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Dive into the research topics where Giorgia Girotto is active.

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Featured researches published by Giorgia Girotto.


PLOS Genetics | 2012

Evidence of Inbreeding Depression on Human Height

Ruth McQuillan; Niina Eklund; Nicola Pirastu; Maris Kuningas; Brian P. McEvoy; Tonu Esko; Tanguy Corre; Gail Davies; Marika Kaakinen; Leo-Pekka Lyytikäinen; Kati Kristiansson; Aki S. Havulinna; Martin Gögele; Veronique Vitart; Albert Tenesa; Yurii S. Aulchenko; Caroline Hayward; Åsa Johansson; Mladen Boban; Sheila Ulivi; Antonietta Robino; Vesna Boraska; Wilmar Igl; Sarah H. Wild; Lina Zgaga; Najaf Amin; Evropi Theodoratou; Ozren Polasek; Giorgia Girotto; Lorna M. Lopez

Stature is a classical and highly heritable complex trait, with 80%–90% of variation explained by genetic factors. In recent years, genome-wide association studies (GWAS) have successfully identified many common additive variants influencing human height; however, little attention has been given to the potential role of recessive genetic effects. Here, we investigated genome-wide recessive effects by an analysis of inbreeding depression on adult height in over 35,000 people from 21 different population samples. We found a highly significant inverse association between height and genome-wide homozygosity, equivalent to a height reduction of up to 3 cm in the offspring of first cousins compared with the offspring of unrelated individuals, an effect which remained after controlling for the effects of socio-economic status, an important confounder (χ2 = 83.89, df = 1; p = 5.2×10−20). There was, however, a high degree of heterogeneity among populations: whereas the direction of the effect was consistent across most population samples, the effect size differed significantly among populations. It is likely that this reflects true biological heterogeneity: whether or not an effect can be observed will depend on both the variance in homozygosity in the population and the chance inheritance of individual recessive genotypes. These results predict that multiple, rare, recessive variants influence human height. Although this exploratory work focuses on height alone, the methodology developed is generally applicable to heritable quantitative traits (QT), paving the way for an investigation into inbreeding effects, and therefore genetic architecture, on a range of QT of biomedical importance.


Journal of Medical Genetics | 2011

Hearing function and thresholds: a genome-wide association study in European isolated populations identifies new loci and pathways

Giorgia Girotto; Nicola Pirastu; Rossella Sorice; Ginevra Biino; Harry Campbell; Adamo Pio D'Adamo; Nicholas D. Hastie; Teresa Nutile; Ozren Polasek; Laura Portas; Igor Rudan; Sheila Ulivi; Tatijana Zemunik; Alan F. Wright; Marina Ciullo; Caroline Hayward; Mario Pirastu; Paolo Gasparini

Background Hearing is a complex trait, but until now only a few genes are known to contribute to variability of this process. In order to discover genes and pathways that underlie auditory function, a genome-wide association study was carried out within the International Consortium G-EAR. Methods Meta-analysis of genome-wide association studys data from six isolated populations of European ancestry for an overall number of 3417 individuals. Results Eight suggestive significant loci (p<10−7) were detected with a series of genes expressed within the inner ear such as: DCLK1, PTPRD, GRM8, CMIP. Additional biological candidates marked by a single nucleotide polymorphism (SNP) with a suggestive association (p<10−6) were identified, as well as loci encompassing ‘gene desert regions’—genes of unknown function or genes whose function has not be linked to hearing so far. Some of these new loci map to already known hereditary hearing loss loci whose genes still need to be identified. Data have also been used to construct a highly significant ‘in silico’ pathway for hearing function characterised by a network of 49 genes, 34 of which are certainly expressed in the ear. Conclusion These results provide new insights into the molecular basis of hearing function and may suggest new targets for hearing impairment treatment and prevention.


Journal of The American Society of Nephrology | 2014

Common Variants in UMOD Associate with Urinary Uromodulin Levels: A Meta-Analysis

Matthias Olden; Tanguy Corre; Caroline Hayward; Daniela Toniolo; Sheila Ulivi; Paolo Gasparini; Giorgio Pistis; Shih Jen Hwang; Sven Bergmann; Harry Campbell; Massimiliano Cocca; Ilaria Gandin; Giorgia Girotto; Bob Glaudemans; Nicholas D. Hastie; Johannes Loffing; Ozren Polasek; Luca Rampoldi; Igor Rudan; Cinzia Sala; Michela Traglia; Peter Vollenweider; Dragana Vuckovic; Sonia Youhanna; Julien Weber; Alan F. Wright; Zoltán Kutalik; Murielle Bochud; Caroline S. Fox; Olivier Devuyst

Uromodulin is expressed exclusively in the thick ascending limb and is the most abundant protein excreted in normal urine. Variants in UMOD, which encodes uromodulin, are associated with renal function, and urinary uromodulin levels may be a biomarker for kidney disease. However, the genetic factors regulating uromodulin excretion are unknown. We conducted a meta-analysis of urinary uromodulin levels to identify associated common genetic variants in the general population. We included 10,884 individuals of European descent from three genetic isolates and three urban cohorts. Each study measured uromodulin indexed to creatinine and conducted linear regression analysis of approximately 2.5 million single nucleotide polymorphisms using an additive model. We also tested whether variants in genes expressed in the thick ascending limb associate with uromodulin levels. rs12917707, located near UMOD and previously associated with renal function and CKD, had the strongest association with urinary uromodulin levels (P<0.001). In all cohorts, carriers of a G allele of this variant had higher uromodulin levels than noncarriers did (geometric means 10.24, 14.05, and 17.67 μg/g creatinine for zero, one, or two copies of the G allele). rs12446492 in the adjacent gene PDILT (protein disulfide isomerase-like, testis expressed) also reached genome-wide significance (P<0.001). Regarding genes expressed in the thick ascending limb, variants in KCNJ1, SORL1, and CAB39 associated with urinary uromodulin levels. These data indicate that common variants in the UMOD promoter region may influence urinary uromodulin levels. They also provide insights into uromodulin biology and the association of UMOD variants with renal function.


Gene | 2014

Hereditary hearing loss: a 96 gene targeted sequencing protocol reveals novel alleles in a series of Italian and Qatari patients

Diego Vozzi; Anna Morgan; Dragana Vuckovic; Angela D'Eustacchio; Khalid Abdulhadi; Elisa Rubinato; Ramin Badii; Paolo Gasparini; Giorgia Girotto

Deafness is a really common disorder in humans. It can begin at any age with any degree of severity. Hereditary hearing loss is characterized by a vast genetic heterogeneity with more than 140 loci described in humans but only 65 genes so far identified. Families affected by hearing impairment would have real advantages from an early molecular diagnosis that is of primary relevance in genetic counseling. In this perspective, here we report a family-based approach employing Ion Torrent DNA sequencing technology to analyze coding and UTR regions of 96 genes related to hearing function and loss in a first series of 12 families coming from Italy and Qatar. Using this approach we were able to find the causative gene in 4 out of these 12 families (33%). In particular 5 novel alleles were identified in the following genes LOXHD1, TMPRSS3, TECTA and MYO15A already associated with hearing impairment. Our study confirms the usefulness of a targeted sequencing approach despite larger numbers are required for further validation and for defining a molecular epidemiology picture of hearing loss in these two countries.


PLOS ONE | 2013

Linkage study and exome sequencing identify a BDP1 mutation associated with hereditary hearing loss

Giorgia Girotto; Khalid Abdulhadi; Annalisa Buniello; Diego Vozzi; Danilo Licastro; Angela D'Eustacchio; Dragana Vuckovic; Moza Khalifa Alkowari; Karen P. Steel; Ramin Badii; Paolo Gasparini

Nonsyndromic Hereditary Hearing Loss is a common disorder accounting for at least 60% of prelingual deafness. GJB2 gene mutations, GJB6 deletion, and the A1555G mitochondrial mutation play a major role worldwide in causing deafness, but there is a high degree of genetic heterogeneity and many genes involved in deafness have not yet been identified. Therefore, there remains a need to search for new causative mutations. In this study, a combined strategy using both linkage analysis and sequencing identified a new mutation causing hearing loss. Linkage analysis identified a region of 40 Mb on chromosome 5q13 (LOD score 3.8) for which exome sequencing data revealed a mutation (c.7873 T>G leading to p.*2625Gluext*11) in the BDP1 gene (B double prime 1, subunit of RNA polymerase III transcription initiation factor IIIB) in patients from a consanguineous Qatari family of second degree, showing bilateral, post-lingual, sensorineural moderate to severe hearing impairment. The mutation disrupts the termination codon of the transcript resulting in an elongation of 11 residues of the BDP1 protein. This elongation does not contain any known motif and is not conserved across species. Immunohistochemistry studies carried out in the mouse inner ear showed Bdp1 expression within the endothelial cells in the stria vascularis, as well as in mesenchyme-derived cells surrounding the cochlear duct. The identification of the BDP1 mutation increases our knowledge of the molecular bases of Nonsyndromic Hereditary Hearing Loss and provides new opportunities for the diagnosis and treatment of this disease in the Qatari population.


Neurobiology of Aging | 2013

Estrogen-related receptor gamma and hearing function: evidence of a role in humans and mice

Lisa S. Nolan; Hannes Maier; Irm Hermans-Borgmeyer; Giorgia Girotto; Russell Ecob; Nicola Pirastu; Barbara A. Cadge; Christian A. Hübner; Paolo Gasparini; David P. Strachan; Adrian Davis; Sally J. Dawson

Since estrogen is thought to protect pre-menopausal women from age-related hearing loss, we investigated whether variation in estrogen-signalling genes is linked to hearing status in the 1958 British Birth Cohort. This analysis implicated the estrogen-related receptor gamma (ESRRG) gene in determining adult hearing function and was investigated further in a total of 6134 individuals in 3 independent cohorts: (i) the 1958 British Birth Cohort; (ii) a London ARHL case-control cohort; and (iii) a cohort from isolated populations of Italy and Silk Road countries. Evidence of an association between the minor allele of single nucleotide polymorphism (SNP) rs2818964 and hearing status was found in females, but not in males in 2 of these cohorts: p = 0.0058 (London ARHL) and p = 0.0065 (Carlantino, Italy). Furthermore, assessment of hearing in Esrrg knock-out mice revealed a mild 25-dB hearing loss at 5 weeks of age. At 12 weeks, average hearing thresholds in female mice(-/-) were 15 dB worse than in males(-/-). Together these data indicate ESRRG plays a role in maintenance of hearing in both humans and mice.


European Journal of Haematology | 2010

MYH9 related disease: four novel mutations of the tail domain of myosin-9 correlating with a mild clinical phenotype.

Alessandro Pecci; Emanuele Panza; Daniela De Rocco; Nuria Pujol-Moix; Giorgia Girotto; Luigi Podda; Carmelo Paparo; Valeria Bozzi; Annalisa Pastore; Carlo L. Balduini; Marco Seri; Anna Savoia

MYH9‐related disease (MYH9‐RD) is a rare autosomal dominant disorder caused by mutations in MYH9, the gene encoding the heavy chain of non‐muscle myosin IIA. All patients present congenital macrothrombocytopenia and inclusion bodies in neutrophils. Some of them can also develop sensorineural deafness, presenile cataract, and/or progressive nephropathy leading to end‐stage renal failure. We report four families, each with a novel mutation: two missense mutations, in exons 31 and 32, and two out of frame deletions in exon 40. They were associated with no bleeding diathesis, normal, or only slightly reduced platelet count and no extra‐hematological manifestations, confirming that alterations of the tail domain cause a mild form of MYH9‐RD with no clinically relevant defects.


International Journal of Audiology | 2012

GJB2 and GJB6 genes and the A1555G mitochondrial mutation are only minor causes of nonsyndromic hearing loss in the Qatari population

M. Khalifa Alkowari; Giorgia Girotto; Khalid Abdulhadi; S. Dipresa; R. Siam; N. Najjar; Ramin Badii; Paolo Gasparini

Abstract Objective: This study reports results from the first survey of the genetic causes of nonsyndromic sensorineural hearing loss (NSHHL) in the Qatari population. Design and Study samples: Data were collected from 126 Qatari patients (58 males and 68 females) belonging to inbred families (56%), showing an autosomal recessive pattern of inheritance (96%). Fifty-three patients were less than 10 years old, 55 in the age range of 10 to 20 years, while 18 were aged between 20 and 30 years. All subjects had moderate to severe sensorineural hearing loss and were screened for GJB2 mutations, GJB6 deletion, and for A1555G mitochondrial mutation. Results: Four patients were homozygous and one was heterozygous for c.35delG; five were homozygous for the IVS1 + 1G < A, and two were heterozygous for c.229 T > C. Only 8.3% of the pathogenic alleles were detected. No patients were positive for GJB6 deletion or for A1555G . Conclusions: These findings: (1) demonstrate that GJB2, GJB6 deletion and A1555G mutation account for a minor proportion of NSHHL in the Qatari population, (2) further strengthen the need to search for causative genes, (3) clearly contribute to establishing preventive strategies for NSHHL in Qatar and in the Gulf area.


PLOS ONE | 2014

Expression and replication studies to identify new candidate genes involved in normal hearing function.

Giorgia Girotto; Dragana Vuckovic; Annalisa Buniello; Beatriz Lorente-Cánovas; Morag A. Lewis; Paolo Gasparini; Karen P. Steel

Considerable progress has been made in identifying deafness genes, but still little is known about the genetic basis of normal variation in hearing function. We recently carried out a Genome Wide Association Study (GWAS) of quantitative hearing traits in southern European populations and found several SNPs with suggestive but none with significant association. In the current study, we followed up these SNPs to investigate which of them might show a genuine association with auditory function using alternative approaches. Firstly, we generated a shortlist of 19 genes from the published GWAS results. Secondly, we carried out immunocytochemistry to examine expression of these 19 genes in the mouse inner ear. Twelve of them showed distinctive cochlear expression patterns. Four showed expression restricted to sensory hair cells (Csmd1, Arsg, Slc16a6 and Gabrg3), one only in marginal cells of the stria vascularis (Dclk1) while the others (Ptprd, Grm8, GlyBP, Evi5, Rimbp2, Ank2, Cdh13) in multiple cochlear cell types. In the third step, we tested these 12 genes for replication of association in an independent set of samples from the Caucasus and Central Asia. Nine out of them showed nominally significant association (p<0.05). In particular, 4 were replicated at the same SNP and with the same effect direction while the remaining 5 showed a significant association in a gene-based test. Finally, to look for genotype-phenotype relationship, the audiometric profiles of the three genotypes of the most strongly associated gene variants were analyzed. Seven out of the 9 replicated genes (CDH13, GRM8, ANK2, SLC16A6, ARSG, RIMBP2 and DCLK1) showed an audiometric pattern with differences between different genotypes further supporting their role in hearing function. These data demonstrate the usefulness of this multistep approach in providing new insights into the molecular basis of hearing and may suggest new targets for treatment and prevention of hearing impairment.


Hearing Research | 2015

Usher syndrome: an effective sequencing approach to establish a genetic and clinical diagnosis.

S. Lenarduzzi; D. Vozzi; Anna Morgan; Elisa Rubinato; A. D'Eustacchio; T.M. Osland; C. Rossi; C. Graziano; P. Castorina; U. Ambrosetti; M. Morgutti; Giorgia Girotto

Usher syndrome is an autosomal recessive disorder characterized by retinitis pigmentosa, sensorineural hearing loss and, in some cases, vestibular dysfunction. The disorder is clinically and genetically heterogeneous and, to date, mutations in 11 genes have been described. This finding makes difficult to get a precise molecular diagnosis and offer patients accurate genetic counselling. To overcome this problem and to increase our knowledge of the molecular basis of Usher syndrome, we designed a targeted resequencing custom panel. In a first validation step a series of 16 Italian patients with known molecular diagnosis were analysed and 31 out of 32 alleles were detected (97% of accuracy). After this step, 31 patients without a molecular diagnosis were enrolled in the study. Three out of them with an uncertain Usher diagnosis were excluded. One causative allele was detected in 24 out 28 patients (86%) while the presence of both causative alleles characterized 19 patients out 28 (68%). Sixteen novel and 27 known alleles were found in the following genes: USH2A (50%), MYO7A (7%), CDH23 (11%), PCDH15 (7%) and USH1G (2%). Overall, on the 44 patients the protocol was able to characterize 74 alleles out of 88 (84%). These results suggest that our panel is an effective approach for the genetic diagnosis of Usher syndrome leading to: 1) an accurate molecular diagnosis, 2) better genetic counselling, 3) more precise molecular epidemiology data fundamental for future interventional plans.

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Ramin Badii

Hamad Medical Corporation

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Massimo Mezzavilla

Wellcome Trust Sanger Institute

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Ginevra Biino

National Research Council

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