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Published on: November 9, 2020
Inhibition of SC4MOL and HSD17B7 shifts cellular sterol composition and promotes oligodendrocyte formation
Matthew J Pleshinger1, Ryan M Friedrich2, Zita Hubler2
1Department of Pharmacology, Case Western Reserve University School of Medicine Cleveland Ohio 44106 USA.
Abstract:
While the cholesterol biosynthesis pathway has been extensively studied, recent work has forged new links between inhibition of specific sterol pathway enzymes, accumulation of their unique sterol substrates, and biological areas as diverse as cancer, immunology, and neurodegenerative disease. We recently reported that dozens of small molecules enhance formation of oligodendrocytes, a glial cell type lost in multiple sclerosis, by inhibiting CYP51, Sterol 14-reductase, or EBP and inducing cellular accumulation of their 8,9-unsaturated sterol substrates. Several adjacent pathway enzymes also have 8,9-unsaturated sterol substrates but have not yet been evaluated as potential targets for oligodendrocyte formation or in many other biological contexts, in part due to a lack of available small-molecule probes. Here, we show that genetic suppression of SC4MOL or HSD17B7 increases the formation of oligodendrocytes. Additionally, we have identified and optimized multiple potent new series of SC4MOL and HSD17B7 inhibitors and shown that these small molecules enhance oligodendrocyte formation. SC4MOL inhibitor CW4142 induced accumulation of SC4MOL's sterol substrates in mouse brain and represents an in vivo probe of SC4MOL activity. Mechanistically, the cellular accumulation of these 8,9-unsaturated sterols represents a central driver of enhanced oligodendrocyte formation, as exogenous addition of purified SC4MOL and HSD17B7 substrates but not their 8,9-saturated analogs promotes OPC differentiation. Our work validates SC4MOL and HSD17B7 as novel targets for promoting oligodendrocyte formation, underlines a broad role for 8,9-unsaturated sterols as enhancers of oligodendrocyte formation, and establishes the first high-quality small molecules targeting SC4MOL and HSD17B7 as novel tools for probing diverse areas of biology.
Insights
New research identifies SC4MOL and HSD17B7 as targets for enhancing oligodendrocyte formation. Inhibiting these enzymes promotes the development of these crucial glial cells, offering new therapeutic avenues for neurological diseases.
Area of Science:
- Biochemistry
- Neuroscience
- Cell Biology
Background:
- The cholesterol biosynthesis pathway is linked to various diseases, including cancer and neurodegeneration.
- Inhibition of specific sterol pathway enzymes leads to the accumulation of unique sterol substrates, impacting diverse biological areas.
- Oligodendrocytes, vital glial cells lost in multiple sclerosis, can be enhanced by inhibiting enzymes like CYP51, Sterol 14-reductase, and EBP.
Purpose of the Study:
- To investigate SC4MOL and HSD17B7 as novel targets for promoting oligodendrocyte formation.
- To identify and optimize small-molecule inhibitors for SC4MOL and HSD17B7.
- To elucidate the mechanism by which 8,9-unsaturated sterols drive oligodendrocyte differentiation.
Main Methods:
- Genetic suppression of SC4MOL and HSD17B7.
- Identification and optimization of novel small-molecule inhibitors for SC4MOL and HSD17B7.
- In vivo studies using a SC4MOL inhibitor (CW4142) in mouse brain.
- Exogenous addition of purified sterol substrates to promote OPC differentiation.
Main Results:
- Genetic suppression of SC4MOL or HSD17B7 significantly increased oligodendrocyte formation.
- Novel potent small-molecule inhibitors targeting SC4MOL and HSD17B7 were developed and shown to enhance oligodendrocyte formation.
- SC4MOL inhibitor CW4142 demonstrated in vivo activity by inducing sterol substrate accumulation in mouse brain.
- Accumulation of 8,9-unsaturated sterols, driven by SC4MOL and HSD17B7 inhibition, was confirmed as a key mechanism for enhanced oligodendrocyte differentiation.
Conclusions:
- SC4MOL and HSD17B7 are validated as novel therapeutic targets for promoting oligodendrocyte formation.
- 8,9-unsaturated sterols broadly enhance oligodendrocyte formation.
- The developed small molecules targeting SC4MOL and HSD17B7 serve as valuable tools for biological research.
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