Providing functional, high-purity recombinant proteins—including membrane proteins and nanodiscs—to overcome bottlenecks in drug screening and target validation.
Harness the power of protein degraders for precise protein degradation, expanding druggable targets and enhancing therapeutic effectiveness for cutting-edge drug discovery.
RNA design, synthesis, and manufacturing—covering mRNA, saRNA, circRNA, and RNAi. Fast turnaround, rigorous QC, and seamless transition from research to GMP production.
Balancing accuracy, accessibility, affordability, and rapid detection to safeguard public health and strengthen global response to infectious diseases.
Stable expression over 15 generations with rapid cell line development in just 3 months. Supports adherent and suspension cell lines, offering MCB, WCB, and PCB establishment.
Scalable mRNA production from milligrams to grams, with personalized process design for sequence optimization, cap selection, and nucleotide modifications, all in one service.
Leverage AI to uncover hidden high-potential small molecules, prioritize leads intelligently, and reduce costly trial-and-error in early drug discovery.
Predicted to enable DNA-binding transcription activator activity, RNA polymerase II-specific and RNA polymerase II cis-regulatory region sequence-specific DNA binding activity. Predicted to be involved in several processes, including negative regulation by host of viral transcription; positive regulation by host of viral transcription; and regulation of DNA-templated transcription. Predicted to be located in nucleoplasm. Is expressed in several structures, including central nervous system; early conceptus; female reproductive system; retina nuclear layer; and urinary system. Orthologous to human ZNF639 (zinc finger protein 639). [provided by Alliance of Genome Resources, Feb 2025]