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Genomic Answers For Children: Dynamic Analyses Of >1000 Pediatric Rare Disease Genomes., Ana S A Cohen, Emily G. Farrow, Ahmed Abdelmoity, Joseph Alaimo, Shivarajan Manickavasagam Amudhavalli, John Anderson, Lalit R. Bansal, Lauren E. Bartik, Primo Baybayan, Bradley Belden, Courtney D. Berrios, Rebecca L. Biswell, Pawel Buczkowicz, Orion Buske, Shreyasee Chakraborty, Warren A. Cheung, Keith A. Coffman, Ashley M. Cooper, Laura A. Cross, Tom Curran, Thuy Tien T. Dang, Mary M. Elfrink, Kendra Engleman, Erin Day Fecske, Cynthia Fieser, Keely M. Fitzgerald, Emily Fleming, Randi N. Gadea, Jennifer L. Gannon, Rose N. Gelineau-Morel, Margaret Gibson, Jeffrey Goldstein, Elin Grundberg, Kelsee Halpin, Brian S. Harvey, Bryce Heese, Wendy Hein, Suzanne M. Herd, Susan Starling Hughes, Mohammed Ilyas, Jill Jacobson, Janda L. Jenkins, Shao Jiang, Jeffrey J. Johnston, Kathryn Keeler, Jonas Korlach, Jennifer Kussman, Christine Lambert, Caitlin E. Lawson, Jean-Baptist Lepichon, J Steven Leeder, Vicki C. Little, Daniel A. Louiselle, Michael Lypka, Brittany D. Mcdonald, Neil Miller, Ann Modrcin, Annapoorna Nair, Shelby H. Neal, Christopher M. Oermann, Donna M. Pacicca, Kailash Pawar, Nyshele L. Posey, Nigel Price, Laura M B Puckett, Julio Quezada, Nikita Raje, William J. Rowell, Eric T. Rush, Venkatesh Sampath, Carol J. Saunders, Caitlin Schwager, Richard M. Schwend, Elizabeth Shaffer, Craig Smail, Sarah E. Soden, Meghan Strenk, Bonnie Sullivan, Brooke Sweeney, Jade B. Tam-Williams, Adam Walter, Holly Welsh, Aaron M. Wenger, Laurel K. Willig, Yun Yan, Scott T. Younger, Dihong Zhou, Tricia N. Zion, Isabelle Thiffault, Tomi Pastinen Jun 2022

Genomic Answers For Children: Dynamic Analyses Of >1000 Pediatric Rare Disease Genomes., Ana S A Cohen, Emily G. Farrow, Ahmed Abdelmoity, Joseph Alaimo, Shivarajan Manickavasagam Amudhavalli, John Anderson, Lalit R. Bansal, Lauren E. Bartik, Primo Baybayan, Bradley Belden, Courtney D. Berrios, Rebecca L. Biswell, Pawel Buczkowicz, Orion Buske, Shreyasee Chakraborty, Warren A. Cheung, Keith A. Coffman, Ashley M. Cooper, Laura A. Cross, Tom Curran, Thuy Tien T. Dang, Mary M. Elfrink, Kendra Engleman, Erin Day Fecske, Cynthia Fieser, Keely M. Fitzgerald, Emily Fleming, Randi N. Gadea, Jennifer L. Gannon, Rose N. Gelineau-Morel, Margaret Gibson, Jeffrey Goldstein, Elin Grundberg, Kelsee Halpin, Brian S. Harvey, Bryce Heese, Wendy Hein, Suzanne M. Herd, Susan Starling Hughes, Mohammed Ilyas, Jill Jacobson, Janda L. Jenkins, Shao Jiang, Jeffrey J. Johnston, Kathryn Keeler, Jonas Korlach, Jennifer Kussman, Christine Lambert, Caitlin E. Lawson, Jean-Baptist Lepichon, J Steven Leeder, Vicki C. Little, Daniel A. Louiselle, Michael Lypka, Brittany D. Mcdonald, Neil Miller, Ann Modrcin, Annapoorna Nair, Shelby H. Neal, Christopher M. Oermann, Donna M. Pacicca, Kailash Pawar, Nyshele L. Posey, Nigel Price, Laura M B Puckett, Julio Quezada, Nikita Raje, William J. Rowell, Eric T. Rush, Venkatesh Sampath, Carol J. Saunders, Caitlin Schwager, Richard M. Schwend, Elizabeth Shaffer, Craig Smail, Sarah E. Soden, Meghan Strenk, Bonnie Sullivan, Brooke Sweeney, Jade B. Tam-Williams, Adam Walter, Holly Welsh, Aaron M. Wenger, Laurel K. Willig, Yun Yan, Scott T. Younger, Dihong Zhou, Tricia N. Zion, Isabelle Thiffault, Tomi Pastinen

Manuscripts, Articles, Book Chapters and Other Papers

PURPOSE: This study aimed to provide comprehensive diagnostic and candidate analyses in a pediatric rare disease cohort through the Genomic Answers for Kids program.

METHODS: Extensive analyses of 960 families with suspected genetic disorders included short-read exome sequencing and short-read genome sequencing (srGS); PacBio HiFi long-read genome sequencing (HiFi-GS); variant calling for single nucleotide variants (SNV), structural variant (SV), and repeat variants; and machine-learning variant prioritization. Structured phenotypes, prioritized variants, and pedigrees were stored in PhenoTips database, with data sharing through controlled access the database of Genotypes and Phenotypes.

RESULTS: Diagnostic rates ranged from 11% in patients with prior negative …


Natural Killer Cells In Liver Transplantation: Can We Harness The Power Of The Immune Checkpoint To Promote Tolerance?, Jennifer Halma, Stephen Pierce, Rebecca Mclennan, Todd Bradley, Ryan T. Fischer May 2022

Natural Killer Cells In Liver Transplantation: Can We Harness The Power Of The Immune Checkpoint To Promote Tolerance?, Jennifer Halma, Stephen Pierce, Rebecca Mclennan, Todd Bradley, Ryan T. Fischer

Manuscripts, Articles, Book Chapters and Other Papers

The roles that natural killer (NK) cells play in liver disease and transplantation remain ill-defined. Reports on the matter are often contradictory, and the mechanisms elucidated are complex and dependent on the context of the model tested. Moreover, NK cell attributes, such as receptor protein expression and function differ among species, make study of primate or rodent transplant models challenging. Recent insights into NK function and NK-mediated therapy in the context of cancer therapy may prove applicable to transplantation. Of specific interest are immune checkpoint molecules and the mechanisms by which they modulate NK cells in the tumor micro-environment. In …


Molecular Diagnoses Of X-Linked And Other Genetic Hypophosphatemias: Results From A Sponsored Genetic Testing Program., Eric T. Rush, Britt Johnson, Swaroop Aradhya, Daniel Beltran, Sara L. Bristow, Scott Eisenbeis, Norma E. Guerra, Stan Krolczyk, Nicole Miller, Ana Morales, Prameela Ramesan, Soodabeh Sarafrazi, Rebecca Truty, Kathryn Dahir Feb 2022

Molecular Diagnoses Of X-Linked And Other Genetic Hypophosphatemias: Results From A Sponsored Genetic Testing Program., Eric T. Rush, Britt Johnson, Swaroop Aradhya, Daniel Beltran, Sara L. Bristow, Scott Eisenbeis, Norma E. Guerra, Stan Krolczyk, Nicole Miller, Ana Morales, Prameela Ramesan, Soodabeh Sarafrazi, Rebecca Truty, Kathryn Dahir

Manuscripts, Articles, Book Chapters and Other Papers

X-linked hypophosphatemia (XLH), a dominant disorder caused by pathogenic variants in the PHEX gene, affects both sexes of all ages and results in elevated serum fibroblast growth factor 23 (FGF23) and below-normal serum phosphate. In XLH, rickets, osteomalacia, short stature, and lower limb deformity may be present with muscle pain and/or weakness/fatigue, bone pain, joint pain/stiffness, hearing difficulty, enthesopathy, osteoarthritis, and dental abscesses. Invitae and Ultragenyx collaborated to provide a no-charge sponsored testing program using a 13-gene next-generation sequencing panel to confirm clinical XLH or aid diagnosis of suspected XLH/other genetic hypophosphatemia. Individuals aged ≥6 months with clinical XLH or …