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San, M.

Publications and source records attributed to San, M..

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idTAG enables programmable and physiologically faithful control of endogenous protein degradation

Rapid and precise depletion of endogenous proteins is essential for dissecting gene function, yet existing degron technologies often require direct modification of endogenous coding sequences, which can compromise protein expression and limit their applicability. Here, we develop idTAG, an inducible degron platform that decouples protein expression from protein degradation by integrating Tet-On 3G-mediated transcriptional control with dTAG-mediated degradation. Systematic characterization reveals that conventional degron knock-in frequently causes unintended reduction of target protein expression at the mRNA level, representing an underappreciated limitation of current approaches. In contrast, idTAG enables efficient generation of degron cell lines while maintaining physiological protein abundance and allows programmable control of degradation kinetics through independent regulation of protein synthesis and degradation. Applying idTAG to RNA-binding proteins, we demonstrate that acute depletion of FUS has minimal effects on global RNA polymerase II transcription, whereas acute loss of SRSF5 selectively disrupts transcription termination at a subset of genes. Thus, idTAG provides a versatile platform for physiological and temporally controlled interrogation of endogenous protein functions.

molecular biology↗