Genetic Regulation of Human Brain Size Evolution

<p>The neocortex expanded spectacularly during human origins. That expansion is thought to form the foundation for our cognitive faculties underlying abstract reasoning and socialization. The human neocortex differs from that of other great apes in several notable regards including altered cel...

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Main Author: Boyd, Jonathan Lomax
Other Authors: Wray, Gregory A
Published: 2014
Subjects:
Online Access:http://hdl.handle.net/10161/9424
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spelling ndltd-DUKE-oai-dukespace.lib.duke.edu-10161-94242015-01-30T03:32:27ZGenetic Regulation of Human Brain Size EvolutionBoyd, Jonathan LomaxGeneticsEvolution & developmentNeurosciencescell cycledevelopmentHuman evolutionneocortex<p>The neocortex expanded spectacularly during human origins. That expansion is thought to form the foundation for our cognitive faculties underlying abstract reasoning and socialization. The human neocortex differs from that of other great apes in several notable regards including altered cell cycle, prolonged corticogenesis, and massively increased size. However, despite decades of effort, little progress has been made in uncovering the genetic contributions that underlie these differences that distinguish our species from closely related primate, such as chimpanzees. A subset of highly conserved non-coding regions that show rapid sequence changes along the human lineage are candidate loci for the development and evolution of uniquely human traits. Several studies have identified human-accelerated enhancers, but none have linked an expression difference to a organismal traits, such as brain sizes. Here we report the discovery of a human-accelerated regulatory enhancer (HARE5) near the Wnt receptor FRIZZLED-8 (FZD8). Using a variety of approaches, we demonstrate dramatic differences in human and chimpanzee HARE5 activity, with human HARE5 driving significantly strong expression. We show that HARE5 likely regulates FZD8 and that expression differences influence cell cycle kinetics, cortical layers, and brain size. At present, this would provide the first evidence of a human-chimpanzee genetic difference influencing the evolution of brain size.</p>DissertationWray, Gregory ASilver, Debra L2014Dissertationhttp://hdl.handle.net/10161/9424
collection NDLTD
sources NDLTD
topic Genetics
Evolution & development
Neurosciences
cell cycle
development
Human evolution
neocortex
spellingShingle Genetics
Evolution & development
Neurosciences
cell cycle
development
Human evolution
neocortex
Boyd, Jonathan Lomax
Genetic Regulation of Human Brain Size Evolution
description <p>The neocortex expanded spectacularly during human origins. That expansion is thought to form the foundation for our cognitive faculties underlying abstract reasoning and socialization. The human neocortex differs from that of other great apes in several notable regards including altered cell cycle, prolonged corticogenesis, and massively increased size. However, despite decades of effort, little progress has been made in uncovering the genetic contributions that underlie these differences that distinguish our species from closely related primate, such as chimpanzees. A subset of highly conserved non-coding regions that show rapid sequence changes along the human lineage are candidate loci for the development and evolution of uniquely human traits. Several studies have identified human-accelerated enhancers, but none have linked an expression difference to a organismal traits, such as brain sizes. Here we report the discovery of a human-accelerated regulatory enhancer (HARE5) near the Wnt receptor FRIZZLED-8 (FZD8). Using a variety of approaches, we demonstrate dramatic differences in human and chimpanzee HARE5 activity, with human HARE5 driving significantly strong expression. We show that HARE5 likely regulates FZD8 and that expression differences influence cell cycle kinetics, cortical layers, and brain size. At present, this would provide the first evidence of a human-chimpanzee genetic difference influencing the evolution of brain size.</p> === Dissertation
author2 Wray, Gregory A
author_facet Wray, Gregory A
Boyd, Jonathan Lomax
author Boyd, Jonathan Lomax
author_sort Boyd, Jonathan Lomax
title Genetic Regulation of Human Brain Size Evolution
title_short Genetic Regulation of Human Brain Size Evolution
title_full Genetic Regulation of Human Brain Size Evolution
title_fullStr Genetic Regulation of Human Brain Size Evolution
title_full_unstemmed Genetic Regulation of Human Brain Size Evolution
title_sort genetic regulation of human brain size evolution
publishDate 2014
url http://hdl.handle.net/10161/9424
work_keys_str_mv AT boydjonathanlomax geneticregulationofhumanbrainsizeevolution
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