학술논문

The functional and evolutionary impacts of human-specific deletions in conserved elements
Document Type
article
Author
Xue, James RMackay-Smith, AvaMouri, KousukeGarcia, Meilin FernandezDong, Michael XAkers, Jared FNoble, MarkLi, XueLindblad-Toh, KerstinKarlsson, Elinor KNoonan, James PCapellini, Terence DBrennand, Kristen JTewhey, RyanSabeti, Pardis CReilly, Steven KAndrews, GregoryArmstrong, Joel CBianchi, MatteoBirren, Bruce WBredemeyer, Kevin RBreit, Ana MChristmas, Matthew JClawson, HiramDamas, JoanaDi Palma, FedericaDiekhans, MarkEizirik, EduardoFan, KailiFanter, CorneliaFoley, Nicole MForsberg-Nilsson, KarinGarcia, Carlos JGatesy, JohnGazal, StevenGenereux, Diane PGoodman, LindaGrimshaw, JennaHalsey, Michaela KHarris, Andrew JHickey, GlennHiller, MichaelHindle, Allyson GHubley, Robert MHughes, Graham MJohnson, JeremyJuan, DavidKaplow, Irene MKeough, Kathleen CKirilenko, BogdanKoepfli, Klaus-PeterKorstian, Jennifer MKowalczyk, AmandaKozyrev, Sergey VLawler, Alyssa JLawless, ColleenLehmann, ThomasLevesque, Danielle LLewin, Harris ALind, AbigailMarinescu, Voichita DMarques-Bonet, TomasMason, Victor CMeadows, Jennifer RSMeyer, Wynn KMoore, Jill EMoreira, Lucas RMoreno-Santillan, Diana DMorrill, Kathleen MMuntané, GerardMurphy, William JNavarro, ArcadiNweeia, MartinOrtmann, SylviaOsmanski, AustinPaten, BenedictPaulat, Nicole SPfenning, Andreas RPhan, BaDoi NPollard, Katherine SPratt, Henry ERay, David ARosen, Jeb RRuf, IrinaRyan, LouiseRyder, Oliver ASchäffer, Daniel ESerres, AitorShapiro, BethSmit, Arian FASpringer, MarkSrinivasan, ChaitanyaSteiner, Cynthia
Source
Science. 380(6643)
Subject
Biological Sciences
Bioinformatics and Computational Biology
Genetics
Biotechnology
Neurosciences
Human Genome
1.1 Normal biological development and functioning
Underpinning research
Generic health relevance
Neurological
Humans
Conserved Sequence
Evolution
Molecular
Genome
Genomics
RNA-Binding Proteins
Sequence Deletion
Brain
Gene Expression Regulation
Developmental
Zoonomia Consortium†
General Science & Technology
Language
Abstract
Conserved genomic sequences disrupted in humans may underlie uniquely human phenotypic traits. We identified and characterized 10,032 human-specific conserved deletions (hCONDELs). These short (average 2.56 base pairs) deletions are enriched for human brain functions across genetic, epigenomic, and transcriptomic datasets. Using massively parallel reporter assays in six cell types, we discovered 800 hCONDELs conferring significant differences in regulatory activity, half of which enhance rather than disrupt regulatory function. We highlight several hCONDELs with putative human-specific effects on brain development, including HDAC5, CPEB4, and PPP2CA. Reverting an hCONDEL to the ancestral sequence alters the expression of LOXL2 and developmental genes involved in myelination and synaptic function. Our data provide a rich resource to investigate the evolutionary mechanisms driving new traits in humans and other species.