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.

3 items matching 1 filter

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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competitive binding

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α-integrin cytoplasmic tails

Protein Domain

α-integrin cytoplasmic tails are short intracellular integrin tail domains that bind calcium and integrin binding protein 1 (CIB1). Evidence indicates that multiple α-integrin cytoplasmic tails engage a shared hydrophobic pocket on CIB1 through a consensus binding site and can compete for CIB1 binding in vitro.

CFBacMamMusHumTxRep
Ev 37Rep 20Pr 83

solid-phase competitive binding assay

Assay Method

The solid-phase competitive binding assay is an in vitro binding assay used to test whether α-integrin cytoplasmic tails compete for association with CIB1. In the cited 2020 study, it supported the conclusion that multiple α-integrin tails can compete with the αIIb cytoplasmic tail for a shared CIB1-binding site.

CFBacMamMusHumTxRep
Ev 28Rep 9Pr 71

exogenously administered ACE2

Multi-Component Switch

Strategies aimed at blocking ACE2 with antibodies, small molecules or peptides, or at neutralizing the virus by competitive binding with exogenously administered ACE2, are currently under investigations.

CFBacMamMusHumTxRep
Ev 10Rep 9Pr 37
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