Mechanistic Understanding Of Regulators Involved In Malignancy Of Tumor Cells
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Abstract
quotCancer remains a leading cause of mortality worldwide, responsible for approximately 9.7 million
newlinedeaths in 2022 according to the World Health Organization (WHO). Krüppel-like factors (KLFs),
newlinea family of zinc-finger transcription factors, regulate pivotal cellular processes including
newlineproliferation, differentiation, migration, and apoptosis. Dysregulation of KLF activity, frequently
newlinemediated by post-translational modifications (PTMs), is implicated in tumorigenesis and tumor
newlineprogression. PTMs modulate the biological function of proteins via alterations in activation state,
newlinesubcellular localization, stability, solubility, folding, substrate interactions, and protein-protein
newlineinteractions. Amino acid residues targeted by PTMs act as molecular switches, influencing protein
newlinefunction and amplifying proteome complexity. These modifications impact diverse cancer relevant pathways. Elucidating post-translational modifications (PTMs) of these transcription
newlinefactors can unveil insights into protein function, activity, subcellular localization, solubility,
newlinefolding, substrate binding, and protein-protein interactions.
newlineWe initiated our work by investigating Post-Translational Modifications (PTMs) of KLF Group 2
newlinetranscription factors involved in cancer progression. This study examines the complex interplay
newlinebetween cancer, metastasis, and the regulatory role of post-translational modifications (PTMs) on
newlineKLF group 2 transcription factors. We investigated the differential impact of acetylation and
newlinephosphorylation on the interactions of KLF group 2 members with their binding partners. Notably,
newlinethese modifications have variable effects depending on the specific KLF protein and the modified
newlineresidue. Our findings indicate that KLF2-EP300, KLF4-EP300, KLF4-SP1, KLF5-CBP, KLF5-
newlineWWP1, KLF6-ATF3, KLF6-JUN, and KLF7-JUN are stabilized following acetylation or
newlinephosphorylation. Conversely, KLF4-EP300, KLF5-WWP1, KLF6-SP1, and KLF7-ATF3 exhibit
newlinedestabilization due to these PTMs. These results elucidate the molecular mechanis