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Inhibition of SRGAP2 function by its human-specific paralogs induces neoteny during spine maturation

机译:通过其人类特异性旁系同源物抑制SRGAP2功能可在脊柱成熟过程中诱导新生

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摘要

Structural genomic variations represent a major driving force of evolution, and a burst of large segmental gene duplications occurred in the human lineage during its separation from nonhuman primates. SRGAP2, a gene recently implicated in neocortical development, has undergone two human-specific duplications. Here, we find that both duplications (SRGAP2B and SRGAP2C) are partial and encode a truncated F-BAR domain. SRGAP2C is expressed in the developing and adult human brain and dimerizes with ancestral SRGAP2 to inhibit its function. In the mouse neocortex, SRGAP2 promotes spine maturation and limits spine density. Expression of SRGAP2C phenocopies SRGAP2 deficiency. It underlies sustained radial migration and leads to the emergence of human-specific features, including neoteny during spine maturation and increased density of longer spines. These results suggest that inhibition of SRGAP2 function by its human-specific paralogs has contributed to the evolution of the human neocortex and plays an important role during human brain development.
机译:结构基因组变异代表进化的主要驱动力,在人类谱系与非人类灵长类动物分离期间,在人类谱系中爆发了大量节段基因重复。 SRGAP2是最近牵涉到新皮层发育的一个基因,已经经历了两次人类特异性复制。在这里,我们发现两个重复(SRGAP2B和SRGAP2C)都是部分重复,并且编码了一个截短的F-BAR域。 SRGAP2C在发育中的成年人大脑中表达,并与祖先的SRGAP2二聚化以抑制其功能。在小鼠新皮层中,SRGAP2促进脊柱成熟并限制脊柱密度。 SRGAP2C表型的表达SRGAP2缺乏。它是持续的径向迁移的基础,并导致出现特定于人类的特征,包括脊柱成熟期间的新生儿变窄和长脊柱密度的增加。这些结果表明,其人类特异性旁系同源物对SRGAP2功能的抑制作用促进了人类新皮层的进化,并在人类大脑发育过程中发挥了重要作用。

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