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The copy number variation landscape of congenital anomalies of the kidney and urinary tract.

Miguel Verbitsky | Rik Westland | Alejandra Perez | Krzysztof Kiryluk | Qingxue Liu | Priya Krithivasan | Adele Mitrotti | David A Fasel | Ekaterina Batourina | Matthew G Sampson | Monica Bodria | Max Werth | Charlly Kao | Jeremiah Martino | Valentina P Capone | Asaf Vivante | Shirlee Shril | Byum Hee Kil | Maddalena Marasà | Jun Y Zhang | Young-Ji Na | Tze Y Lim | Dina Ahram | Patricia L Weng | Erin L Heinzen | Alba Carrea | Giorgio Piaggio | Loreto Gesualdo | Valeria Manca | Giuseppe Masnata | Maddalena Gigante | Daniele Cusi | Claudia Izzi | Francesco Scolari | Joanna A E van Wijk | Marijan Saraga | Domenico Santoro | Giovanni Conti | Pasquale Zamboli | Hope White | Dorota Drozdz | Katarzyna Zachwieja | Monika Miklaszewska | Marcin Tkaczyk | Daria Tomczyk | Anna Krakowska | Przemyslaw Sikora | Tomasz Jarmoliński | Maria K Borszewska-Kornacka | Robert Pawluch | Maria Szczepanska | Piotr Adamczyk | Malgorzata Mizerska-Wasiak | Grazyna Krzemien | Agnieszka Szmigielska | Marcin Zaniew | Mark G Dobson | John M Darlow | Prem Puri | David E Barton | Susan L Furth | Bradley A Warady | Zoran Gucev | Vladimir J Lozanovski | Velibor Tasic | Isabella Pisani | Landino Allegri | Lida M Rodas | Josep M Campistol | Cécile Jeanpierre | Shumyle Alam | Pasquale Casale | Craig S Wong | Fangming Lin | Débora M Miranda | Eduardo A Oliveira | Ana Cristina Simões-E-Silva | Jonathan M Barasch | Brynn Levy | Nan Wu | Friedhelm Hildebrandt | Gian Marco Ghiggeri | Anna Latos-Bielenska | Anna Materna-Kiryluk | Feng Zhang | Hakon Hakonarson | Virginia E Papaioannou | Cathy L Mendelsohn | Ali G Gharavi | Simone Sanna-Cherchi
Nature genetics | 2019

Congenital anomalies of the kidney and urinary tract (CAKUT) are a major cause of pediatric kidney failure. We performed a genome-wide analysis of copy number variants (CNVs) in 2,824 cases and 21,498 controls. Affected individuals carried a significant burden of rare exonic (that is, affecting coding regions) CNVs and were enriched for known genomic disorders (GD). Kidney anomaly (KA) cases were most enriched for exonic CNVs, encompassing GD-CNVs and novel deletions; obstructive uropathy (OU) had a lower CNV burden and an intermediate prevalence of GD-CNVs; and vesicoureteral reflux (VUR) had the fewest GD-CNVs but was enriched for novel exonic CNVs, particularly duplications. Six loci (1q21, 4p16.1-p16.3, 16p11.2, 16p13.11, 17q12 and 22q11.2) accounted for 65% of patients with GD-CNVs. Deletions at 17q12, 4p16.1-p16.3 and 22q11.2 were specific for KA; the 16p11.2 locus showed extensive pleiotropy. Using a multidisciplinary approach, we identified TBX6 as a driver for the CAKUT subphenotypes in the 16p11.2 microdeletion syndrome.

Pubmed ID: 30578417

Research resources used in this publication

None found

Antibodies used in this publication

None found

Associated grants

  • Agency: NIDDK NIH HHS, United States
    Id: P20 DK116191
  • Agency: NIDDK NIH HHS, United States
    Id: R01 DK105124
  • Agency: NIDDK NIH HHS, United States
    Id: R01 DK088767
  • Agency: NIDDK NIH HHS, United States
    Id: R01 DK082394
  • Agency: NIDDK NIH HHS, United States
    Id: U24 DK066116
  • Agency: NIH HHS, United States
    Id: R37HD033082
  • Agency: NIH HHS, United States
    Id: 1R01DK103184
  • Agency: NCATS NIH HHS, United States
    Id: UL1 TR000040
  • Agency: NIDDK NIH HHS, United States
    Id: R01 DK103184
  • Agency: NIH HHS, United States
    Id: UL1 TR000040
  • Agency: NIDDK NIH HHS, United States
    Id: R01 DK115574
  • Agency: NIDDK NIH HHS, United States
    Id: U01 DK082194
  • Agency: NIDDK NIH HHS, United States
    Id: U01 DK066143
  • Agency: NIDDK NIH HHS, United States
    Id: U01 DK066116
  • Agency: NICHD NIH HHS, United States
    Id: R37 HD033082
  • Agency: NIDDK NIH HHS, United States
    Id: U01 DK066174
  • Agency: NIH HHS, United States
    Id: 1R21DK098531
  • Agency: NIDDK NIH HHS, United States
    Id: R21 DK098531
  • Agency: NIDDK NIH HHS, United States
    Id: R01 DK095044
  • Agency: NIDDK NIH HHS, United States
    Id: U54 DK104309
  • Agency: NIDDK NIH HHS, United States
    Id: R01 DK080099

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This is a list of tools and resources that we have found mentioned in this publication.


ISCA Consortium (tool)

RRID:SCR_006168

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on June 22, 2022. A rapidly growing group of clinical cytogenetics and molecular genetics laboratories committed to improving quality of patient care related to clinical genetic testing using new molecular cytogenetic technologies including array comparative genomic hybridization (aCGH) and quantitative SNP analysis by microarrays or bead chip technology. They improve clinical care by providing a large publicly available database and forum where clinicians and researchers can share knowledge to expedite the understanding of copy number variation (CNV) in an abnormal population. The ISCA database contains whole genome array data from a subset of the ISCA Consortium clinical diagnostic laboratories. Array analysis was carried out on individuals with phenotypes including intellectual disability, autism, and developmental delay. Efforts of the Consortium include: # Clinical Utility: The ISCA Consortium has made recommendations regarding the appropriate clinical indications for cytogenetic array testing (Miller et al. AJHG 2010, PMID: 20466091). Currently, discussions are focused on pediatric applications for children with unexplained developmental delay, intellectual disability, autism and other developmental disabilities. A separate committee has been developed to address appropriate cancer genetic applications (http://www.urmc.rochester.edu/ccmc/). # Evidence-based standards for cytogenomic array design: The Consortium will develop recommendations for standards for the design, resolution and content of cytogenomic arrays using an evidence-based process and an international panel of experts in clinical genetics, clinical laboratory genetics (cytogenetics and molecular genetics), genomics and bioinformatics. This design is intended to be platform and vendor-neutral (common denominator is genome sequence coordinates), and is a dynamic process with input from the broader genetics community and evidence-based review by the expert panel (which will evolve into a Standing Committee with international representation). # Public Database for clinical and research community: It is essential that publicly available databases be created and maintained for cytogenetic array data generated in clinical testing laboratories. The ISCA data will be held in dbGaP and dbVar at NCBI/NIH and curated by a committee of clinical genetics laboratory experts. The very high quality of copy number data (i.e., deletions and duplications) coming from clinical laboratories combined with expert curation will produce an invaluable resource to the clinical and research communities. # Standards for interpretation of cytogenetic array results: Using the ISCA Database, along with other genomic and genetics databases, the Consortium will develop recommendations for the interpretation and reporting of pathogenic vs. benign copy number changes as well as imbalances of unknown clinical significance.

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UCSC Genome Browser (tool)

RRID:SCR_012479

Portal to interactively visualize genomic data. Provides reference sequences and working draft assemblies for collection of genomes and access to ENCODE and Neanderthal projects. Includes collection of vertebrate and model organism assemblies and annotations, along with suite of tools for viewing, analyzing and downloading data.

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UCSC Genome Browser (tool)

RRID:SCR_005780

Portal to interactively visualize genomic data. Provides reference sequences and working draft assemblies for collection of genomes and access to ENCODE and Neanderthal projects. Includes collection of vertebrate and model organism assemblies and annotations, along with suite of tools for viewing, analyzing and downloading data.

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