Peng Junhui, Zhao Li
Laboratory of Evolutionary Genetics and Genomics, The Rockefeller University, New York, NY, USA.
Nat Commun. 2024 Jan 27;15(1):810. doi: 10.1038/s41467-024-45028-1.
Recent studies reveal that de novo gene origination from previously non-genic sequences is a common mechanism for gene innovation. These young genes provide an opportunity to study the structural and functional origins of proteins. Here, we combine high-quality base-level whole-genome alignments and computational structural modeling to study the origination, evolution, and protein structures of lineage-specific de novo genes. We identify 555 de novo gene candidates in D. melanogaster that originated within the Drosophilinae lineage. Sequence composition, evolutionary rates, and expression patterns indicate possible gradual functional or adaptive shifts with their gene ages. Surprisingly, we find little overall protein structural changes in candidates from the Drosophilinae lineage. We identify several candidates with potentially well-folded protein structures. Ancestral sequence reconstruction analysis reveals that most potentially well-folded candidates are often born well-folded. Single-cell RNA-seq analysis in testis shows that although most de novo gene candidates are enriched in spermatocytes, several young candidates are biased towards the early spermatogenesis stage, indicating potentially important but less emphasized roles of early germline cells in the de novo gene origination in testis. This study provides a systematic overview of the origin, evolution, and protein structural changes of Drosophilinae-specific de novo genes.
最近的研究表明,从先前的非基因序列中从头起源基因是基因创新的一种常见机制。这些年轻的基因提供了一个研究蛋白质结构和功能起源的机会。在这里,我们结合高质量的碱基水平全基因组比对和计算结构建模,来研究特定谱系从头起源基因的起源、进化和蛋白质结构。我们在黑腹果蝇中鉴定出555个从头起源基因候选物,它们起源于果蝇亚科谱系内。序列组成、进化速率和表达模式表明,随着基因年龄的增长,它们可能会发生逐渐的功能或适应性转变。令人惊讶的是,我们发现果蝇亚科谱系的候选物总体上蛋白质结构变化很小。我们鉴定出几个具有潜在良好折叠蛋白质结构的候选物。祖先序列重建分析表明,大多数具有潜在良好折叠的候选物通常在诞生时就具有良好的折叠结构。睾丸中的单细胞RNA测序分析表明,虽然大多数从头起源基因候选物在精母细胞中富集,但一些年轻的候选物偏向于精子发生早期阶段,这表明早期生殖细胞在睾丸从头起源基因中可能具有重要但较少被强调的作用。这项研究提供了果蝇亚科特异性从头起源基因的起源、进化和蛋白质结构变化的系统概述。