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An Integrative Synthetic Biology Approach to Interrogating Cellular Ubiquitin and Ufm Signaling.

International journal of molecular sciences (2020-06-18)
Chuanyin Li, Tianting Han, Rong Guo, Peng Chen, Chao Peng, Gali Prag, Ronggui Hu
RESUMEN

Global identification of substrates for PTMs (post-translational modifications) represents a critical but yet dauntingly challenging task in understanding biology and disease pathology. Here we presented a synthetic biology approach, namely 'YESS', which coupled Y2H (yeast two hybrid) interactome screening with PTMs reactions reconstituted in bacteria for substrates identification and validation, followed by the functional validation in mammalian cells. Specifically, the sequence-independent Gateway® cloning technique was adopted to afford simultaneous transfer of multiple hit ORFs (open reading frames) between the YESS sub-systems. In proof-of-evidence applications of YESS, novel substrates were identified for UBE3A and UFL1, the E3 ligases for ubiquitination and ufmylation, respectively. Therefore, the YESS approach could serve as a potentially powerful tool to study cellular signaling mediated by different PTMs.

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uPA Activity Assay Kit, The uPA Activity Assay Kit provides a quick, efficient & sensitive system for evaluation of uPA activity & for screening of uPA inhibitors.