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PMID: 16035921 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

De novo formation of left-right asymmetry by posterior tilt of nodal cilia.

PLoS biology ·Vol. 3 ·No. 8 ·2005-08-00 ·Pages e268

Nonaka S, Yoshiba S, Watanabe D, Ikeuchi S, Goto T, Marshall WF, Hamada H

Abstract

In the developing mouse embryo, leftward fluid flow on the ventral side of the node determines left-right (L-R) asymmetry. However, the mechanism by which the rotational movement of node cilia can generate a unidirectional flow remains hypothetical. Here we have addressed this question by motion and morphological analyses of the node cilia and by fluid dynamic model experiments. We found that the cilia stand, not perpendicular to the node surface, but tilted posteriorly. We further confirmed that such posterior tilt can produce leftward flow in model experiments. These results strongly suggest that L-R asymmetry is not the descendant of pre-existing L-R asymmetry within each cell but is generated de novo by combining three sources of spatial information: antero-posterior and dorso-ventral axes, and the chirality of ciliary movement.

MeSH Terms
Animals Body Patterning Cilia/physiology,ultrastructure Embryo, Mammalian/physiology,ultrastructure Embryonic Development Extracellular Fluid Mice Microscopy, Electron, Scanning Models, Biological Rotation
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Nonaka Shigenori
Graduate School of Frontier Biosciences, Osaka University, Japan. [email protected]
Yoshiba Satoko
Watanabe Daisuke
Ikeuchi Shingo
Goto Tomonobu
Marshall Wallace F
Hamada Hiroshi
References (19)
19 references, click to expand
  1. The 220-kD protein colocalizing with cadherins in non-epithelial cells is identical to ZO-1, a tight junction-associated protein in epithelial cells: cDNA cloning and immunoelectron microscopy.
    J Cell Biol. 1993 May;121(3):491-502 PMID: 8486731
  2. The development of handedness in left/right asymmetry.
    Development. 1990 May;109(1):1-9 PMID: 2209459
  3. Mutation of an axonemal dynein affects left-right asymmetry in inversus viscerum mice.
    Nature. 1997 Oct 30;389(6654):963-6 PMID: 9353118
  4. Randomization of left-right asymmetry due to loss of nodal cilia generating leftward flow of extraembryonic fluid in mice lacking KIF3B motor protein.
    Cell. 1998 Dec 11;95(6):829-37 PMID: 9865700
  5. Rotation of the central pair microtubules in eukaryotic flagella.
    Mol Biol Cell. 1999 Jan;10(1):1-4 PMID: 9880321
  6. Computer simulation of flagellar movement IX. Oscillation and symmetry breaking in a model for short flagella and nodal cilia.
    Cell Motil Cytoskeleton. 2005 Jan;60(1):35-47 PMID: 15573415
  7. Kupffer's vesicle is a ciliated organ of asymmetry in the zebrafish embryo that initiates left-right development of the brain, heart and gut.
    Development. 2005 Mar;132(6):1247-60 PMID: 15716348
  8. Mechanism of nodal flow: a conserved symmetry breaking event in left-right axis determination.
    Cell. 2005 May 20;121(4):633-44 PMID: 15907475
  9. Abnormal nodal flow precedes situs inversus in iv and inv mice.
    Mol Cell. 1999 Oct;4(4):459-68 PMID: 10549278
  10. Establishment of vertebrate left-right asymmetry.
    Nat Rev Genet. 2002 Feb;3(2):103-13 PMID: 11836504
  11. Determination of left-right patterning of the mouse embryo by artificial nodal flow.
    Nature. 2002 Jul 4;418(6893):96-9 PMID: 12097914
  12. A two-cilia model for vertebrate left-right axis specification.
    Genes Dev. 2003 Jan 1;17(1):1-6 PMID: 12514094
  13. The left-right determinant Inversin is a component of node monocilia and other 9+0 cilia.
    Development. 2003 May;130(9):1725-34 PMID: 12642479
  14. Two populations of node monocilia initiate left-right asymmetry in the mouse.
    Cell. 2003 Jul 11;114(1):61-73 PMID: 12859898
  15. Fluid-dynamical basis of the embryonic development of left-right asymmetry in vertebrates.
    Proc Natl Acad Sci U S A. 2004 May 11;101(19):7234-9 PMID: 15118088
  16. Cillary motion in Paramecium. A scanning electron microscope study.
    J Cell Biol. 1972 Oct;55(1):250-5 PMID: 4569410
  17. Mechanics of ciliary locomotion.
    Biol Rev Camb Philos Soc. 1974 Feb;49(1):85-125 PMID: 4206625
  18. Hydrodynamic calculations on the movements of cilia and flagella. I. Paramecium.
    J Theor Biol. 1974 May;45(1):183-203 PMID: 4836886
  19. Cell proliferation in mammalian gastrulation: the ventral node and notochord are relatively quiescent.
    Dev Dyn. 1996 Apr;205(4):471-85 PMID: 8901057
Article Info
Journal
PLoS biology
Abbr.
PLoS Biol
ISSN
1545-7885
Published
2005-08-00
Epub
2005-00-26
Pages
e268
Language
English
Region
United States
NLM ID
101183755
PMCID
PMC1180513
Subset
IM
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