PPM1B and P-IKKβ expression levels correlated inversely with rat gastrocnemius atrophy after denervation

Jian Wei1, Bing-Sheng Liang

  • 1Department of Orthopedics, the Second Hospital, Shanxi Medical University, Taiyuan, China.

Insights

Reduced Mg(2+)/Mn(2+)-dependent protein phosphatase 1B (PPM1B) and increased phosphorylated inhibitor of nuclear factor-κB kinase β (P-IKKβ) are linked to skeletal muscle atrophy following denervation. These factors may serve as biomarkers for muscle wasting.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Physiology

Background:

  • Activated inhibitor of nuclear factor-κB kinase β (IKKβ) is crucial for denervated skeletal muscle atrophy.
  • Mg(2+)/Mn(2+)-dependent protein phosphatase 1B (PPM1B) is known to inactivate IKKβ, but its role in denervated muscle is underexplored.

Purpose of the Study:

  • To investigate the expression patterns and significance of PPM1B and phosphorylated IKKβ (P-IKKβ) in denervated skeletal muscle.
  • To determine the relationship between PPM1B, P-IKKβ, and the degree of muscle atrophy.

Main Methods:

  • Sciatic nerve transection was performed on Wistar rats.
  • Gastrocnemius muscles were collected at various time points post-denervation (0, 2, 7, 14, 28 days).
  • RT-PCR and Western blot analyses were used to quantify PPM1B and P-IKKβ levels; muscle wet weight ratio assessed atrophy.

Main Results:

  • PPM1B mRNA and protein levels were significantly decreased post-denervation compared to controls.
  • P-IKKβ levels showed a reciprocal increase.
  • PPM1B expression negatively correlated with P-IKKβ, and decreasing PPM1B correlated with increased muscle atrophy.

Conclusions:

  • PPM1B and P-IKKβ expression levels are closely associated with skeletal muscle atrophy in denervated limbs.
  • PPM1B and P-IKKβ show potential as reliable biomarkers for assessing skeletal muscle atrophy.

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