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Design of polymeric nanocapsules to improve their lympho-targeting capacity  | Nanomedicine
Design of polymeric nanocapsules to improve their lympho-targeting capacity | Nanomedicine

Cryo–electron microscopy structure and analysis of the P-Rex1–Gβγ signaling  scaffold | Science Advances
Cryo–electron microscopy structure and analysis of the P-Rex1–Gβγ signaling scaffold | Science Advances

Cryo-EM structure of the rhodopsin-Gαi-βγ complex reveals binding of the  rhodopsin C-terminal tail to the gβ subunit | eLife
Cryo-EM structure of the rhodopsin-Gαi-βγ complex reveals binding of the rhodopsin C-terminal tail to the gβ subunit | eLife

Couvercle en bois de frêne pour VitBot carafe "Fruit of Life", 4.90 CHF
Couvercle en bois de frêne pour VitBot carafe "Fruit of Life", 4.90 CHF

Structure, proteome and genome of Sinorhizobium meliloti phage ΦM5: A virus  with LUZ24-like morphology and a highly mosaic genome - ScienceDirect
Structure, proteome and genome of Sinorhizobium meliloti phage ΦM5: A virus with LUZ24-like morphology and a highly mosaic genome - ScienceDirect

Membrane-anchored HDCR nanowires drive hydrogen-powered CO2 fixation |  Nature
Membrane-anchored HDCR nanowires drive hydrogen-powered CO2 fixation | Nature

Cryo-EM structure of the rhodopsin-Gαi-βγ complex reveals binding of the  rhodopsin C-terminal tail to the gβ subunit | eLife
Cryo-EM structure of the rhodopsin-Gαi-βγ complex reveals binding of the rhodopsin C-terminal tail to the gβ subunit | eLife

MemBrain: A Deep Learning-aided Pipeline for Automated Detection of  Membrane Proteins in Cryo-electron Tomograms | bioRxiv
MemBrain: A Deep Learning-aided Pipeline for Automated Detection of Membrane Proteins in Cryo-electron Tomograms | bioRxiv

MemBrain: A Deep Learning-aided Pipeline for Automated Detection of  Membrane Proteins in Cryo-electron Tomograms | bioRxiv
MemBrain: A Deep Learning-aided Pipeline for Automated Detection of Membrane Proteins in Cryo-electron Tomograms | bioRxiv

Design of polymeric nanocapsules to improve their lympho-targeting capacity  | Nanomedicine
Design of polymeric nanocapsules to improve their lympho-targeting capacity | Nanomedicine

Embase en bois de frêne pour VitBot carafe "Fruit of Life", 9.50 CHF
Embase en bois de frêne pour VitBot carafe "Fruit of Life", 9.50 CHF

Structure, proteome and genome of Sinorhizobium meliloti phage ΦM5: A virus  with LUZ24-like morphology and a highly mosaic genome - ScienceDirect
Structure, proteome and genome of Sinorhizobium meliloti phage ΦM5: A virus with LUZ24-like morphology and a highly mosaic genome - ScienceDirect

Cryo–electron microscopy structure and analysis of the P-Rex1–Gβγ signaling  scaffold | Science Advances
Cryo–electron microscopy structure and analysis of the P-Rex1–Gβγ signaling scaffold | Science Advances

Design of polymeric nanocapsules to improve their lympho-targeting capacity  | Nanomedicine
Design of polymeric nanocapsules to improve their lympho-targeting capacity | Nanomedicine

Design of polymeric nanocapsules to improve their lympho-targeting capacity  | Nanomedicine
Design of polymeric nanocapsules to improve their lympho-targeting capacity | Nanomedicine

Membrane-anchored HDCR nanowires drive hydrogen-powered CO2 fixation |  Nature
Membrane-anchored HDCR nanowires drive hydrogen-powered CO2 fixation | Nature

Crosslinking by ZapD drives the assembly of short, discontinuous FtsZ  filaments into ring-like structures in solution | bioRxiv
Crosslinking by ZapD drives the assembly of short, discontinuous FtsZ filaments into ring-like structures in solution | bioRxiv

Design of polymeric nanocapsules to improve their lympho-targeting capacity  | Nanomedicine
Design of polymeric nanocapsules to improve their lympho-targeting capacity | Nanomedicine

Crosslinking by ZapD drives the assembly of short, discontinuous FtsZ  filaments into ring-like structures in solution | bioRxiv
Crosslinking by ZapD drives the assembly of short, discontinuous FtsZ filaments into ring-like structures in solution | bioRxiv

Cryo–electron microscopy structure and analysis of the P-Rex1–Gβγ signaling  scaffold | Science Advances
Cryo–electron microscopy structure and analysis of the P-Rex1–Gβγ signaling scaffold | Science Advances

Crosslinking by ZapD drives the assembly of short, discontinuous FtsZ  filaments into ring-like structures in solution | bioRxiv
Crosslinking by ZapD drives the assembly of short, discontinuous FtsZ filaments into ring-like structures in solution | bioRxiv

Cryo-EM structure of the rhodopsin-Gαi-βγ complex reveals binding of the  rhodopsin C-terminal tail to the gβ subunit | eLife
Cryo-EM structure of the rhodopsin-Gαi-βγ complex reveals binding of the rhodopsin C-terminal tail to the gβ subunit | eLife

Cryo–electron microscopy structure and analysis of the P-Rex1–Gβγ signaling  scaffold | Science Advances
Cryo–electron microscopy structure and analysis of the P-Rex1–Gβγ signaling scaffold | Science Advances

vitalisation de l'eau
vitalisation de l'eau

Structure, proteome and genome of Sinorhizobium meliloti phage ΦM5: A virus  with LUZ24-like morphology and a highly mosaic genome - ScienceDirect
Structure, proteome and genome of Sinorhizobium meliloti phage ΦM5: A virus with LUZ24-like morphology and a highly mosaic genome - ScienceDirect

Membrane-anchored HDCR nanowires drive hydrogen-powered CO2 fixation |  Nature
Membrane-anchored HDCR nanowires drive hydrogen-powered CO2 fixation | Nature