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Peptide Scanning-assisted Identification of a Monoclonal Antibody-recognized Linear B-cell Epitope
Published on: March 24, 2017
Epitope-specific monoclonal antibodies to FSHβ increase bone mass
Yaoting Ji1,2, Peng Liu1, Tony Yuen1
1The Mount Sinai Bone Program, Icahn School of Medicine at Mount Sinai, New York, NY 10029.
Abstract:
Pituitary hormones have long been thought solely to regulate single targets. Challenging this paradigm, we discovered that both anterior and posterior pituitary hormones, including FSH, had other functions in physiology. We have shown that FSH regulates skeletal integrity, and, more recently, find that FSH inhibition reduces body fat and induces thermogenic adipose tissue. A polyclonal antibody raised against a short, receptor-binding epitope of FSHβ was found not only to rescue bone loss postovariectomy, but also to display marked antiobesity and probeiging actions. Questioning whether a single agent could be used to treat two medical conditions of public health importance--osteoporosis and obesity--we developed two further monoclonal antibodies, Hf2 and Mf4, against computationally defined receptor-binding epitopes of FSHβ. Hf2 has already been shown to reduce body weight and fat mass and cause beiging in mice on a high-fat diet. Here, we show that Hf2, which binds mouse Fsh in immunoprecipitation assays, also increases cortical thickness and trabecular bone volume, and microstructural parameters, in sham-operated and ovariectomized mice, noted on microcomputed tomography. This effect was largely recapitulated with Mf4, which inhibited bone resorption by osteoclasts and stimulated new bone formation by osteoblasts. These effects were exerted in the absence of alterations in serum estrogen in wild-type mice. We also reconfirm the existence of Fshrs in bone by documenting the specific binding of fluorescently labeled FSH, FSH-CH, in vivo. Our study provides the framework for the future development of an FSH-based therapeutic that could potentially target both bone and fat.
Insights
Follicle-stimulating hormone (FSH) demonstrates novel roles beyond reproduction. Targeting FSH with new antibodies shows potential for treating osteoporosis and obesity by improving bone density and reducing body fat.
Area of Science:
- Endocrinology
- Bone Biology
- Metabolic Research
Background:
- Pituitary hormones, including FSH, are traditionally viewed as having single-target physiological roles.
- Emerging evidence suggests FSH influences skeletal integrity and fat metabolism.
- Existing treatments for osteoporosis and obesity often target separate pathways.
Purpose of the Study:
- To investigate the potential of targeting FSH as a dual therapeutic for osteoporosis and obesity.
- To evaluate the efficacy of novel FSHβ-targeting monoclonal antibodies (Hf2 and Mf4) in preclinical models.
Main Methods:
- Development of monoclonal antibodies (Hf2, Mf4) against FSHβ receptor-binding epitopes.
- Administration of antibodies to sham-operated and ovariectomized mice.
- Assessment of bone parameters using microcomputed tomography and evaluation of body composition and adipose tissue.
- Immunoprecipitation assays to confirm antibody binding to FSH.
Main Results:
- Antibody Hf2 increased cortical thickness and trabecular bone volume in mice.
- Hf2 also reduced body fat and induced thermogenic adipose tissue (beiging).
- Antibody Mf4 demonstrated similar bone-protective effects and modulated osteoclast and osteoblast activity.
- These effects occurred without altering serum estrogen levels in wild-type mice.
- Direct binding of FSH to bone tissue (FSHrs) was reconfirmed in vivo.
Conclusions:
- FSH plays a significant role in regulating both bone mass and fat metabolism.
- Novel FSH-targeting antibodies (Hf2, Mf4) show promise as a single therapeutic agent for osteoporosis and obesity.
- This research lays the groundwork for developing FSH-based therapies for these prevalent conditions.
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