Pharmacological Inhibition of Inositol Hexakisphosphate Kinase 1 Protects Mice against Obesity-Induced Bone Loss
Siddaraju V Boregowda1, Manjunatha K Nanjappa2, Cori N Booker1
1Department of Molecular Medicine, UF Scripps Biomedical Research, Jupiter, FL 33458, USA.
Abstract:
Obesity and type II diabetes mellitus (T2DM) are prominent risk factors for secondary osteoporosis due to the negative impacts of hyperglycemia and excessive body fat on bone metabolism. While the armamentarium of anti-diabetic drugs is expanding, their negative or unknown impacts on bone metabolism limits effectiveness. The inactivation of inositol hexakisphosphate kinase 1 (IP6K1) protects mice from high-fat-diet (HFD)-induced obesity (DIO) and insulin resistance by enhancing thermogenic energy expenditure, but the role of this kinase and the consequences of its inhibition on bone metabolism are unknown. To determine if IP6K1 inhibition in obese mice affords protection against obesity-induced metabolic derangements and bone loss, we maintained 2-month-old mice on a normal chow control diet or HFD under thermal neutral conditions for 100 d. Beginning on day 40, HFD-fed mice were divided into two groups and administered daily injections of vehicle or the pan-IP6K inhibitor TNP [N2-(m-Trifluorobenzyl), N6-(p-nitrobenzyl) purine]. HFD-fed mice developed obesity, hyperglycemia, hyperlipidemia, and secondary osteoporosis, while TNP administration protected mice against HFD-induced metabolic and lipid derangements and preserved bone mass, mineral density, and trabecular microarchitecture, which correlated with reduced serum leptin levels, reduced marrow adiposity, and preservation of marrow resident skeletal stem/progenitor cells (SSPCs). TNP also exhibited hypotensive activity, an unrealized benefit of the drug, and its prolonged administration had no adverse impacts on spermatogenesis. Together, these data indicate that the inhibition of IP6K1 using selective inhibitors, such as TNP, may provide an effective strategy to manage obesity and T2DM due to its bone sparing effects.
Insights
Inhibiting inositol hexakisphosphate kinase 1 (IP6K1) with TNP protects obese mice from metabolic issues and bone loss. This suggests IP6K1 inhibitors could treat obesity and type II diabetes while preserving bone health.
Area of Science:
- Metabolic disease research
- Bone biology
- Pharmacology
Background:
- Obesity and type II diabetes mellitus (T2DM) increase osteoporosis risk.
- Existing anti-diabetic drugs may negatively impact bone metabolism.
- The role of inositol hexakisphosphate kinase 1 (IP6K1) in obesity-related bone loss is unknown.
Purpose of the Study:
- To investigate if IP6K1 inhibition protects against obesity-induced metabolic derangements and bone loss.
- To assess the effects of the IP6K1 inhibitor TNP in a mouse model of diet-induced obesity (DIO).
Main Methods:
- Mice were fed a high-fat diet (HFD) or control diet.
- HFD-fed mice received daily injections of vehicle or the IP6K1 inhibitor TNP.
- Bone mass, density, microarchitecture, and metabolic markers were analyzed.
Main Results:
- TNP administration prevented HFD-induced obesity, hyperglycemia, and hyperlipidemia.
- TNP preserved bone mass, mineral density, and trabecular microarchitecture.
- Inhibition of IP6K1 reduced serum leptin, marrow adiposity, and preserved skeletal stem/progenitor cells (SSPCs).
Conclusions:
- IP6K1 inhibition effectively manages obesity and T2DM-related metabolic dysfunction.
- TNP demonstrates significant bone-sparing effects in obese mice.
- Selective IP6K1 inhibitors represent a potential therapeutic strategy for metabolic diseases with bone protection benefits.
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