Chemical control over membrane-initiated steroid signaling with a DNA nanocapsule.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 29531078.
- Also identified by DOI 10.1073/pnas.1712792115 and PMC identifier 6156627.
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Abstract
Membrane-initiated steroid signaling (MISS) is a recently discovered aspect of steroidal control over cell function that has proved highly challenging to study due to its rapidity and ultrasensitivity to the steroid trigger [Chow RWY, Handelsman DJ, Ng MKC (2010) <i>Endocrinology</i> 151:2411-2422]. Fundamental aspects underlying MISS, such as receptor binding, kinetics of ion-channel opening, and production of downstream effector molecules remain obscure because a pristine molecular technology that could trigger the release of signaling steroids was not available. We have recently described a prototype DNA nanocapsule which can be programmed to release small molecules upon photoirradiation [Veetil AT, et al. (2017) <i>Nat Nanotechnol</i> 12:1183-1189]. Here we show that this DNA-based molecular technology can now be programmed to chemically trigger MISS, significantly expanding its applicability to systems that are refractory to photoirradiation.
Medical subject headings
- Cell Membrane
- DNA
- Nanocapsules
- Signal Transduction
- Steroids