Toolkit Items

Browse the toolkit beneath workflows. The mechanism branch runs mechanism -> architecture -> component, while the technique branch runs from high-level approaches down to concrete methods.

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Mechanism Branch

Layer 1

Mechanisms

Top-level concepts: biophysical action modes such as heterodimerization, photocleavage, or RNA binding.

Layer 2

Architectures

Arrangements that realize or deploy mechanisms, including switches, construct patterns, and delivery strategies.

Layer 3

Components

Low-level parts and sequence-defined elements used inside architectures, including protein domains and RNA elements.

Technique Branch

Layer 1

Approaches

High-level engineering practices such as computational design, directed evolution, sequence verification, and functional assay.

Layer 2

Methods

Concrete methods used to design, build, verify, or characterize engineered systems.

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transcriptional amplification

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iLiEX is a genome-integrative, single-copy light-inducible expression system developed in Streptomyces griseus NBRC 13350 that combines LitR-based light-responsive control, a T7 RNA polymerase transcriptional amplification module, and serine integrase-mediated genome integration. It enables light-controlled transcription from a chromosomally integrated construct in Streptomyces.

CFBacMamMusHumTxRep
Ev 28Rep 0Pr 37

hormone-responsive LLPS transcriptional condensates

Multi-Component Switch

Furthermore, we design hormone-responsive liquid-liquid phase-separated (LLPS) condensates that strongly amplify transcription when exceeding a critical interaction threshold. These functional LLPS condensates provide a tunable platform for transcriptional control with up to several hundred-fold activation.

CFBacMamMusHumTxRep
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