AI Article Synopsis

  • The NBPF repeats, specifically the 3mer HORs, are unique to humans and are believed to play a role in cognitive abilities, showing a significant increase from chimpanzees to modern humans.
  • Research on the Neanderthal genome revealed that while it also has NBPF 3mer HOR arrays, their structure and number differ from those found in modern humans.
  • The study identified two new types of NBPF 3mer HOR arrays in the complete human genome, which may correspond to novel genes, suggesting that further exploration of the Neanderthal genome could enhance our understanding of human evolution.

Article Abstract

It is known that the ~ 1.6 kb Neuroblastoma BreakPoint Family (NBPF) repeats are human specific and contributing to cognitive capabilities, with increasing frequency in higher order repeat 3mer HORs (Olduvai triplets). From chimpanzee to modern human there is a discontinuous jump from 0 to ~ 50 tandemly organized 3mer HORs. Here we investigate the structure of NBPF 3mer HORs in the Neanderthal genome assembly of Pääbo et al., comparing it to the results obtained for human hg38.p14 chromosome 1. Our findings reveal corresponding NBPF 3mer HOR arrays in Neanderthals with slightly different monomer structures and numbers of HOR copies compared to humans. Additionally, we compute the NBPF 3mer HOR pattern for the complete telomere-to-telomere human genome assembly (T2T-CHM13) by Miga et al., identifying two novel tandem arrays of NBPF 3mer HOR repeats with 5 and 9 NBPF 3mer HOR copies. We hypothesize that these arrays correspond to novel NBPF genes (here referred to as NBPFA1 and NBPFA2). Further improving the quality of the Neanderthal genome using T2T-CHM13 as a reference would be of great interest in determining the presence of such distant novel NBPF genes in the Neanderthal genome and enhancing our understanding of human evolution.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10475015PMC
http://dx.doi.org/10.1038/s41598-023-41517-3DOI Listing

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