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Published on: November 27, 2016
Myosin 5b deficiency alters liver proliferation, zonation, and bile acid composition
Piper R McKee1, Rachel Edens-Valentine1, Rachel Stubler1
1Department of Regenerative Medicine & Cell Biology, Medical University of South Carolina, Charleston, South Carolina, USA.
Background:
Myosin 5b (Myo5b) is a motor protein critical for trafficking proteins to the apical surface of intestinal epithelial cells. Inactivating mutations in MYO5B cause microvillus inclusion disease (MVID), a congenital diarrhea disorder that often leads to liver cholestasis. While Myo5b's role in the intestine is well characterized, its function in the liver remains unclear.
Methods And Results:
To define the hepatic consequences of Myo5b loss, we analyzed germline Myo5b knockout (KO) mice. Bulk RNAseq of KO livers revealed significant transcriptomic alterations, notably downregulation of genes linked to cell proliferation. Immunostaining confirmed reduced Ki67, phospho-histone H3, and cyclin D1 expression, along with impaired growth of liver organoids in Myo5b-deficient mice. Histology and lipid staining showed steatosis and enlarged lipid droplets, with gene signatures favoring lipogenesis and ketogenesis in mice lacking Myo5b. Myo5b KO livers also displayed disrupted zonated gene expression and loss of zone 1 and zone 3 markers. Bile acid profiling revealed reduced hepatic bile acid levels, decreased expression of classical pathway genes (Cyp7a1, Cyp7b1), and compensatory upregulation of Cyp27a1. In the ileum, we observed mislocalization of the apical bile acid transporter ASBT and decreased levels of basolateral OSTβ, leading to impaired enterohepatic recycling and increased luminal bile acids.
Conclusions:
These findings reveal a previously unrecognized role for Myo5b in liver proliferation, metabolic zonation, and bile acid homeostasis, highlighting its importance in maintaining hepatobiliary function.
Insights
Myosin 5b (Myo5b) is crucial for liver health, impacting cell proliferation, metabolism, and bile acid balance. Loss of Myo5b leads to liver steatosis and disrupted bile acid recycling, revealing its vital hepatobiliary function.
Area of Science:
- Cell Biology
- Hepatology
- Molecular Medicine
Background:
- Myosin 5b (Myo5b) is essential for apical protein trafficking in intestinal epithelial cells.
- Mutations in MYO5B cause microvillus inclusion disease (MVID), a congenital diarrhea disorder with liver cholestasis.
- Myo5b's specific role in liver function is not well understood.
Purpose of the Study:
- To investigate the hepatic consequences of Myo5b deficiency.
- To elucidate the role of Myo5b in liver proliferation, metabolism, and bile acid homeostasis.
Main Methods:
- Analysis of germline Myo5b knockout (KO) mice.
- Bulk RNA sequencing (RNAseq) of liver tissues.
- Immunostaining for proliferation markers (Ki67, phospho-histone H3, cyclin D1).
- Histology and lipid staining.
- Bile acid profiling.
- Analysis of ileal bile acid transporter expression.
Main Results:
- Myo5b KO livers showed downregulated proliferation genes and reduced proliferation markers.
- Histology revealed steatosis and enlarged lipid droplets, with gene signatures favoring lipogenesis and ketogenesis.
- Disrupted liver zonation and altered bile acid homeostasis were observed, including reduced hepatic bile acid levels and impaired enterohepatic recycling.
- Mislocalization of ASBT and decreased OSTβ in the ileum led to increased luminal bile acids.
Conclusions:
- Myo5b plays a critical, previously unrecognized role in regulating liver cell proliferation.
- Myo5b is essential for maintaining hepatic metabolic zonation and bile acid homeostasis.
- These findings highlight Myo5b's importance in overall hepatobiliary function.
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