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Loss of connectin novex-3 leads to heart dysfunction associated with impaired cardiomyocyte proliferation and abnormal nuclear mechanics.
Hashimoto, Ken; Ohira, Momoko; Kodama, Aya; Kimoto, Misaki; Inoue, Mariko; Toné, Shigenobu; Usui, Yuu; Hanashima, Akira; Goto, Takato; Ogura, Yuhei; Ujihara, Yoshihiro; Mohri, Satoshi.
Afiliación
  • Hashimoto K; First Department of Physiology, Kawasaki Medical School, Kurashiki, 701-0192, Japan. khashimo@med.kawasaki-m.ac.jp.
  • Ohira M; First Department of Physiology, Kawasaki Medical School, Kurashiki, 701-0192, Japan.
  • Kodama A; First Department of Physiology, Kawasaki Medical School, Kurashiki, 701-0192, Japan.
  • Kimoto M; First Department of Physiology, Kawasaki Medical School, Kurashiki, 701-0192, Japan.
  • Inoue M; Central Research Institute, Kawasaki Medical School, Kurashiki, 701-0192, Japan.
  • Toné S; Laboratory of Molecular Developmental Biology, Graduate School of Science and Engineering, Tokyo Denki University, Hatoyama, Saitama, 350-0394, Japan.
  • Usui Y; First Department of Physiology, Kawasaki Medical School, Kurashiki, 701-0192, Japan.
  • Hanashima A; First Department of Physiology, Kawasaki Medical School, Kurashiki, 701-0192, Japan.
  • Goto T; Department of Electrical and Mechanical Engineering, Nagoya Institute of Technology, Nagoya, 466-8555, Japan.
  • Ogura Y; Department of Electrical and Mechanical Engineering, Nagoya Institute of Technology, Nagoya, 466-8555, Japan.
  • Ujihara Y; Department of Electrical and Mechanical Engineering, Nagoya Institute of Technology, Nagoya, 466-8555, Japan.
  • Mohri S; First Department of Physiology, Kawasaki Medical School, Kurashiki, 701-0192, Japan.
Sci Rep ; 14(1): 13727, 2024 06 14.
Article en En | MEDLINE | ID: mdl-38877142
ABSTRACT
Connectin (also known as titin) is a giant striated muscle protein that functions as a molecular spring by providing elasticity to the sarcomere. Novex-3 is a short splice variant of connectin whose physiological function remains unknown. We have recently demonstrated using in vitro analyses that in addition to sarcomere expression, novex-3 was also expressed in cardiomyocyte nuclei exclusively during fetal life, where it provides elasticity/compliance to cardiomyocyte nuclei and promotes cardiomyocyte proliferation in the fetus, suggesting a non-sarcomeric function. Here, we analyzed novex-3 knockout mice to assess the involvement of this function in cardiac pathophysiology in vivo. Deficiency of novex-3 compromised fetal cardiomyocyte proliferation and induced the enlargement of individual cardiomyocytes in neonates. In adults, novex-3 deficiency resulted in chamber dilation and systolic dysfunction, associated with Ca2+ dysregulation, resulting in a reduced life span. Mechanistic analyses revealed a possible association between impaired proliferation and abnormal nuclear mechanics, including stiffer nuclei positioned peripherally with stabilized circumnuclear microtubules in knockout cardiomyocytes. Although the underlying causal relationships were not fully elucidated, these data show that novex-3 has a vital non-sarcomeric function in cardiac pathophysiology and serves as an early contributor to cardiomyocyte proliferation.
Asunto(s)

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Núcleo Celular / Ratones Noqueados / Miocitos Cardíacos / Proliferación Celular / Conectina Idioma: En Revista: Sci Rep Año: 2024 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Núcleo Celular / Ratones Noqueados / Miocitos Cardíacos / Proliferación Celular / Conectina Idioma: En Revista: Sci Rep Año: 2024 Tipo del documento: Article