Morphological dynamics of mitochondria—a special emphasis on cardiac muscle cells

J Hom, SS Sheu - Journal of molecular and cellular cardiology, 2009 - Elsevier
J Hom, SS Sheu
Journal of molecular and cellular cardiology, 2009Elsevier
Mitochondria play a critical role in cellular energy metabolism, Ca2+ homeostasis, reactive
oxygen species generation, apoptosis, aging, and development. Many recent publications
have shown that a continuous balance of fusion and fission of these organelles is important
in maintaining their proper function. Therefore, there is a steep correlation between the form
and function of mitochondria. Many major proteins involved in mitochondrial fusion and
fission have been identified in different cell types, including heart. However, the functional …
Mitochondria play a critical role in cellular energy metabolism, Ca2+ homeostasis, reactive oxygen species generation, apoptosis, aging, and development. Many recent publications have shown that a continuous balance of fusion and fission of these organelles is important in maintaining their proper function. Therefore, there is a steep correlation between the form and function of mitochondria. Many major proteins involved in mitochondrial fusion and fission have been identified in different cell types, including heart. However, the functional role of mitochondrial dynamics in the heart remains, for the most part, unexplored. In this review we will cover the recent field of mitochondrial dynamics and its physiological and pathological implications, with a particular emphasis on the experimental and theoretical basis of mitochondrial dynamics in the heart.
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