TY - JOUR
T1 - Using the linear references from the pangenome to discover missing autism variants
AU - Human Pangenome Reference Consortium (HPRC)
AU - Sui, Yang
AU - Lin, Jiadong
AU - Noyes, Michelle D.
AU - Kwon, Youngjun
AU - Wong, Isaac
AU - Koundinya, Nidhi
AU - Harvey, William T.
AU - Wu, Mei
AU - Hoekzema, Kendra
AU - Munson, Katherine M.
AU - Garcia, Gage H.
AU - Knuth, Jordan
AU - Wertz, Julie
AU - Wang, Tianyun
AU - Hennick, Kelsey
AU - Karunakaran, Druha
AU - Polo Prieto, Rafael A.
AU - Meyer-Schuman, Rebecca
AU - Cherry, Fisher
AU - Pehlivan, Davut
AU - Suter, Bernhard
AU - Gustafson, Jonas A.
AU - Miller, Danny E.
AU - Zunino, Giulia
AU - Zhuo, Xiaoyu
AU - Zhou, Ying
AU - Zhang, Wenjin
AU - Yoo, Dong Ahn
AU - Ye, Kai
AU - Xu, Zheng
AU - Xin, Zilan
AU - Whelan, Conor V.
AU - Wenger, Aaron M.
AU - Wang, Ting
AU - Wang, Lisa E.
AU - Wang, Charles
AU - Walenz, Brian P.
AU - Vollger, Mitchell R.
AU - Violich, Ivo
AU - Villani, Flavia
AU - Varki, Rahul
AU - Ungaro, Matteo Tommaso
AU - Uddin, Mohammed
AU - Tricomi, Francesca Floriana
AU - Tomlinson, Chad
AU - Tierney, Jack A.S.
AU - Tayoun, Ahmad Abou
AU - Söylev, Arda
AU - Suzuki, Yoshihiko
AU - Suner, Marie Marthe
AU - Stergachis, Andrew B.
AU - Soranzo, Nicole
AU - Sollitto, Marco
AU - Solar, Steven J.
AU - Smeds, Linnéa
AU - Sirén, Jouni
AU - Sinha, Swati
AU - Shivakumar, Vikram S.
AU - Shemirani, Ruhollah
AU - Shahatit, Shadi
AU - Shafin, Kishwar
AU - Shabani, Mahsa
AU - Seligmann, William E.
AU - Sehgal, Aarushi
AU - Scheinfeldt, Laura B.
AU - Schatz, Michael C.
AU - Salehi, Farnaz
AU - Sacco, Samuel
AU - Ryabov, Fedor
AU - Rhie, Arang
AU - Ren, Luyao
AU - Raveane, Alessandro
AU - Rautiainen, Mikko
AU - Raney, Brian J.
AU - Ranallo-Benavidez, T. Rhyker
AU - Radhakrishnan, Anandi
AU - Prins, Pjotr
AU - Porubsky, David
AU - Pisanti, Nadia
AU - Pignata, Laura
AU - Pickett, Brandon D.
AU - Phillippy, Adam M.
AU - Peano, Clelia
AU - Paten, Benedict
AU - Paez, Sadye
AU - Owa, Chie
AU - Ossorio, Pilar N.
AU - Novak, Adam M.
AU - Ni, Lingbin
AU - Negi, Shloka
AU - Natali, Chiara
AU - Nassir, Nasna
AU - Mwaniki, Njagi
AU - Mudge, Jonathan M.
AU - Morishita, Shinichi
AU - Moreno-Ochando, Avelina
AU - Moosa, Shabir
AU - Monlong, Jean
AU - Mokrab, Younes
AU - Mohanty, Saswat K.
AU - Mitchell, Matthew W.
AU - Minkina, Anna
AU - Miga, Karen H.
AU - Menendez, Julian M.
AU - Medico, Jack A.
AU - McNulty, Brandy
AU - Mayoud, Capucine
AU - Mastoras, Mira
AU - Martin, Fergal J.
AU - Marsico, Franco L.
AU - Marschall, Tobias
AU - Markovic, Christopher
AU - Marin, Maximillian G.
AU - Makova, Kateryna D.
AU - Macias-Velasco, Juan F.
AU - Lucas, Julian K.
AU - Lu, Shuangjia
AU - Lu, Jianguo
AU - Loveland, Jane E.
AU - Loucks, Hailey
AU - Lorig-Roach, Ryan
AU - Logsdon, Glennis A.
AU - Liu, Tianjie
AU - Liao, Wen Wei
AU - Li, Heng
AU - Li, Daofeng
AU - Lawson, Heather A.
AU - Langmead, Ben
AU - Langley, Charles H.
AU - Kremitzki, Milinn
AU - Koren, Sergey
AU - Koo, Bonhwang
AU - Kim, Juhyun
AU - Kenny, Eimear E.
AU - LoTempio, Jonathan
AU - Belter, Edward A.
AU - Jiang, Juan
AU - Jehangir, Maryam
AU - Jarvis, Erich D.
AU - Jain, Nivesh
AU - Jafarzadeh, Nafiseh
AU - Ioannidis, Alexander G.
AU - Hunt, Toby
AU - Hunt, Sarah E.
AU - Huang, Neng
AU - Hossain, S. Nakib
AU - Hillaker, Todd L.
AU - Hickey, Glenn
AU - Heringer, Peter
AU - Hebbar, Prajna
AU - Haussler, David
AU - Hashmi, Mohammad Amiruddin
AU - Hao, Yue
AU - Hansen, Nancy F.
AU - Hall, Ira M.
AU - Haggerty, Leanne
AU - Haeussler, Maximilian
AU - Gymrek, Melissa
AU - Guarracino, Andrea
AU - Groza, Cristian
AU - Green, Richard E.
AU - Graves-Lindsay, Tina A.
AU - Ghorbani, Mohammadmersad
AU - Geleta, Margarita
AU - Garza, John E.
AU - Garrison, Nanibaa’ A.
AU - Garrison, Erik
AU - Garg, Shilpa
AU - Gardner, Joshua M.V.
AU - Garcia, Obed A.
AU - Gao, Yan
AU - Fulton, Robert S.
AU - Fullerton, Stephanie M.
AU - Fu, Qichen
AU - Freeberg, Mallory A.
AU - Frankish, Adam
AU - Formenti, Giulio
AU - Ford, Willard W.
AU - Ford, Sarah M.
AU - Fiston-Lavier, Anna Sophie
AU - Ferro, Eddie
AU - Eskandar, Parsa
AU - Eizenga, Jordan M.
AU - Eichler, Evan E.
AU - Ebler, Jana
AU - Durbin, Richard
AU - Dubocanin, Danilo
AU - Dong, Zheng
AU - Doerr, Daniel
AU - Diroma, Maria Angela
AU - Diekhans, Mark
AU - Cook-Deegan, Robert
AU - Conwell, Holland C.
AU - Colonna, Vincenza
AU - Cody, Sarah
AU - Clawson, Hiram
AU - Ciofi, Claudio
AU - Cheng, Haoyu
AU - Cheema, Jitender
AU - Antonacci-Fulton, Lucinda
N1 - Publisher Copyright:
© The Author(s) 2026.
PY - 2026/12
Y1 - 2026/12
N2 - To better understand large-effect pathogenic variation associated with autism, we generated long-read sequencing (LRS) data to construct phased and near-complete genome assemblies (average contig N50 = 43 Mbp, QV = 56) for 189 individuals from 51 families with unsolved cases. We applied read- and assembly-based strategies to facilitate comprehensive characterization of de novo mutations, structural variants (SVs), and DNA methylation. Using LRS pangenome controls, we efficiently filtered >97% of common SVs exclusive to 87 offspring. We find no evidence of increased autosomal SV burden for probands when compared to unaffected siblings yet observe a suggestive trend toward an increased SV burden on the X chromosome among affected females. We establish a workflow to prioritize potential pathogenic variants by integrating autism risk genes and putative noncoding regulatory elements defined from ATAC-seq and CUT&Tag data from the developing cortex. In total, we identified three pathogenic variants in TBL1XR1, MECP2, and SYNGAP1, as well as nine candidate de novo and biallelic inherited homozygous SVs, most of which were missed by short-read sequencing. Our work highlights the potential of phased genomes to discover complex more pathogenic mutations and the power of the pangenome to restrict the focus on an increasingly smaller number of SVs for clinical evaluation.
AB - To better understand large-effect pathogenic variation associated with autism, we generated long-read sequencing (LRS) data to construct phased and near-complete genome assemblies (average contig N50 = 43 Mbp, QV = 56) for 189 individuals from 51 families with unsolved cases. We applied read- and assembly-based strategies to facilitate comprehensive characterization of de novo mutations, structural variants (SVs), and DNA methylation. Using LRS pangenome controls, we efficiently filtered >97% of common SVs exclusive to 87 offspring. We find no evidence of increased autosomal SV burden for probands when compared to unaffected siblings yet observe a suggestive trend toward an increased SV burden on the X chromosome among affected females. We establish a workflow to prioritize potential pathogenic variants by integrating autism risk genes and putative noncoding regulatory elements defined from ATAC-seq and CUT&Tag data from the developing cortex. In total, we identified three pathogenic variants in TBL1XR1, MECP2, and SYNGAP1, as well as nine candidate de novo and biallelic inherited homozygous SVs, most of which were missed by short-read sequencing. Our work highlights the potential of phased genomes to discover complex more pathogenic mutations and the power of the pangenome to restrict the focus on an increasingly smaller number of SVs for clinical evaluation.
UR - https://www.scopus.com/pages/publications/105030294889
U2 - 10.1038/s41467-026-68378-4
DO - 10.1038/s41467-026-68378-4
M3 - Article
C2 - 41577710
AN - SCOPUS:105030294889
SN - 2041-1723
VL - 17
JO - Nature communications
JF - Nature communications
IS - 1
M1 - 1681
ER -