TY - JOUR
T1 - Mammalian formin Fhod3 plays an essential role in cardiogenesis by organizing myofibrillogenesis
AU - Kan-O, Meikun
AU - Takeya, Ryu
AU - Abe, Takaya
AU - Kitajima, Naoyuki
AU - Nishida, Motohiro
AU - Tominaga, Ryuji
AU - Kurose, Hitoshi
AU - Sumimoto, Hideki
N1 - Funding Information:
We thank Drs. Masaya Oki (Kyushu University), Yuichi Shima (Kyushu University), and Kanako Miyabayashi (Kyushu University) for advice on analysis of embryonic mice; Dr. Kiyomasa Nishii (National Defense Medical College) for advice on observation of heartbeat using videomicroscopy; Dr. Jeffery Robbins (Cincinnati Children's Hospital Medical Center) for providing a-MHC promoter; Masato Tanaka (Kyushu University) for generation of transgenic mice; Masafumi Sasaki (Kyushu University) and Ryo Ugawa (Kyushu University) for electron microscopic analysis; Norihiko Kinoshita (Kyushu University) for histochemical analysis; Yohko Kage (Kyushu University), Natsuko Morinaga (Kyushu University), and Namiko Kubo (Kyushu University) for technical assistance; and Minako Nishino (Kyushu University) for secretarial assistance. We also appreciate, for technical support, the Research Support Center, Kyushu University Graduate School of Medical Sciences and the Laboratory for Technical Support, Medical Institute of Bioregulation, Kyushu University. This work was supported in part by Grants-in-Aid for Scientific Research and Targeted Proteins Research Program (TPRP) from the Ministry of Education, Culture, Sports, Science and Technology (MEXT), Japan, and by the Japan Foundation for Applied Enzymology and the Nakatomi Foundation.
Publisher Copyright:
© 2012 Published by The Company of Biologists Ltd.
PY - 2012/9/15
Y1 - 2012/9/15
N2 - Heart development requires organized integration of actin filaments into the sarcomere, the contractile unit of myofibrils, although it remains largely unknown how actin filaments are assembled during myofibrillogenesis. Here we show that Fhod3, a member of the formin family of proteins that play pivotal roles in actin filament assembly, is essential for myofibrillogenesis at an early stage of heart development. Fhod3-/- mice appear normal up to embryonic day (E) 8.5, when the developing heart, composed of premyofibrils, initiates spontaneous contraction. However, these premyofibrils fail to mature and myocardial development does not continue, leading to embryonic lethality by E11.5. Transgenic expression of wild-type Fhod3 in the heart restores myofibril maturation and cardiomyogenesis, which allow Fhod3-/- embryos to develop further. Moreover, cardiomyopathic changes with immature myofibrils are caused in mice overexpressing a mutant Fhod3, defective in binding to actin. These findings indicate that actin dynamics, regulated by Fhod3, participate in sarcomere organization during myofibrillogenesis and thus play a crucial role in heart development.
AB - Heart development requires organized integration of actin filaments into the sarcomere, the contractile unit of myofibrils, although it remains largely unknown how actin filaments are assembled during myofibrillogenesis. Here we show that Fhod3, a member of the formin family of proteins that play pivotal roles in actin filament assembly, is essential for myofibrillogenesis at an early stage of heart development. Fhod3-/- mice appear normal up to embryonic day (E) 8.5, when the developing heart, composed of premyofibrils, initiates spontaneous contraction. However, these premyofibrils fail to mature and myocardial development does not continue, leading to embryonic lethality by E11.5. Transgenic expression of wild-type Fhod3 in the heart restores myofibril maturation and cardiomyogenesis, which allow Fhod3-/- embryos to develop further. Moreover, cardiomyopathic changes with immature myofibrils are caused in mice overexpressing a mutant Fhod3, defective in binding to actin. These findings indicate that actin dynamics, regulated by Fhod3, participate in sarcomere organization during myofibrillogenesis and thus play a crucial role in heart development.
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U2 - 10.1242/bio.20121370
DO - 10.1242/bio.20121370
M3 - Article
AN - SCOPUS:84964798857
SN - 2046-6390
VL - 1
SP - 889
EP - 896
JO - Biology Open
JF - Biology Open
IS - 9
ER -