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Nabi2.244 is a FRET (Förster Resonance Energy Transfer)-based protein voltage sensor. This probe contains Clover and mRuby2 inserted at different locations in the Ciona voltage sensitive domain.
Nabi2.242 is a FRET (Förster Resonance Energy Transfer)-based protein voltage sensor. This probe contains Clover and mRuby2 inserted at different locations in the Ciona voltage sensitive domain.
Nabi2.30 is a FRET (Förster Resonance Energy Transfer)-based protein voltage sensor. This probe contains Clover and mRuby2 inserted at different locations in the Ciona voltage sensitive domain.
Nabi2.104 is a FRET (Förster Resonance Energy Transfer)-based protein voltage sensor. This probe contains Clover and mRuby2 inserted at different locations in the Ciona voltage sensitive domain.
Nabi2.125 is a FRET (Förster Resonance Energy Transfer)-based protein voltage sensor. This probe contains Clover and mRuby2 inserted at different locations in the Ciona voltage sensitive domain.
Nabi2.216 is a FRET (Förster Resonance Energy Transfer)-based protein voltage sensor. This probe contains Clover and mRuby2 inserted at different locations in the Ciona voltage sensitive domain.
Nabi2.226 is a FRET (Förster Resonance Energy Transfer)-based protein voltage sensor. This probe contains Clover and mRuby2 inserted at different locations in the Ciona voltage sensitive domain.
Nabi2.213 is a FRET (Förster Resonance Energy Transfer)-based protein voltage sensor. This probe contains Clover and mRuby2 inserted at different locations in the Ciona voltage sensitive domain.
Encodes the hROSA26 BxBI recognition site with Hygromycin resistance and mRuby2 landing pad with GFP dropout destination vector as a type 0 part to be used in the MTK system
Encodes the hROSA26 PhiC31 recognition site with Hygromycin resistance and mRuby2 landing pad with GFP dropout destination vector as a type 0 part to be used in the MTK system
GFP with robust performance in protein fusions and useful as FRET acceptor for mRuby2 in a FRET pair that offers bright fluorescence, dynamic range, and photostability while limiting emissions overlap