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Genome-wide investigation of VNTR motif polymorphisms in 8,222 genomes: Implications for biological regulation and human traits. | LitMetric

Genome-wide investigation of VNTR motif polymorphisms in 8,222 genomes: Implications for biological regulation and human traits.

Cell Genom

Key Laboratory of Epigenetic Regulation and Intervention, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China; College of Life Sciences, University of Chinese Academy of Sciences, Beijing 100049, China. Electronic address:

Published: December 2024

AI Article Synopsis

  • VNTRs (Variable number tandem repeats) are genetic features that differ in length and sequence, yet their functional effects are not fully understood.
  • The study presents a comprehensive VNTR polymorphism map with over 2.5 million VNTR length and 11 million VNTR motif polymorphisms found in 8,222 genomes, revealing a significant number of rare mutations.
  • It identifies specific VNTRs linked to gene expression changes and explores the potential influence of these polymorphisms on phenotypes and disease susceptibility, aiming to enhance the understanding of their biological roles.

Article Abstract

Variable number tandem repeat (VNTR) is a pervasive and highly mutable genetic feature that varies in both length and repeat sequence. Despite the well-studied copy-number variants, the functional impacts of repeat motif polymorphisms remain unknown. Here, we present the largest genome-wide VNTR polymorphism map to date, with over 2.5 million VNTR length polymorphisms (VNTR-LPs) and over 11 million VNTR motif polymorphisms (VNTR-MPs) detected in 8,222 high-coverage genomes. Leveraging the large-scale NyuWa cohort, we identified 2,982,456 (31.8%) NyuWa-specific VNTR-MPs, of which 95.3% were rare. Moreover, we found 1,937 out of 38,685 VNTRs that were associated with gene expression through VNTR-MPs in lymphoblastoid cell lines. Specifically, we clarified that the expansion of a likely causal motif could upregulate gene expression by improving the binding concentration of PU.1. We also explored the potential impacts of VNTR polymorphisms on phenotypic differentiation and disease susceptibility. This study expands our knowledge of VNTR-MPs and their functional implications.

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Source
http://dx.doi.org/10.1016/j.xgen.2024.100699DOI Listing

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