生物
遗传学
进化生物学
遗传多样性
基因组
遗传变异
多样性(政治)
遗传(遗传算法)
计算生物学
鉴定(生物学)
遗传数据
计算机科学
特征(语言学)
人类遗传变异
突变
基因组学
序列(生物学)
人口
系统发育学
等位基因
作者
Taylor Real,Prajna Hebbar,DongAhn Yoo,Francesca Antonacci,Ivana Pačar,Danilo Dubocanin,Mark Diekhans,Gregory J Mikol,Oyeronke G. Popoola,Benjamin J. Mallory,Mitchell R. Vollger,Philip C. Dishuck,Xavi Guitart,Allison N. Rozanski,Katherine M. Munson,Kendra Hoekzema,Jane E. Ranchalis,Shane Neph,Adriana E. Sedeño-Cortés,Benedict Paten
出处
期刊:Cell genomics
[Elsevier BV]
日期:2026-03-01
卷期号:: 101194-101194
标识
DOI:10.1016/j.xgen.2026.101194
摘要
NOTCH2NL (NOTCH2-N-terminus-like) genes arose from ape-specific chromosome 1 segmental duplications implicated in human brain cortical expansion, including an incomplete NOTCH2 gene. Genetic characterization of these loci and their regulation is complicated because they are embedded in large, nearly identical duplications that predispose to recurrent microdeletion syndromes. Using near-complete long-read assemblies generated from 70 human and 12 ape haploid genomes, we show independent recurrent duplication among apes with protein-coding copies emerging in humans 2.2-3.7 million years ago. We distinguish NOTCH2NL paralogs present in every human haplotype (NOTCH2NLA) from copy-number-variable ones. We also characterize large-scale structural variation, including gene conversion, for 28% of haplotypes, leading to a previously undescribed paralog, NOTCH2tv. Finally, we apply Fiber-seq and long-read transcript sequencing to human dorsal forebrain organoids to characterize the regulatory landscape and find that the most fixed paralogs, NOTCH2 and NOTCH2NLA, harbor the greatest number of paralog-specific elements potentially driving their regulation.
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