TY - JOUR
T1 - YAP is essential for tissue tension to ensure vertebrate 3D body shape
AU - Porazinski, Sean
AU - Wang, Huijia
AU - Asaoka, Yoichi
AU - Behrndt, Martin
AU - Miyamoto, Tatsuo
AU - Morita, Hitoshi
AU - Hata, Shoji
AU - Sasaki, Takashi
AU - Krens, S. F.Gabriel
AU - Osada, Yumi
AU - Asaka, Satoshi
AU - Momoi, Akihiro
AU - Linton, Sarah
AU - Miesfeld, Joel B.
AU - Link, Brian A.
AU - Senga, Takeshi
AU - Castillo-Morales, Atahualpa
AU - Urrutia, Araxi O.
AU - Shimizu, Nobuyoshi
AU - Nagase, Hideaki
AU - Matsuura, Shinya
AU - Bagby, Stefan
AU - Kondoh, Hisato
AU - Nishina, Hiroshi
AU - Heisenberg, Carl Philipp
AU - Furutani-Seiki, Makoto
N1 - Publisher Copyright:
© 2015 Macmillan Publishers Limited. All rights reserved.
PY - 2015/5/14
Y1 - 2015/5/14
N2 - Vertebrates have a unique 3D body shape in which correct tissue and organ shape and alignment are essential for function. For example, vision requires the lens to be centred in the eye cup which must in turn be correctly positioned in the head. Tissue morphogenesis depends on force generation, force transmission through the tissue, and response of tissues and extracellular matrix to force. Although a century ago D'Arcy Thompson postulated that terrestrial animal body shapes are conditioned by gravity, there has been no animal model directly demonstrating how the aforementioned mechano-morphogenetic processes are coordinated to generate a body shape that withstands gravity. Here we report a unique medaka fish (Oryzias latipes) mutant, hirame (hir), which is sensitive to deformation by gravity. hir embryos display a markedly flattened body caused by mutation of YAP, a nuclear executor of Hippo signalling that regulates organ size. We show that actomyosin-mediated tissue tension is reduced in hir embryos, leading to tissue flattening and tissue misalignment, both of which contribute to body flattening. By analysing YAP function in 3D spheroids of human cells, we identify the Rho GTPase activating protein ARHGAP18 as an effector of YAP in controlling tissue tension. Together, these findings reveal a previously unrecognised function of YAP in regulating tissue shape and alignment required for proper 3D body shape. Understanding this morphogenetic function of YAP could facilitate the use of embryonic stem cells to generate complex organs requiring correct alignment of multiple tissues.
AB - Vertebrates have a unique 3D body shape in which correct tissue and organ shape and alignment are essential for function. For example, vision requires the lens to be centred in the eye cup which must in turn be correctly positioned in the head. Tissue morphogenesis depends on force generation, force transmission through the tissue, and response of tissues and extracellular matrix to force. Although a century ago D'Arcy Thompson postulated that terrestrial animal body shapes are conditioned by gravity, there has been no animal model directly demonstrating how the aforementioned mechano-morphogenetic processes are coordinated to generate a body shape that withstands gravity. Here we report a unique medaka fish (Oryzias latipes) mutant, hirame (hir), which is sensitive to deformation by gravity. hir embryos display a markedly flattened body caused by mutation of YAP, a nuclear executor of Hippo signalling that regulates organ size. We show that actomyosin-mediated tissue tension is reduced in hir embryos, leading to tissue flattening and tissue misalignment, both of which contribute to body flattening. By analysing YAP function in 3D spheroids of human cells, we identify the Rho GTPase activating protein ARHGAP18 as an effector of YAP in controlling tissue tension. Together, these findings reveal a previously unrecognised function of YAP in regulating tissue shape and alignment required for proper 3D body shape. Understanding this morphogenetic function of YAP could facilitate the use of embryonic stem cells to generate complex organs requiring correct alignment of multiple tissues.
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U2 - 10.1038/nature14215
DO - 10.1038/nature14215
M3 - Article
C2 - 25778702
AN - SCOPUS:84929315796
SN - 0028-0836
VL - 521
SP - 217
EP - 221
JO - Nature
JF - Nature
IS - 7551
ER -