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April 18, 2026Proteomes0 citationsOpen Access

Computational Phosphosite-Specific Network Analysis of YES1 Y426 Reveals Cancer-Associated Phosphorylation Patterns

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AKAfreen KhanumLDLeona DcunhaSSSuhail Subair

Key Points

  • The aim is to understand the specific phosphorylation regulation of YES1 and its implications in cancer.
  • Conducted integrative analysis of 3825 mass spectrometry phosphoproteomic datasets.
  • Performed co-modulation, co-occurrence, and disease-association analyses.
  • Identified phosphorylation events and their clinical relevance.
  • Mapped interactions of phosphosites related to different cancers.
  • Y426 is the primary YES1 phosphosite identified across various conditions.
  • 421 positively and 102 negatively associated phosphosites were identified.
  • Insights into biological processes like cell cycle, transcription, and carcinogenesis were revealed.
  • Observed overlap between YES1 phosphoproteomic signatures and known cancer biomarkers.

Abstract

Background: YES1 is an Src family non-receptor tyrosine-protein kinase that regulates cell growth, migration, survival, and oncogenic signaling. Although YES1 activation mechanisms and substrates have been extensively studied, its phosphosite-specific regulation across diverse biological contexts remains poorly understood. Methods: We performed a large-scale integrative analysis of 3825 publicly available human mass spectrometry-based phosphoproteomic datasets to map YES1 phosphorylation events. Co-modulation, co-occurrence, evolutionary conservation, and disease-association analyses were conducted to characterize the functional and clinical relevance of site-specific YES1 phosphorylation. Results: Y426 emerged as the predominant YES1 phosphosite across diverse biological conditions, localized within the activation loop of the kinase domain and conserved across Src family kinases. Co-modulation analysis identified 421 positively and 102 negatively associated phosphosites enriched in biological processes related to cell cycle regulation, transcription, cytoskeletal remodeling, apoptosis, and carcinogenesis. Among these high-confidence protein phosphosites, we identified 24 binary interactors, 5 upstream regulators, and 8 candidate downstream substrates. Comparison with DisGeNet cancer biomarkers showed overlap between YES1-associated phosphoproteomic signatures and site-specific oncogenic markers across multiple cancers, such as breast cancer, colorectal cancer, leukemia, and lung adenocarcinoma. Conclusions: This study provides a systems-level, phosphosite-focused view of YES1 signaling and supports a central regulatory role for Y426 within global phosphoregulatory and cancer-associated networks.

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Cite This Study

Khanum et al. (2026) studied this question.

synapsesocial.com/papers/69e3215140886becb6540773https://doi.org/10.3390/proteomes14020017
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