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Dive into the research topics where Francesca Lugani is active.

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Featured researches published by Francesca Lugani.


Nature Genetics | 2011

Genome-wide association study identifies susceptibility loci for IgA nephropathy

Ali G. Gharavi; Krzysztof Kiryluk; Murim Choi; Yifu Li; Ping Hou; Jingyuan Xie; Simone Sanna-Cherchi; Clara J. Men; Bruce A. Julian; Robert J. Wyatt; Jan Novak; John Cijiang He; Haiyan Wang; Jicheng Lv; Li Zhu; Weiming Wang; Zhaohui Wang; Kasuhito Yasuno; Murat Gunel; Shrikant Mane; Sheila Umlauf; Irina Tikhonova; Isabel Beerman; Silvana Savoldi; Riccardo Magistroni; Gian Marco Ghiggeri; Monica Bodria; Francesca Lugani; Pietro Ravani; Claudio Ponticelli

We carried out a genome-wide association study of IgA nephropathy, a major cause of kidney failure worldwide. We studied 1,194 cases and 902 controls of Chinese Han ancestry, with targeted follow up in Chinese and European cohorts comprising 1,950 cases and 1,920 controls. We identified three independent loci in the major histocompatibility complex, as well as a common deletion of CFHR1 and CFHR3 at chromosome 1q32 and a locus at chromosome 22q12 that each surpassed genome-wide significance (P values for association between 1.59 × 10−26 and 4.84 × 10−9 and minor allele odds ratios of 0.63–0.80). These five loci explain 4–7% of the disease variance and up to a tenfold variation in interindividual risk. Many of the alleles that protect against IgA nephropathy impart increased risk for other autoimmune or infectious diseases, and IgA nephropathy risk allele frequencies closely parallel the variation in disease prevalence among Asian, European and African populations, suggesting complex selective pressures.


Nature Genetics | 2014

Discovery of new risk loci for IgA nephropathy implicates genes involved in immunity against intestinal pathogens

Krzysztof Kiryluk; Li Y; Francesco Scolari; Sanna-Cherchi S; Murim Choi; Verbitsky M; Fasel D; Lata S; Sindhuri Prakash; Shapiro S; Fischman C; Holly J. Snyder; Gerald B. Appel; Izzi C; Viola Bf; Dallera N; Del Vecchio L; Barlassina C; Salvi E; F. Bertinetto; A. Amoroso; Savoldi S; Rocchietti M; Alessandro Amore; Licia Peruzzi; R. Coppo; Maurizio Salvadori; Pietro Ravani; Riccardo Magistroni; Ghiggeri Gm

We performed a genome-wide association study (GWAS) of IgA nephropathy (IgAN), the most common form of glomerulonephritis, with discovery and follow-up in 20,612 individuals of European and East Asian ancestry. We identified six new genome-wide significant associations, four in ITGAM-ITGAX, VAV3 and CARD9 and two new independent signals at HLA-DQB1 and DEFA. We replicated the nine previously reported signals, including known SNPs in the HLA-DQB1 and DEFA loci. The cumulative burden of risk alleles is strongly associated with age at disease onset. Most loci are either directly associated with risk of inflammatory bowel disease (IBD) or maintenance of the intestinal epithelial barrier and response to mucosal pathogens. The geospatial distribution of risk alleles is highly suggestive of multi-locus adaptation, and genetic risk correlates strongly with variation in local pathogens, particularly helminth diversity, suggesting a possible role for host–intestinal pathogen interactions in shaping the genetic landscape of IgAN.


PLOS ONE | 2012

Wolfram syndrome: new mutations, different phenotype.

Concetta Aloi; Alessandro Salina; Lorenzo Pasquali; Francesca Lugani; Katia Perri; Chiara Russo; Ramona Tallone; Gian Marco Ghiggeri; Renata Lorini; Giuseppe D'Annunzio

Background Wolfram Syndrome (WS) is an autosomal recessive neurodegenerative disorder characterized by Diabetes Insipidus, Diabetes Mellitus, Optic Atrophy, and Deafness identified by the acronym “DIDMOAD”. The WS gene, WFS1, encodes a transmembrane protein called Wolframin, which recent evidence suggests may serve as a novel endoplasmic reticulum calcium channel in pancreatic β-cells and neurons. WS is a rare disease, with an estimated prevalence of 1/550.000 children, with a carrier frequency of 1/354. The aim of our study was to determine the genotype of WS patients in order to establish a genotype/phenotype correlation. Methodology/Principal Findings We clinically evaluated 9 young patients from 9 unrelated families (6 males, 3 females). Basic criteria for WS clinical diagnosis were coexistence of insulin-treated diabetes mellitus and optic atrophy occurring before 15 years of age. Genetic analysis for WFS1 was performed by direct sequencing. Molecular sequencing revealed 5 heterozygous compound and 3 homozygous mutations. All of them were located in exon 8, except one in exon 4. In one proband only an heterozygous mutation (A684V) was found. Two new variants c.2663 C>A and c.1381 A>C were detected. Conclusions/Significance Our study increases the spectrum of WFS1 mutations with two novel variants. The male patient carrying the compound mutation [c.1060_1062delTTC]+[c.2663 C>A] showed the most severe phenotype: diabetes mellitus, optic atrophy (visual acuity 5/10), deafness with deep auditory bilaterally 8000 Hz, diabetes insipidus associated to reduced volume of posterior pituitary and pons. He died in bed at the age of 13 years. The other patient carrying the compound mutation [c.409_424dup16]+[c.1381 A>C] showed a less severe phenotype (DM, OA).


Nephrology Dialysis Transplantation | 2014

Novel INF2 mutations in an Italian cohort of patients with focal segmental glomerulosclerosis, renal failure and Charcot-Marie-Tooth neuropathy

Gianluca Caridi; Francesca Lugani; Monica Dagnino; Maddalena Gigante; Achille Iolascon; Mariateresa Falco; Claudio Graziano; Elisa Benetti; Mauro Dugo; Dorella Del Prete; Antonio Granata; Donella Borracelli; Elisabetta Moggia; Marco Quaglia; Rita Rinaldi; Loreto Gesualdo; Gian Marco Ghiggeri

BACKGROUND Mutations of INF2 represent the major cause of familial autosomal dominant (AD) focal segmental glomerulosclerosis (FSGS). A few patients present neurological symptoms of Charcot-Marie-Tooth (CMT) disease but the prevalence of the association has not been assessed yet. METHODS We screened 28 families with AD FSGS and identified 8 INF2 mutations in 9 families (32 patients overall), 3 of which were new. Mutations were in all cases localized in the diaphanous-inhibitory domain (DID) of the protein. RESULTS Clinical features associated with INF2 mutations in our patient cohort included mild proteinuria (1.55 g/L; range 1-2.5) and haematuria as a unique symptom that was recognized at a median age of 21.75 years (range 8-30). Eighteen patients developed end-stage renal disease during their third decade of life; 12 patients presented a creatinine range between 1.2 and 1.5 mg/dL and 2 were healthy at 45 and 54 years of age. CMT was diagnosed in four cases (12.5%); one of these patients presented an already known mutation on exon 2 of INF2, whereas the other patients presented the same mutation on exon 4, a region that was not previously associated with CMT. CONCLUSIONS We confirmed the high incidence of INF2 mutations in families with AD FSGS. The clinical phenotype was mild at the onset of the disease, but evolution to ESRD was frequent. The incidence of CMT has, for the first time, been calculated here to be 12.5% of mutation carriers. Our findings support INF2 gene analysis in families in which renal failure and/or neuro-sensorial defects are inherited following an AD model.


European Journal of Clinical Investigation | 2013

A novel mutation in the albumin gene (c.1A>C) resulting in analbuminemia.

Gianluca Caridi; Monica Dagnino; Francesca Lugani; Stavit A. Shalev; Monica Campagnoli; Monica Galliano; Ronen Spiegel; Lorenzo Minchiotti

Eur J Clin Invest 2012


PLOS Genetics | 2013

A Retrotransposon Insertion in the 5' Regulatory Domain of Ptf1a Results in Ectopic Gene Expression and Multiple Congenital Defects in Danforth’s Short Tail Mouse

Francesca Lugani; Ripla Arora; Natalia Papeta; Ami Patel; Zongyu Zheng; Roel Sterken; Ruth A. Singer; Gianluca Caridi; Cathy Mendelsohn; Lori Sussel; Virginia E. Papaioannou; Ali G. Gharavi

Danforths short tail mutant (Sd) mouse, first described in 1930, is a classic spontaneous mutant exhibiting defects of the axial skeleton, hindgut, and urogenital system. We used meiotic mapping in 1,497 segregants to localize the mutation to a 42.8-kb intergenic segment on chromosome 2. Resequencing of this region identified an 8.5-kb early retrotransposon (ETn) insertion within the highly conserved regulatory sequences upstream of Pancreas Specific Transcription Factor, 1a (Ptf1a). This mutation resulted in up to tenfold increased expression of Ptf1a as compared to wild-type embryos at E9.5 but no detectable changes in the expression levels of other neighboring genes. At E9.5, Sd mutants exhibit ectopic Ptf1a expression in embryonic progenitors of every organ that will manifest a developmental defect: the notochord, the hindgut, and the mesonephric ducts. Moreover, at E 8.5, Sd mutant mice exhibit ectopic Ptf1a expression in the lateral plate mesoderm, tail bud mesenchyme, and in the notochord, preceding the onset of visible defects such as notochord degeneration. The Sd heterozygote phenotype was not ameliorated by Ptf1a haploinsufficiency, further suggesting that the developmental defects result from ectopic expression of Ptf1a. These data identify disruption of the spatio-temporal pattern of Ptf1a expression as the unifying mechanism underlying the multiple congenital defects in Danforths short tail mouse. This striking example of an enhancer mutation resulting in profound developmental defects suggests that disruption of conserved regulatory elements may also contribute to human malformation syndromes.


Annals of Clinical Biochemistry | 2016

A novel splicing mutation in the albumin gene (c.270+1G>T) causes analbuminaemia in a German infant

Gianluca Caridi; Wolfgang Thomas; Monica Campagnoli; Francesca Lugani; Monica Galliano; Lorenzo Minchiotti

Congenital analbuminaemia is a rare autosomal recessive disorder manifested by the presence of a very low amount of circulating serum albumin. The clinical diagnosis may be challenging because of the absence of unambiguous symptoms and because hypoalbuminemia may have many causes different from a genetic lack of the protein. We describe the clinical and molecular characterization of a new case of congenital analbuminaemia in an infant of apparently non-consanguineous parents from Treves, Germany. For molecular diagnosis, we used our strategy, based on the screening of the albumin gene by single-strand conformation polymorphism, heteroduplex analysis and direct DNA sequencing, which revealed that the proband is homozygous and both parents are heterozygous, for a novel G > T transversion at nucleotide c.270+ 1, the first base of intron 3. The mutation inactivates the strongly conserved GT dinucleotide at the 5′ splice site consensus sequence of this intron. In conclusion, we report the clinical findings and the molecular defect of this case, which contributes to a better understanding of the biological mechanism of congenital analbuminaemia.


Biomarker Insights | 2016

Urine Proteome Biomarkers in Kidney Diseases. I. Limits, Perspectives, and First Focus on Normal Urine

Laura Santucci; Maurizio Bruschi; Giovanni Candiano; Francesca Lugani; Andrea Petretto; Alice Bonanni; Gian Marco Ghiggeri

Urine proteome is a potential source of information in renal diseases, and it is considered a natural area of investigation for biomarkers. Technology developments have markedly increased the power analysis on urinary proteins, and it is time to confront methodologies and results of major studies on the topics. This is a first part of a series of reviews that will focus on the urine proteome as a site for detecting biomarkers of renal diseases; the theme of the first review concerns methodological aspects applied to normal urine. Main issues are techniques for urine pretreatment, separation of exosomes, use of combinatorial peptide ligand libraries, mass spectrometry approaches, and analysis of data sets. Available studies show important differences, suggesting a major confounding effect of the technologies utilized for analysis. The objective is to obtain consensus about which approaches should be utilized for studying urine proteome in renal diseases.


Biochemia Medica | 2016

A nucleotide deletion and frame-shift cause analbuminemia in a Turkish family

Gianluca Caridi; Elif Yilmaz Gulec; Monica Campagnoli; Francesca Lugani; Hasan Onal; Duzgun Kilic; Monica Galliano; Lorenzo Minchiotti

Congenital analbuminemia is an autosomal recessive disorder, in which albumin, the major blood protein, is present only in a minute amount. The condition is a rare allelic heterogeneous defect, only about seventy cases have been reported worldwide. To date, more than twenty different mutations within the albumin gene have been found to cause the trait. In our continuing study of the molecular genetics of congenital analbuminemia, we report here the clinical and biochemical findings and the mutation analysis of the gene in two Turkish infants. For the molecular analysis, we used our strategy, based on the screening of the gene by single-strand conformation polymorphism, heteroduplex analysis and direct DNA sequencing. The results showed that both patients are homozygous for the deletion of a cytosine residue in exon 5, in a stretch of four cytosines starting from nucleotide position 524 and ending at position 527 (NM_000477.5(ALB):c.527delC). The subsequent frame-shift inserts a stop codon in position 215, markedly reducing the size of the predicted protein product. The parents are both heterozygous for the same mutation, for which we propose the name Erzurum from the city of origin of the family. In conclusion, our results show that in this family congenital analbuminemia is caused by a novel frame-shift/deletion defect, confirm the inheritance of the trait, and contribute to advance our understanding of the molecular basis underlying this condition.


Diabetes Research and Clinical Practice | 2013

Hyperglycaemia and β-cell antibodies: Is it always pre-type 1 diabetes?

Giuseppe d’Annunzio; Marta Marchi; Concetta Aloi; Alessandro Salina; Francesca Lugani; Renata Lorini

We describe 10-year-old girl with mild incidental hyperglycaemia, impaired glucose tolerance and GADA positivity. Family history for mild hyperglycaemia and GADA fluctuation alerted us to a possible MODY diagnosis which was confirmed by detection of GCK mutation c.626C>T; p.T209M. Weak or transient β-cell autoimmunity should not preclude genetic testing for MODY when the clinical features are suggestive.

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Gianluca Caridi

Istituto Giannina Gaslini

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Renata Lorini

Istituto Giannina Gaslini

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