Supplementary information

From the following article:

Endothelial tubes assemble from intracellular vacuoles in vivo

Makoto Kamei, W. Brian Saunders, Kayla J. Bayless, Louis Dye, George E. Davis and Brant M. Weinstein

Nature 442, 453-456(27 July 2006)

doi:10.1038/nature04923

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Supplementary Methods

Detailed descriptions of materials and methods used in this study.

Supplementary Movie Legends

Detailed legends for the Supplementary Movies.

Supplementary Movie 1

Time-lapse DIC imaging of cultured human umbilical vein endothelial cells forming, collapsing and fusing vacuoles.

Supplementary Movie 2

Time-lapse DIC imaging of a single cultured human umbilical vein endothelial cell forming vacuoles that merge and expand into a highly enlarged vacuolar space.

Supplementary Movie 3

Time-lapse 2-photon imaging of an embryonic zebrafish intersegmental vessel, with small vacuoles forming, collapsing and fusing.

Supplementary Movie 4

Time-lapse 2-photon imaging of an embryonic zebrafish intersegmental vessel forming an expanded vacuolar/lumenal space.

Supplementary Movie 5

Time-lapse 2-photon imaging of a lumenizing intersegmental vessel in a zebrafish embryo.

Supplementary Movie 6

Time-lapse DIC imaging of a lumenizing intersegmental vessel in a zebrafish embryo.

Supplementary Movie 7

Time-lapse DIC imaging of cultured human umbilical vein endothelial cells forming an intercellular space.

Supplementary Movie 8

Time-lapse DIC imaging of cultured human umbilical vein endothelial cells forming an intercellular space.

Supplementary Movie 9

Time-lapse epifluorescence imaging of cultured human umbilical vein endothelial cells forming an intercellular space without mixing of their respective cytoplasmic contents.

Supplementary Movie 10

Time-lapse 2-photon imaging of red quantum-dot-injected embryonic zebrafish trunk vessels.

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