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February 16, 20260 citationsOpen Access

In Silico Promoter Motif Analysis of Human Fertility-Related Genes

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DHDaniela HristovDSDone Stojanov

Key Points

  • This research aims to identify and analyze promoter motifs associated with human fertility-related genes.
  • In silico analysis of promoter regions for 13 fertility-related genes
  • Utilized motif-discovery and annotation workflows
  • Conducted functional association analysis and CpG island profiling
  • Identified multiple de novo promoter motifs with statistical support
  • Mapped motif occurrences across analyzed promoters
  • Found divergent motif patterns with no significant matches in PWM databases

Abstract

Complex transcriptional and epigenetic regulation, including variation in promoter-level cis-regulatory architecture, influences infertility. In this study, we performed a purely in silico analysis of the −1000 to −1 bp promoter regions (relative to the annotated TSS) of 13 human fertility-related genes using an integrated motif-discovery and annotation workflow (NNPP, MEME/STREME, Tomtom, FIMO/CentriMo, GOMo, and MethPrimer). Motif discovery identified multiple statistically supported de novo promoter motifs, and motif scanning mapped their occurrences across the analyzed promoters. Similarity searches against curated PWM databases did not yield significant matches under stringent criteria, consistent with divergent or under-represented motif patterns. Functional association analysis and CpG island profiling further highlighted promoter segments that merit prioritization for follow-up testing. As the analysis is purely in silico and restricted to a fixed promoter window, the identified motifs should be interpreted as candidate regulatory elements pending experimental validation.

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Cite This Study

Hristov et al. (2026) studied this question.

synapsesocial.com/papers/69926575eb1f82dc367a14efhttps://doi.org/10.3390/applbiosci5010014
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Also Consider

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  5. 5Elucidating the role of transcription factors in molecular pathways underlying infertility in endometriosis: a bioinformatics approach2026 · 1 citations