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Heat shock proteins (HSPs) are a highly conserved family of molecular chaperones that play a critical role in maintaining protein homeostasis (proteostasis) by assisting in the folding, stabilization, and degradation of proteins (Source: UniProt, StatPearls). They are categorized by their molecular weight (e.g., HSP60, HSP70, HSP90) and are often upregulated in response to cellular stress such as heat, hypoxia, or malignancy (Source: PubMed, PMC4110032). In cancer, HSPs—particularly HSP90—are frequently overexpressed to stabilize mutated or overexpressed oncoproteins, thereby promoting tumor cell survival and proliferation (Source: NIH, PubChem). Consequently, HSPs have become significant therapeutic targets, with various small-molecule inhibitors developed to disrupt their ATPase activity and trigger the degradation of their client proteins (Source: Journal of Hematology & Oncology). Beyond oncology, HSPs are implicated in neurodegenerative diseases where they may prevent the aggregation of misfolded proteins like amyloid-beta or tau (Source: Nature Reviews Drug Discovery). Despite their therapeutic potential, clinical development has faced challenges including systemic toxicity and the induction of compensatory stress responses (Source: Clinical Cancer Research).
Inhibition of the ATPase activity of the chaperone, leading to the destabilization and subsequent proteasomal degradation of client proteins, many of which are oncogenic signaling proteins (Source: PubMed, PMC4110032).
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