We have generated mice that carry a neuron-specific leptin receptor (LEPR) transgene whose expression is driven by the rat synapsin I promoter synapsin–LEPR B (SYN-LEPR-B). We have also generated mice that are compound hemizygotes for the transgenes SYN-LEPR-B and neuron-specific enolase–LEPR B (NSE-LEPR-B). We observed a degree of correction in db/db mice that are hemizygous (Syn db/db) and homozygous (Syn/Syn db/db) for the SYN-LEPR-B transgene similar to that previously reported for the NSE-LEPR-B transgene. We also show complete correction of the obesity and related phenotypes of db/db mice that are hemizygous for both NSE-LEPR-B and SYN-LEPR-B transgenes (Nse+Syn db/db). Body composition, insulin sensitivity, and cold tolerance were completely normalized in Nse+Syn db/db mice at 12 weeks of age compared with lean controls. In situ hybridization for LEPR B isoform expression in Nse+Syn db/db mice showed robust expression in the energy homeostasis–relevant regions of the hypothalamus. Expression of 3 neuropeptide genes, agouti-related peptide (Agrp), neuropeptide Y (Npy), and proopiomelanocortin (Pomc), was fully normalized in dual transgenic db/db mice. The 2 transgenes in concert conferred normal fertility to male and female db/db mice. Male mice with partial peripheral deletion of Lepr, induced in the periweaning phase, did not show alterations in body composition or mass. In summary, we show that brain-specific leptin signaling is sufficient to reverse the obesity, diabetes, and infertility of db/db mice.
Carl de Luca, Timothy J. Kowalski, Yiying Zhang, Joel K. Elmquist, Charlotte Lee, Manfred W. Kilimann, Thomas Ludwig, Shun-Mei Liu, Streamson C. Chua Jr.
Title and authors | Publication | Year |
---|---|---|
Slug in hypothalamic LepRb-expressing neurons promotes leptin resistance, obesity, and metabolic disease
Min-Hyun Kim, Lin Jiang, Yuan Li, Qiantao Zheng, Martin Myers, Wen-Shu Wu, Liangyou Rui |
Journal of Clinical Investigation | 2023 |
B cell–intrinsic requirement for WNK1 kinase in antibody responses in mice
Hayward DA, Vanes L, Wissmann S, Sivapatham S, Hartweger H, O\u2019May JB, de Boer LL, Mitter R, Köchl R, Stein JV, Tybulewicz VL |
Journal of Experimental Medicine | 2023 |
Repair of airway epithelia requires metabolic rewiring towards fatty acid oxidation
Crotta S, Villa M, Major J, Finsterbusch K, Llorian M, Carmeliet P, Buescher J, Wack A |
Nature Communications | 2023 |
SerpinA3N deficiency attenuates steatosis and enhances insulin signaling in male mice
Tran M, Mostofa MG, Picard M, Wu J, Wang L, Shin DJ |
The Journal of endocrinology | 2023 |
A molecularly distinct accumbal-to-lateral hypothalamic circuit modulates food seeking and consumption
Liu Y, Zhao ZD, Xie G, Chen R, Zhang Y |
2023 | |
Programming of metabolism by adipokines during development.
Donato J Jr |
Nature reviews. Endocrinology | 2023 |
Deletion of endothelial leptin receptors in mice promotes diet-induced obesity.
Gogiraju R, Witzler C, Shahneh F, Hubert A, Renner L, Bochenek ML, Zifkos K, Becker C, Thati M, Schäfer K |
Scientific Reports | 2023 |
Spatial dysregulation of T follicular helper cells impairs vaccine responses in aging.
Silva-Cayetano A, Fra-Bido S, Robert PA, Innocentin S, Burton AR, Watson EM, Lee JL, Webb LMC, Foster WS, McKenzie RCJ, Bignon A, Vanderleyden I, Alterauge D, Lemos JP, Carr EJ, Hill DL, Cinti I, Balabanian K, Baumjohann D, Espeli M, Meyer-Hermann M, Denton AE, Linterman MA |
Nature Immunology | 2023 |
Defining Gene Function in Spermatogonial Stem Cells Through Conditional Knockout Approaches.
Legrand JMD, Hobbs RM |
Methods in molecular biology (Clifton, N.J.) | 2023 |
Altered function of arcuate leptin receptor expressing neuropeptide Y neurons depending on energy balance.
Lee NJ, Oraha J, Qi Y, Enriquez RF, Tasan R, Herzog H |
Molecular Metabolism | 2023 |
Glutamate neurotransmission from leptin receptor cells is required for typical puberty and reproductive function in female mice
de Miera CS, Bellefontaine N, Allen SJ, Myers MG, Elias CF |
2023 | |
Leptin signaling and its central role in energy homeostasis
Liu Z, Xiao T, Liu H |
Frontiers in neuroscience | 2023 |
T cell migration requires ion and water influx to regulate actin polymerization.
de Boer LL, Vanes L, Melgrati S, Biggs O'May J, Hayward D, Driscoll PC, Day J, Griffiths A, Magueta R, Morrell A, MacRae JI, Köchl R, Tybulewicz VLJ |
Nature Communications | 2023 |