INIFTA   05425
INSTITUTO DE INVESTIGACIONES FISICO-QUIMICAS TEORICAS Y APLICADAS
Unidad Ejecutora - UE
artículos
Título:
Reconstitution reveals how myosin-VI self- organises to generate a dynamic mechanism of membrane sculpting
Autor/es:
BENOIT ROGEZ; FELIX B. ZIERHUT; CHRISTOPHER BATTERS; LAESCHKIR WÜRTHNER; DARIO SACZKO-BRACK; CLAUDIA VEIGEL; ANASTASIIA B. PETROVA; MARIA-ANA HUERGO
Revista:
NATURE COMMUNICATIONS
Editorial:
SPRINGER NATURE
Referencias:
Lugar: London; Año: 2019 vol. 10
ISSN:
2041-1723
Resumen:
One enigma in biology is the generation, sensing and maintenance of membrane curvature. Curvature-mediating proteins have been shown to induce specific membrane shapes by direct insertion and nanoscopic scaffolding, while the cytoskeletal motors exert forces indirectly through microtubule and actin networks. It remains unclear, whether the manifold direct motorprotein--lipid interactions themselves constitute another fundamental route to remodel the membrane shape. Here we show, combining super-resolution-fluorescence microscopy and membrane-reshaping nanoparticles, that curvature-dependent lipid interac-tions of myosin-VI on its own, remarkably remodel the membrane geometry into dynamic spatial patterns on the nano- to micrometer scale. We propose a quantitative theoretical model that explains this dynamic membrane sculpting mechanism. The emerging route of motorprotein--lipid interactions reshaping membrane morphology by a mechanism of feedback and instability opens up hitherto unexplored avenues of membrane remodelling and links cytoskeletal motors to early events in the sequence of membrane sculpting in eukaryotic cell biology.