4.4 Article

Myosin II proteins are required for organization of calcium-induced actin networks upstream of mitochondrial division

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MOLECULAR BIOLOGY OF THE CELL
卷 33, 期 7, 页码 -

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AMER SOC CELL BIOLOGY
DOI: 10.1091/mbc.E22-01-0005

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资金

  1. National Institutes of Health (NIH) [R35 GM122545, R01 DK088826, P20 GM113132]
  2. Deutsche Forschungs-gemeinschaft (DFG) [KA5106/1-1]
  3. Spanish Ministry of Science and Innovation [SAF2017-87408, PID2020-116232RB-I00]
  4. ECRIN-M3 from AECC/AIRC/CRUK (Asociation Espanola Contra el Cancer/American International Recruitment Council/Cancer Research UK)
  5. Programa e Apoyo a Planes Estrategicos de Investigacion de Estructuras de Investigacion de Excelencia of the Ministry of Education of the Castilla-Leon Government [CLC-2017-01]
  6. NIH [R35 GM119455]

向作者/读者索取更多资源

The formin INF2 polymerizes a calcium-activated cytoplasmic network of actin filaments, known as calcium-induced actin polymerization (CIA). Nonmuscle myosin II (NMII) is activated within 60 s of calcium stimulation and recruited to the CIA network. Knockout of any NMII affects the organization of the CIA network and its downstream effects. NMIIC, despite being the least abundant NMII, is equally important for CIA.
The formin INF2 polymerizes a calcium-activated cytoplasmic network of actin filaments, which we refer to as calcium-induced actin polymerization (CIA). CIA plays important roles in multiple cellular processes, including mitochondrial dynamics and vesicle transport. Here, we show that nonmuscle myosin II (NMII) is activated within 60 s of calcium stimulation and rapidly recruited to the CIA network. Knockout of any individual NMII in U2OS cells affects the organization of the CIA network, as well as three downstream effects: endoplasmic-reticulum-to-mitochondrial calcium transfer, mitochondrial Drp1 recruitment, and mitochondrial division. Interestingly, while NMIIC is the least abundant NMII in U2OS cells (>200-fold less than NMIIA and >10-fold less than NMIIB), its knockout is equally deleterious to CIA. On the basis of these results, we propose that myosin II filaments containing all three NMII heavy chains exert organizational and contractile roles in the CIA network. In addition, NMIIA knockout causes a significant decrease in myosin regulatory light chain levels, which might have additional effects.

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