- Nogly, Przemyslaw;
- Panneels, Valerie;
- Nelson, Garrett;
- Gati, Cornelius;
- Kimura, Tetsunari;
- Milne, Christopher;
- Milathianaki, Despina;
- Kubo, Minoru;
- Wu, Wenting;
- Conrad, Chelsie;
- Coe, Jesse;
- Bean, Richard;
- Zhao, Yun;
- Båth, Petra;
- Dods, Robert;
- Harimoorthy, Rajiv;
- Beyerlein, Kenneth R;
- Rheinberger, Jan;
- James, Daniel;
- DePonte, Daniel;
- Li, Chufeng;
- Sala, Leonardo;
- Williams, Garth J;
- Hunter, Mark S;
- Koglin, Jason E;
- Berntsen, Peter;
- Nango, Eriko;
- Iwata, So;
- Chapman, Henry N;
- Fromme, Petra;
- Frank, Matthias;
- Abela, Rafael;
- Boutet, Sébastien;
- Barty, Anton;
- White, Thomas A;
- Weierstall, Uwe;
- Spence, John;
- Neutze, Richard;
- Schertler, Gebhard;
- Standfuss, Jörg
Serial femtosecond crystallography (SFX) using X-ray free-electron laser sources is an emerging method with considerable potential for time-resolved pump-probe experiments. Here we present a lipidic cubic phase SFX structure of the light-driven proton pump bacteriorhodopsin (bR) to 2.3 Å resolution and a method to investigate protein dynamics with modest sample requirement. Time-resolved SFX (TR-SFX) with a pump-probe delay of 1 ms yields difference Fourier maps compatible with the dark to M state transition of bR. Importantly, the method is very sample efficient and reduces sample consumption to about 1 mg per collected time point. Accumulation of M intermediate within the crystal lattice is confirmed by time-resolved visible absorption spectroscopy. This study provides an important step towards characterizing the complete photocycle dynamics of retinal proteins and demonstrates the feasibility of a sample efficient viscous medium jet for TR-SFX.