[HTML][HTML] Small GTPases and BAR domain proteins regulate branched actin polymerisation for clathrin and dynamin-independent endocytosis

M Sathe, G Muthukrishnan, J Rae, A Disanza… - Nature …, 2018 - nature.com
Using real-time TIRF microscopy imaging, we identify sites of clathrin and dynamin-
independent CLIC/GEEC (CG) endocytic vesicle formation. This allows spatio-temporal …

Small GTPases and BAR domain proteins regulate branched actin polymerisation for clathrin and dynamin-independent endocytosis

M Sathe, G Muthukrishnan, J Rae… - Nature …, 2018 - pubmed.ncbi.nlm.nih.gov
Using real-time TIRF microscopy imaging, we identify sites of clathrin and dynamin-
independent CLIC/GEEC (CG) endocytic vesicle formation. This allows spatio-temporal …

Small GTPases and BAR domain proteins regulate branched actin polymerisation for clathrin and dynamin-independent endocytosis

M Sathe, G Muthukrishnan, J Rae… - Nature …, 2018 - econpapers.repec.org
Using real-time TIRF microscopy imaging, we identify sites of clathrin and dynamin-
independent CLIC/GEEC (CG) endocytic vesicle formation. This allows spatio-temporal …

Small GTPases and BAR domain proteins regulate branched actin polymerisation for clathrin and dynamin-independent endocytosis.

M Sathe, G Muthukrishnan, J Rae… - Nature …, 2018 - search.ebscohost.com
Using real-time TIRF microscopy imaging, we identify sites of clathrin and
dynaminindependent CLIC/GEEC (CG) endocytic vesicle formation. This allows spatio …

Small GTPases and BAR domain proteins regulate branched actin polymerisation for clathrin and dynamin-independent endocytosis

M Sathe, G Muthukrishnan, J Rae, A Disanza… - Nature …, 2018 - cir.nii.ac.jp
抄録< jats: title> Abstract</jats: title>< jats: p> Using real-time TIRF microscopy imaging, we
identify sites of clathrin and dynamin-independent CLIC/GEEC (CG) endocytic vesicle …

[PDF][PDF] Small GTPases and BAR domain proteins regulate branched actin polymerisation for clathrin and dynamin-independent endocytosis

M Sathe, G Muthukrishnan, J Rae, A Disanza, M Thattai… - d-nb.info
Using real-time TIRF microscopy imaging, we identify sites of clathrin and
dynaminindependent CLIC/GEEC (CG) endocytic vesicle formation. This allows spatio …

[PDF][PDF] Small GTPases and BAR domain proteins regulate branched actin polymerisation for clathrin and dynamin-independent endocytosis

M Sathe, G Muthukrishnan, J Rae, A Disanza, M Thattai… - core.ac.uk
Using real-time TIRF microscopy imaging, we identify sites of clathrin and
dynaminindependent CLIC/GEEC (CG) endocytic vesicle formation. This allows spatio …

Small GTPases and BAR domain proteins regulate branched actin polymerisation for clathrin and dynamin-independent endocytosis

M Sathe, G Muthukrishnan, J Rae… - Nature …, 2018 - ui.adsabs.harvard.edu
Using real-time TIRF microscopy imaging, we identify sites of clathrin and dynamin-
independent CLIC/GEEC (CG) endocytic vesicle formation. This allows spatio-temporal …

[HTML][HTML] Small GTPases and BAR domain proteins regulate branched actin polymerisation for clathrin and dynamin-independent endocytosis

M Sathe, G Muthukrishnan, J Rae, A Disanza… - Nature …, 2018 - ncbi.nlm.nih.gov
Using real-time TIRF microscopy imaging, we identify sites of clathrin and dynamin-
independent CLIC/GEEC (CG) endocytic vesicle formation. This allows spatio-temporal …

Small GTPases and BAR domain proteins regulate branched actin polymerisation for clathrin and dynamin-independent endocytosis

M Sathe, G Muthukrishnan, J Rae, A Disanza… - NATURE …, 2018 - air.unimi.it
Using real-time TIRF microscopy imaging, we identify sites of clathrin and dynamin-
independent CLIC/GEEC (CG) endocytic vesicle formation. This allows spatio-temporal …