and demostrate enriched expression in excitatory neurons and radial glias but depleted expression in inhibitory neurons. Mouse in utero electroporation experiments reveal that Nckap1 loss of function promotes neuronal migration during early cortical development. Combined, these data support a role for disruptive NCKAP1 variants in neurodevelopmental delay/autism, possibly by interfering with neuronal migration early in cortical development.


Subject(s)
Adaptor Proteins, Signal Transducing/genetics , Autism Spectrum Disorder/genetics , Intellectual Disability/genetics , Learning Disabilities/genetics , Mutation , Adaptor Proteins, Signal Transducing/deficiency , Adolescent , Animals , Autism Spectrum Disorder/diagnosis , Autism Spectrum Disorder/pathology , Cerebral Cortex/metabolism , Cerebral Cortex/pathology , Child , Female , Gene Expression , Genotype , HEK293 Cells , Humans , Intellectual Disability/diagnosis , Intellectual Disability/pathology , Learning Disabilities/diagnosis , Learning Disabilities/pathology , Male , Mice , Mice, Knockout , Neuroglia/metabolism , Neuroglia/pathology , Neurons/metabolism , Neurons/pathology , Pedigree , Phenotype , Pregnancy , Protein Isoforms/antagonists & inhibitors , Protein Isoforms/genetics , Protein Isoforms/metabolism , RNA, Small Interfering/genetics , RNA, Small Interfering/metabolism , Transcriptome , Young Adult
3.
Genet Med ; 24(6): 1261-1273, 2022 06.
Article in English | MEDLINE | ID: mdl-35341651

ABSTRACT

PURPOSE: This study aimed to undertake a multidisciplinary characterization of the phenotype associated with SOX11 variants. METHODS: Individuals with protein altering variants in SOX11 were identified through exome and genome sequencing and international data sharing. Deep clinical phenotyping was undertaken by referring clinicians. Blood DNA methylation was assessed using Infinium MethylationEPIC array. The expression pattern of SOX11 in developing human brain was defined using RNAscope. RESULTS: We reported 38 new patients with SOX11 variants. Idiopathic hypogonadotropic hypogonadism was confirmed as a feature of SOX11 syndrome. A distinctive pattern of blood DNA methylation was identified in SOX11 syndrome, separating SOX11 syndrome from other BAFopathies. CONCLUSION: SOX11 syndrome is a distinct clinical entity with characteristic clinical features and episignature differentiating it from BAFopathies.


Subject(s)
DNA Methylation , Hypogonadism , Klinefelter Syndrome , Neurodevelopmental Disorders , SOXC Transcription Factors , DNA Methylation/genetics , Humans , Hypogonadism/genetics , Klinefelter Syndrome/genetics , Neurodevelopmental Disorders/genetics , Phenotype , SOXC Transcription Factors/genetics , Exome Sequencing
4.
Genet Med ; 22(11): 1759-1767, 2020 11.
Article in English | MEDLINE | ID: mdl-32724172

ABSTRACT

PURPOSE: Congenital hypogonadotropic hypogonadism (CHH) is a rare disorder resulting in absent puberty and infertility. The genetic architecture is complex with multiple loci involved, variable expressivity, and incomplete penetrance. The majority of cases are sporadic, consistent with a disease affecting fertility. The current study aims to investigate mosaicism as a genetic mechanism for CHH, focusing on de novo rare variants in CHH genes. METHODS: We evaluated 60 trios for de novo rare sequencing variants (RSV) in known CHH genes using exome sequencing. Potential mosaicism was suspected among RSVs with altered allelic ratios and confirmed using customized ultradeep sequencing (UDS) in multiple tissues. RESULTS: Among the 60 trios, 10 probands harbored de novo pathogenic variants in CHH genes. Custom UDS demonstrated that three of these de novo variants were in fact postzygotic mosaicism-two in FGFR1 (p.Leu630Pro and p.Gly348Arg), and one in CHD7 (p.Arg2428*). Statistically significant variation across multiple tissues (DNA from blood, buccal, hair follicle, urine) confirmed their mosaic nature. CONCLUSIONS: We identified a significant number of de novo pathogenic variants in CHH of which a notable number (3/10) exhibited mosaicism. This report of postzygotic mosaicism in CHH patients provides valuable information for accurate genetic counseling.


Subject(s)
Hypogonadism , Infertility , Genetic Counseling , Humans , Hypogonadism/genetics , Mosaicism , Exome Sequencing
5.
Am J Hum Genet ; 93(2): 346-56, 2013 Aug 08.
Article in English | MEDLINE | ID: mdl-23891471

ABSTRACT

Primary ciliary dyskinesia (PCD) is a ciliopathy characterized by airway disease, infertility, and laterality defects, often caused by dual loss of the inner dynein arms (IDAs) and outer dynein arms (ODAs), which power cilia and flagella beating. Using whole-exome and candidate-gene Sanger resequencing in PCD-affected families afflicted with combined IDA and ODA defects, we found that 6/38 (16%) carried biallelic mutations in the conserved zinc-finger gene BLU (ZMYND10). ZMYND10 mutations conferred dynein-arm loss seen at the ultrastructural and immunofluorescence level and complete cilia immotility, except in hypomorphic p.Val16Gly (c.47T>G) homozygote individuals, whose cilia retained a stiff and slowed beat. In mice, Zmynd10 mRNA is restricted to regions containing motile cilia. In a Drosophila model of PCD, Zmynd10 is exclusively expressed in cells with motile cilia: chordotonal sensory neurons and sperm. In these cells, P-element-mediated gene silencing caused IDA and ODA defects, proprioception deficits, and sterility due to immotile sperm. Drosophila Zmynd10 with an equivalent c.47T>G (p.Val16Gly) missense change rescued mutant male sterility less than the wild-type did. Tagged Drosophila ZMYND10 is localized primarily to the cytoplasm, and human ZMYND10 interacts with LRRC6, another cytoplasmically localized protein altered in PCD. Using a fly model of PCD, we conclude that ZMYND10 is a cytoplasmic protein required for IDA and ODA assembly and that its variants cause ciliary dysmotility and PCD with laterality defects.


Subject(s)
Cilia/genetics , Dyneins/genetics , Infertility, Male/genetics , Kartagener Syndrome/genetics , Proteins/genetics , Respiratory System/metabolism , Tumor Suppressor Proteins/genetics , Animals , Axoneme/genetics , Axoneme/metabolism , Axoneme/pathology , Cilia/metabolism , Cilia/pathology , Cytoskeletal Proteins , Drosophila melanogaster/genetics , Drosophila melanogaster/metabolism , Dyneins/metabolism , Exome , Female , Gene Expression Regulation , High-Throughput Nucleotide Sequencing , Humans , Infertility, Male/metabolism , Infertility, Male/pathology , Kartagener Syndrome/metabolism , Kartagener Syndrome/pathology , Male , Mice , Mutation , Pedigree , Protein Structure, Tertiary , Proteins/metabolism , Respiratory System/pathology , Tumor Suppressor Proteins/metabolism
6.
Genet Med ; 18(2): 145-51, 2016 Feb.
Article in English | MEDLINE | ID: mdl-26087173

ABSTRACT

PURPOSE: We evaluated the effects of cystic fibrosis (CF) carrier screening on birth prevalence trends and newborn screening (NBS) efficiency by comparing two Italian regions; carrier screening was performed in one region (eastern region (ER)) and not in the other (western region (WR)). METHODS: Annual births of infants with CF, NBS false-positive results, NBS uncertain diagnoses (borderline sweat chloride (BSC)), carrier tests performed, and carriers detected were monitored during the 1993-2013 period. MEASUREMENTS AND MAIN RESULTS: A total of 259 newborns with CF were detected. In the ER, 150 carrier couples were found. Mean annual percentage of birth prevalence decrease was 9% per 10,000 (P = 0.002) and was greater in the ER (15%, P = 0.0008; WR 1%, P = ns). The WR estimated birth prevalence was 1/3,589 in 1993 and 1/3,870 in 2013; in the ER it was 1/2,730 in 1993 and 1/14,200 in 2013. The ER birth prevalence correlated inversely with the number of carrier couples (P = 0.0032). The ratio between CF cases and NBS-positive results significantly decreased in the ER (1.6%, P = 0.0001) but not in the WR. The ratio between prevalence of BSC and of CF cases increased in the ER (P = 0.008) but not in the WR (P = 0.1). CONCLUSION: Carrier screening was connected with a decrease in birth prevalence of CF. Poorer NBS performance was observed in the carrier screening area.


Subject(s)
Cystic Fibrosis/epidemiology , Cystic Fibrosis/genetics , Heterozygote , Neonatal Screening , Cystic Fibrosis/diagnosis , Genetic Testing , Humans , Infant, Newborn , Italy/epidemiology , Prevalence
7.
JCI Insight ; 8(5)2023 03 08.
Article in English | MEDLINE | ID: mdl-36729644

ABSTRACT

In vertebrate species, fertility is controlled by gonadotropin-releasing hormone (GnRH) neurons. GnRH cells arise outside the central nervous system, in the developing olfactory pit, and migrate along olfactory/vomeronasal/terminal nerve axons into the forebrain during embryonic development. Congenital hypogonadotropic hypogonadism (CHH) and Kallmann syndrome are rare genetic disorders characterized by infertility, and they are associated with defects in GnRH neuron migration and/or altered GnRH secretion and signaling. Here, we documented the expression of the jagged-1/Notch signaling pathway in GnRH neurons and along the GnRH neuron migratory route both in zebrafish embryos and in human fetuses. Genetic knockdown of the zebrafish ortholog of JAG1 (jag1b) resulted in altered GnRH migration and olfactory axonal projections to the olfactory bulbs. Next-generation sequencing was performed in 467 CHH unrelated probands, leading to the identification of heterozygous rare variants in JAG1. Functional in vitro validation of JAG1 mutants revealed that 7 out of the 9 studied variants exhibited reduced protein levels and altered subcellular localization. Together our data provide compelling evidence that Jag1/Notch signaling plays a prominent role in the development of GnRH neurons, and we propose that JAG1 insufficiency may contribute to the pathogenesis of CHH in humans.


Subject(s)
Gonadotropin-Releasing Hormone , Hypogonadism , Female , Pregnancy , Animals , Humans , Gonadotropin-Releasing Hormone/genetics , Jagged-1 Protein/genetics , Zebrafish , Signal Transduction , Hypogonadism/genetics
8.
Hum Mutat ; 33(3): 495-503, 2012 Mar.
Article in English | MEDLINE | ID: mdl-22102620

ABSTRACT

Primary ciliary dyskinesia (PCD) is an inherited disorder causing significant upper and lower respiratory tract morbidity and impaired fertility. Half of PCD patients show abnormal situs. Human disease loci have been identified but a mouse model without additional deleterious defects is elusive. The inversus viscerum mouse, mutated at the outer arm dynein heavy chain 11 locus (Dnahc11) is a known model of heterotaxy. We demonstrated immotile tracheal cilia with normal ultrastructure and reduced sperm motility in the Dnahc11(iv) mouse. This is accompanied by gross rhinitis, sinusitis, and otitis media, all indicators of human PCD. Strikingly, age-related progression of the disease is evident. The Dnahc11(iv) mouse is robust, lacks secondary defects, and requires no intervention to precipitate the phenotype. Together these findings show the Dnahc11(iv) mouse to be an excellent model of many aspects of human PCD. Mutation of the homologous human locus has previously been associated with hyperkinetic tracheal cilia in PCD. Two PCD patients with normal ciliary ultrastructure, one with immotile and one with hyperkinetic cilia were found to carry DNAH11 mutations. Three novel DNAH11 mutations were detected indicating that this gene should be investigated in patients with normal ciliary ultrastructure and static, as well as hyperkinetic cilia.


Subject(s)
Axonemal Dyneins/genetics , Kartagener Syndrome/genetics , Animals , Child , Child, Preschool , Disease Models, Animal , Female , Humans , Male , Mice , Mutation
9.
Psychiatry Res ; 196(2-3): 277-84, 2012 Apr 30.
Article in English | MEDLINE | ID: mdl-22377578

ABSTRACT

Current research in schizophrenia suggests that negative symptoms cannot be considered a unitary construct and should be divided in two dimensions: lack of motivation and impoverishment of expression. In addition, negative symptoms are particularly related to decreased daily-life functioning. In the present study, we aimed to replicate these results in a sample of participants with 22q11.2 deletion syndrome (22q11DS), a neurogenetic condition associated with high risk of developing schizophrenia. We also expected to observe an association between the COMT Val/Met polymorphism and negative symptoms. We examined the factorial structure of negative symptoms in a sample of 47 individuals with 22q11DS using the Structured Interview for Prodromal Symptoms (SIPS) and the Positive and Negative Syndrome Scale (PANSS). We also performed stepwise regression analyses to investigate the associations between negative symptoms, adaptive skills and the COMT Val/Met polymorphism. Negative symptoms were explained by a two-factor solution, namely the "amotivation and social withdrawal" and the "emotional withdrawal and expression" dimensions. The motivational dimension was significantly associated with daily-life functioning. Met carriers were rated as experiencing significantly more symptoms of amotivation. The results are interpreted in the light of existing cognitive models in the field of motivation and schizophrenia.


Subject(s)
Cognition Disorders/etiology , DiGeorge Syndrome/complications , Adaptation, Psychological/physiology , Adolescent , Catechol O-Methyltransferase/genetics , Child , Cognition Disorders/genetics , Factor Analysis, Statistical , Female , Humans , Intelligence , Male , Neuropsychological Tests , Polymorphism, Genetic/genetics , Predictive Value of Tests , Psychiatric Status Rating Scales , Severity of Illness Index , Young Adult
10.
Hum Mutat ; 30(9): E866-79, 2009 Sep.
Article in English | MEDLINE | ID: mdl-19562714

ABSTRACT

The study of transcription using genomic tiling arrays has lead to the identification of numerous additional exons. One example is the MECP2 gene on the X chromosome; using 5'RACE and RT-PCR in human tissues and cell lines, we have found more than 70 novel exons (RACEfrags) connecting to at least one annotated exon.. We sequenced all MECP2-connected exons and flanking sequences in 3 groups: 46 patients with the Rett syndrome and without mutations in the currently annotated exons of the MECP2 and CDKL5 genes; 32 patients with the Rett syndrome and identified mutations in the MECP2 gene; 100 control individuals from the same geoethnic group. Approximately 13 kb were sequenced per sample, (2.4 Mb of DNA resequencing). A total of 75 individuals had novel rare variants (mostly private variants) but no statistically significant difference was found among the 3 groups. These results suggest that variants in the newly discovered exons may not contribute to Rett syndrome. Interestingly however, there are about twice more variants in the novel exons than in the flanking sequences (44 vs. 21 for approximately 1.3 Mb sequenced for each class of sequences, p=0.0025). Thus the evolutionary forces that shape these novel exons may be different than those of neighboring sequences.


Subject(s)
Exons/genetics , Genetic Variation , Methyl-CpG-Binding Protein 2/genetics , Rett Syndrome/genetics , DNA Mutational Analysis , Female , Humans , Male , Methyl-CpG-Binding Protein 2/metabolism , Protein Serine-Threonine Kinases , Rett Syndrome/metabolism
11.
Hum Mutat ; 29(2): 289-98, 2008 Feb.
Article in English | MEDLINE | ID: mdl-18022865

ABSTRACT

Primary ciliary dyskinesia (PCD) is an inherited disorder characterized by perturbed or absent beating of motile cilia, which is referred to as Kartagener syndrome (KS) when associated with situs inversus. We present a German family in which five individuals have PCD and one has KS. PCD was confirmed by analysis of native and cultured respiratory ciliated epithelia with high-speed video microscopy. Respiratory ciliated cells from the affected individuals showed an abnormal nonflexible beating pattern with a reduced cilium bending capacity and a hyperkinetic beat. Interestingly, the axonemal ultrastructure of these respiratory cilia was normal and outer dynein arms were intact, as shown by electron microscopy and immunohistochemistry. Microsatellite analysis indicated genetic linkage to the dynein heavy chain DNAH11 on chromosome 7p21. All affected individuals carried the compound heterozygous DNAH11 mutations c.12384C>G and c.13552_13608del. Both mutations are located in the C-terminal domain and predict a truncated DNAH11 protein (p.Y4128X, p.A4518_A4523delinsQ). The mutations described here were not present in a cohort of 96 PCD patients. In conclusion, our findings support the view that DNAH11 mutations indeed cause PCD and KS, and that the reported DNAH11 nonsense mutations are associated with a normal axonemal ultrastructure and are compatible with normal male fertility.


Subject(s)
Axoneme/ultrastructure , Dyneins/genetics , Kartagener Syndrome/genetics , Mutation/genetics , Adolescent , Adult , Alleles , Amino Acid Sequence , Axonemal Dyneins , Cilia/ultrastructure , Dyneins/chemistry , Dyneins/metabolism , Epithelial Cells/metabolism , Epithelial Cells/pathology , Female , Humans , Immunohistochemistry , Infant , Male , Middle Aged , Molecular Sequence Data , Mutant Proteins/chemistry , Pedigree , Phenotype , Polymorphism, Single Nucleotide/genetics
12.
Respiration ; 76(2): 198-204, 2008.
Article in English | MEDLINE | ID: mdl-18434704

ABSTRACT

BACKGROUND: Primary ciliary dyskinesia (PCD) is a rare recessive hereditary disorder characterized by dysmotility to immotility of ciliated and flagellated structures. Its main symptoms are respiratory, caused by defective ciliary beating in the epithelium of the upper airways (nose, bronchi and paranasal sinuses). Impairing the drainage of inhaled microorganisms and particles leads to recurrent infections and pulmonary complications. To date, 5 genes encoding 3 dynein protein arm subunits (DNAI1, DNAH5 and DNAH11), the kinase TXNDC3 and the X-linked RPGR have been found to be mutated in PCD. OBJECTIVES: We proposed to determine the impact of the DNAI1 gene on a cohort of unrelated PCD patients (n = 104) recruited without any phenotypic preselection. METHODS: We used denaturing high-performance liquid chromatography and sequencing to screen for mutations in the coding and splicing site sequences of the gene DNAI1. RESULTS: Three mutations were identified: a novel missense variant (p.Glu174Lys) was found in 1 patient and 2 previously reported variants were identified (p.Trp568Ser in 1 patient and IVS1+2_3insT in 3 patients). Overall, mutations on both alleles of gene DNAI1 were identified in only 2% of our clinically heterogeneous cohort of patients. CONCLUSION: We conclude that DNAI1 gene mutation is not a common cause of PCD, and that major or several additional disease gene(s) still remain to be identified before a sensitive molecular diagnostic test can be developed for PCD.


Subject(s)
Dyneins/genetics , Kartagener Syndrome/genetics , Amino Acid Sequence , Axonemal Dyneins , DNA Mutational Analysis , Humans , Molecular Sequence Data
13.
Nat Commun ; 8: 14279, 2017 02 08.
Article in English | MEDLINE | ID: mdl-28176794

ABSTRACT

By moving essential body fluids and molecules, motile cilia and flagella govern respiratory mucociliary clearance, laterality determination and the transport of gametes and cerebrospinal fluid. Primary ciliary dyskinesia (PCD) is an autosomal recessive disorder frequently caused by non-assembly of dynein arm motors into cilia and flagella axonemes. Before their import into cilia and flagella, multi-subunit axonemal dynein arms are thought to be stabilized and pre-assembled in the cytoplasm through a DNAAF2-DNAAF4-HSP90 complex akin to the HSP90 co-chaperone R2TP complex. Here, we demonstrate that large genomic deletions as well as point mutations involving PIH1D3 are responsible for an X-linked form of PCD causing disruption of early axonemal dynein assembly. We propose that PIH1D3, a protein that emerges as a new player of the cytoplasmic pre-assembly pathway, is part of a complementary conserved R2TP-like HSP90 co-chaperone complex, the loss of which affects assembly of a subset of inner arm dyneins.


Subject(s)
Apoptosis Regulatory Proteins/genetics , Axonemal Dyneins/metabolism , Genes, X-Linked/genetics , Genetic Diseases, X-Linked/genetics , Kartagener Syndrome/genetics , Microtubule Proteins/genetics , Molecular Chaperones/genetics , Adolescent , Adult , Animals , Apoptosis Regulatory Proteins/metabolism , Axoneme/pathology , Child , Child, Preschool , Cilia/pathology , Cilia/ultrastructure , Cytoplasm/pathology , Disease Models, Animal , Female , Genetic Diseases, X-Linked/pathology , HEK293 Cells , HSP90 Heat-Shock Proteins/metabolism , Humans , Infant, Newborn , Intracellular Signaling Peptides and Proteins , Kartagener Syndrome/pathology , Male , Microscopy, Electron, Transmission , Pedigree , Phylogeny , Point Mutation , Protein Folding , Sequence Alignment , Sequence Deletion , Sperm Motility/genetics , Exome Sequencing , Zebrafish
14.
Thromb Haemost ; 96(6): 711-6, 2006 Dec.
Article in English | MEDLINE | ID: mdl-17139363

ABSTRACT

We describe the complex picture associated with a mutated splice junction in intron 13 of von Willebrand factor (VWF) gene. The proband, characterized by a marked decrease in plasma and platelet VWF and near normal multimer organization, was classified as recessive type 1 von Willebrand disease (VWD). Genetic analysis demonstrated that he was homozygous for the 1534-3C > A mutation in the consensus sequence of the acceptor splicing site of intron 13 of the VWF gene. Platelet mRNA analysis documented three VWF transcripts: a wild type generated by the correct recognition of the mutated splice site, a smaller transcript not containing exon 14, and a longer one that, in addition to exons 13 and 14, included a 62bp fragment corresponding to the end of intron 13. The small transcript derives from the skipping of exon 14, the long one from the activation of a cryptic splice site in intron 13; both show a premature stop codon in VWF propeptide, so the proband VWF derives entirely from the correct splice site recognition. Combined incomplete exon skipping and cryptic splice site activation are first recognized in VWD. Since the 1534-3C > A mutation does not abolish the normal processing of mRNA, it is unlikely to be found in type 3 VWD. This mutation therefore appears to be peculiar to type 1 VWD.


Subject(s)
Exons , Genes, Recessive , RNA Splice Sites , RNA Splicing , von Willebrand Diseases/genetics , von Willebrand Factor/genetics , Adenine , Adult , Blood Coagulation , Blood Coagulation Tests , Blood Platelets/metabolism , Cytosine , DNA Mutational Analysis , Factor VIII/metabolism , Homozygote , Humans , Introns , Male , Mutation , Pedigree , Platelet Function Tests , RNA, Messenger/metabolism , Time Factors , Transcription, Genetic , von Willebrand Diseases/blood , von Willebrand Factor/metabolism
15.
J Clin Endocrinol Metab ; 90(1): 152-6, 2005 Jan.
Article in English | MEDLINE | ID: mdl-15509635

ABSTRACT

Recent reports suggest that children born after intracytoplasmic sperm injection performed for male factor infertility are at increased risk of congenital malformations and chromosome aberrations. To explain these observations, we hypothesized that infertile men may be more likely than fertile men to have genetic abnormalities. We studied 750 severely oligozoospermic men (sperm count <5 million/ml) who were candidates for intracytoplasmic sperm injection, and 303 fertile men. We analyzed the peripheral blood karyotype, the Y chromosome long arm for detection of microdeletions in the azoospermia factors, and mutations in the cystic fibrosis gene and the androgen receptor gene. We also analyzed sperm for chromosome aneuploidies among the 421 men who subsequently entered the in vitro fertilization program. A total of 104 genetic abnormalities were diagnosed, corresponding to a frequency of 13.9% (104 of 750). Chromosomal aberrations were present in 5.6% (42 of 750) of infertile men and 0.3% of controls (one of 295), and they were in most cases alterations of the sex chromosomes. Y chromosome long-arm microdeletions were detected in 6.0% (45 of 750) of infertile men and most frequently included the azoospermia factor c, whereas no cases were found in controls (zero of 210). Mutations in the cystic fibrosis gene were diagnosed in 1.2% (nine of 750) of infertile men and 1.0% of controls (three of 303), and mutations in the androgen receptor gene were found in 1.1% (eight of 750) of infertile men and none of the 188 controls. Sperm sex chromosome aneuploidies were increased in men with karyotype anomalies and Y chromosome microdeletions as well as in subjects without constitutional genetic abnormalities. This study shows that the frequency of genetic alterations is increased among men with severe spermatogenic impairment. Genetic tests and genetic counseling should therefore be considered in oligozoospermic men who are candidates for intracytoplasmic sperm injection.


Subject(s)
Chromosome Aberrations , Oligospermia/genetics , Sperm Injections, Intracytoplasmic , Chromosomes, Human, Y , Cystic Fibrosis Transmembrane Conductance Regulator/genetics , Humans , Male , Spermatozoa/ultrastructure
16.
Eur J Endocrinol ; 152(3): 419-25, 2005 Mar.
Article in English | MEDLINE | ID: mdl-15757859

ABSTRACT

OBJECTIVE: Cryptorchidism is the most common congenital birth defect in male children, and accumulating evidence suggests that genetic abnormalities may be associated with it. The androgen receptor has two polymorphic sites in exon 1, with different numbers of CAG and GGC repeats, resulting in variable lengths of polyglutamine and polyglycine stretches. Longer CAG repeats result in a reduced androgen receptor transcriptional activity, but the role of the GGC triplets is less clear. In this study we analysed CAG and GGC repeat lengths in men with a history of cryptorchidism, associated or not with impairment of sperm production, in comparison with normal fertile subjects. METHODS: We analysed CAG and GGC repeat lengths in a group of 105 ex-cryptorchid men in comparison with 115 fertile non-cryptorchid men. RESULTS: No difference was found between patients and controls in the mean and median values, and in distribution of CAG and GGC, when considered separately. However, the analysis of the joint distribution of CAG and GGC showed that some combinations are significantly more frequent in men with bilateral cryptorchidism (who frequently presented severe testiculopathies), in a manner similar to that found in idiopathic infertile subjects. CONCLUSIONS: Although further studies are needed to elucidate the possible role of specific CAG/GGC combinations as a causative factor, these data suggest a possible association between androgen receptor gene polymorphisms and cryptorchidism.


Subject(s)
Cryptorchidism/genetics , Polymorphism, Genetic , Receptors, Androgen/genetics , Trinucleotide Repeats , Adult , Case-Control Studies , Cryptorchidism/physiopathology , Gene Frequency , Humans , Male , Medical Records , Prospective Studies , Spermatogenesis
17.
J Clin Endocrinol Metab ; 88(9): 4273-9, 2003 Sep.
Article in English | MEDLINE | ID: mdl-12970298

ABSTRACT

Testicular descent is a complex multistep embryonic process requiring the interaction between anatomical and hormonal factors. Failure in any of these steps results in cryptorchidism, the most frequent congenital anomaly of the urogenital tract in human males. Evidence for a genetic cause for cryptorchidism is numerous and supported by animal models. In particular, INSL3 and LGR8/GREAT proteins seem to act as ligand and receptor, respectively, and to have a role in gubernaculum development involved in testicular descent. In a cohort of 87 ex-cryptorchid patients and 80 controls, we looked for mutations in INSL3 and LGR8/GREAT genes by sequencing. Patients were classified on the basis of seminal, hormonal, and testicular cytological analyses. We found three mutations in the INSL3 gene in four patients and one LGR8/GREAT mutation in four patients (8 of 87, 9.2%). The eight patients show different phenotypes, ranging from normozoospermia to complete azoospermia, and from bilateral cryptorchidism to retractile testes. Furthermore, the endocrine function of the testis appears normal in all subjects. The findings of our study demonstrate that INSL3-LGR8/GREAT mutations are frequently associated with human cryptorchidism and are maternally inherited. The only clinical consequence of alterations of the INSL3-LGR8/GREAT system seems to be failure of the testis to normally descend in the scrotum during embryonic development, without affecting the spermatogenic and endocrine components of the testis itself.


Subject(s)
Cryptorchidism/genetics , Proteins/genetics , Receptors, Peptide/genetics , Adult , Amino Acid Substitution/genetics , Cryptorchidism/complications , DNA Mutational Analysis , DNA Primers , Exons/genetics , Haplotypes , Humans , Insulin , Introns/genetics , Male , Middle Aged , Models, Molecular , Mutation/genetics , Oligospermia/etiology , Oligospermia/genetics , Phenotype , Polymorphism, Genetic/genetics , Receptors, G-Protein-Coupled , Reverse Transcriptase Polymerase Chain Reaction , Sperm Count
18.
Eur J Hum Genet ; 20(10): 1032-6, 2012 Oct.
Article in English | MEDLINE | ID: mdl-22490987

ABSTRACT

Congenital nystagmus (NYS) is characterized by bilateral, spontaneous, and involuntary movements of the eyeballs that most commonly presents between 2 and 6 months of life. To date, 44 different FRMD7 gene mutations have been found to be etiological factors for the NYS1 locus at Xq26-q27. The aim of this study was to find the FRMD7 gene mutations in a large eleven-generation Indian pedigree with 71 members who are affected by NYS. Mutation analysis of the entire coding region and splice junctions of the FRMD7 gene revealed a novel missense mutation, c.A917G, predicts a substitution of Arg for Gln at codon 305 (Q305R) within exon 10 of FRMD7. The mutation was detected in hemizygous males, and in homozygous and heterozygous states in affected female members of the family. This mutation was not detected in unaffected members of the family or in 100 unrelated control subjects. This mutation was found to be at a highly conserved residue within the FERM-adjacent domain in affected members of the family. Structure prediction and energetic analysis of wild-type FRMD7 compared with mutant (Q305R) revealed that this change in amino acid led to a change in secondary structure predicted to be an energetically unstable protein. The present study represents the first confirmation of FRMD7 gene mutations in a multigenerational Indian family and expands the mutation spectrum for this locus.


Subject(s)
Cytoskeletal Proteins/genetics , Genetic Diseases, X-Linked/genetics , Membrane Proteins/genetics , Mutation, Missense/genetics , Nystagmus, Congenital/genetics , Adolescent , Adult , Aged , Aged, 80 and over , Case-Control Studies , Child , Consanguinity , Cytoskeletal Proteins/chemistry , Exons , Female , Genes, X-Linked/genetics , Genetic Diseases, X-Linked/epidemiology , Hemizygote , Heterozygote , Homozygote , Humans , India/epidemiology , Male , Membrane Proteins/chemistry , Middle Aged , Nystagmus, Congenital/epidemiology , Open Reading Frames , Pedigree , Protein Structure, Secondary
19.
Invest Ophthalmol Vis Sci ; 52(9): 6814-9, 2011 Aug 29.
Article in English | MEDLINE | ID: mdl-21357393

ABSTRACT

PURPOSE: Myopia is a common vision problem affecting almost one third of the world's population. It can occur as an isolated genetic condition or be associated with other anomalies and/or syndromes. Seventeen myopia loci have been identified on various chromosomes; however, no specific gene mutations have yet been identified. METHODS: Two large multigeneration Asian Indian pedigrees (UR006 and UR077) with isolated, nonsyndromic myopia were studied, in which the condition appeared to segregate as an X-linked recessive trait (MYP1; MIM 310460). The degree of myopia was variable in both families, ranging from -6 to -23 D (mean, -8.48 D) with the majority >7.0 D. To map the myopia locus in these families, polymorphic microsatellite markers covering the entire X chromosome were used in linkage analyses performed on 42 genomic DNA samples (13 affected and 29 normal) from both families. RESULTS: Marker DXYS154, which is located within the pseudoautosomal region in distal Xq28 (PAR2; pseudoautosomal region 2), gave a combined maximum LOD score of 5.3 at = 0 under an autosomal recessive model. Other markers in the region (near but not within the PAR2 region) that showed no recombination with the phenotype in both the families included DXS1108, DXS8087, and F8i13. CONCLUSIONS: Observation of recombination in family UR006 refined the disease locus to a ∼1.25-Mb region flanked by the proximal marker DXS1073 and distal marker DXYS154. Mutation search in exons and splice junctions of candidate genes CTAG2, GAB3, MPP1, F8Bver, FUNDC2, VBP1, RAB39B, CLIC2, TMLHE, SYBL, IL9R, SPRY3, and CXYorf1 did not detect a pathogenic or predisposing variant.


Subject(s)
Chromosomes, Human, X/genetics , Genes, Dominant/genetics , Genetic Association Studies/methods , Genetic Diseases, X-Linked/genetics , Genetic Linkage , Myopia/genetics , Pedigree , Asian People/genetics , Child , Child, Preschool , Chromosome Mapping , DNA Mutational Analysis , Female , Genetic Diseases, X-Linked/diagnosis , Haplotypes , Humans , India/epidemiology , Lod Score , Male , Microsatellite Repeats , Myopia/diagnosis
20.
Am J Hum Genet ; 81(1): 180-8, 2007 Jul.
Article in English | MEDLINE | ID: mdl-17564975

ABSTRACT

Nonsyndromic cleft lip with or without cleft palate (NSCL/P) is one of the most common congenital facial defects, with an incidence of 1 in 700-1,000 live births among individuals of European descent. Several linkage and association studies of NSCL/P have suggested numerous candidate genes and genomic regions. A genomewide linkage analysis of a large multigenerational family (UR410) with NSCL/P was performed using a single-nucleotide-polymorphism array. Nonparametric linkage (NPL) analysis provided significant evidence of linkage for marker rs728683 on chromosome 18q21.1 (NPL=43.33 and P=.000061; nonparametric LOD=3.97 and P=.00001). Parametric linkage analysis with a dominant mode of inheritance and reduced penetrance resulted in a maximum LOD score of 3.61 at position 47.4 Mb on chromosome 18q21.1. Haplotype analysis with informative crossovers defined a 5.7-Mb genomic region spanned by proximal marker rs1824683 (42,403,918 bp) and distal marker rs768206 (48,132,862 bp). Thus, a novel genomic region on 18q21.1 was identified that most likely harbors a high-risk variant for NSCL/P in this family; we propose to name this locus "OFC11" (orofacial cleft 11).


Subject(s)
Chromosomes, Human, Pair 18/genetics , Cleft Lip/genetics , Cleft Palate/genetics , Genetic Linkage , Genomics , Humans , Lod Score , Pedigree , Polymorphism, Genetic
SELECTION OF CITATIONS
SEARCH DETAIL