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Dual specificity protein kinase CLK1 is an enzyme encoded by the CLK1 gene in humans. It belongs to the LAMMER family of kinases and exhibits dual specificity, phosphorylating both serine/threonine and tyrosine residues. CLK1 is primarily localized in the nucleus, where it phosphorylates serine/arginine-rich (SR) proteins involved in spliceosomal complex assembly and alternative mRNA splicing. These actions regulate the activity and localization of splicing factors, thus influencing pre-mRNA processing and splice site selection. CLK1 activity is regulated by phosphorylation events at various residues and by the conformation of its N-terminal domain[1][2][3][6]. CLK1 plays important roles in gene expression regulation and has been implicated in diseases such as cancer and neurodegenerative disorders due to its central role in alternative splicing control[2][6]. Experimental inhibitors such as hymenialdisine have been identified, and understanding CLK1 structure-function relationships is a focus for targeted drug development[2][5].
Inhibition of kinase activity (ATP-competitive inhibition); Modulation of alternative splicing by inhibiting SR protein phosphorylation
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