Maternal α-casein deficiency extends the lifespan of offspring and programmes their body composition.

IF 5.4 2区 医学 Q1 GERIATRICS & GERONTOLOGY
GeroScience Pub Date : 2025-06-01 Epub Date: 2024-07-12 DOI:10.1007/s11357-024-01273-2
Andreas F Kolb, Claus Mayer, Alina Zitskaja, Linda Petrie, Khulod Hasaballah, Claire Warren, Ailsa Carlisle, Simon Lillico, Bruce Whitelaw
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Abstract

Early nutrition has significant effects on physiological outcomes during adult life. We have analysed the effect of maternal α-casein (CSN1S1) deficiency on the physiological fate of dams and their offspring. α-casein deficiency reduces maternal milk protein concentration by more than 50% and attenuates the growth of pups to 27% (p < 0.001) of controls at the point of weaning. This is associated with a permanent reduction in adult body weight (- 31% at 25 weeks). Offspring nursed by α-casein deficient dams showed a significantly increased lifespan (+ 20%, χ2: 10.6; p = 0.001). Liver transcriptome analysis of offspring nursed by α-casein deficient dams at weaning revealed gene expression patterns similar to those found in dwarf mice (reduced expression of somatotropic axis signalling genes, increased expression of xenobiotic metabolism genes). In adult mice, the expression of somatotropic axis genes returned to control levels. This demonstrates that, in contrast to dwarf mice, attenuation of the GH-IGF signalling axis in offspring nursed by α-casein deficient dams is transient, while the changes in body size and lifespan are permanent. Offspring nursed by α-casein deficient dams showed permanent changes in body composition. Absolute and relative adipose tissue weights (p < 0.05), the percentage of body fat (p < 0.001) as well as adipocyte size in epididymal white adipose tissue are all reduced. Serum leptin levels were 25% of those found in control mice (p < 0.001). Liver lipid content and lipid composition were significantly altered in response to postnatal nutrition. This demonstrates the nutrition in early life programmes adult lipid metabolism, body composition and lifespan.

Abstract Image

母体缺乏α-酪蛋白可延长后代的寿命并改善其身体组成。
早期营养对成年后的生理结果有重大影响。我们分析了母体α-酪蛋白(CSN1S1)缺乏对母体及其后代生理命运的影响。α-酪蛋白缺乏会使母体乳蛋白浓度降低50%以上,并使幼崽的生长速度减慢27%(p 2:10.6;p = 0.001)。α-酪蛋白缺乏的母鼠哺育的后代在断奶时的肝脏转录组分析显示了与侏儒小鼠类似的基因表达模式(体细胞轴信号基因表达减少,异生物代谢基因表达增加)。成年小鼠的体动轴基因表达恢复到控制水平。这表明,与侏儒小鼠不同,α-酪蛋白缺乏的母鼠哺育的后代体内 GH-IGF 信号轴的衰减是短暂的,而体型和寿命的变化则是永久性的。α-酪蛋白缺乏的母体哺育的后代的身体成分会发生永久性变化。绝对和相对脂肪组织重量(p
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来源期刊
GeroScience
GeroScience Medicine-Complementary and Alternative Medicine
CiteScore
10.50
自引率
5.40%
发文量
182
期刊介绍: GeroScience is a bi-monthly, international, peer-reviewed journal that publishes articles related to research in the biology of aging and research on biomedical applications that impact aging. The scope of articles to be considered include evolutionary biology, biophysics, genetics, genomics, proteomics, molecular biology, cell biology, biochemistry, endocrinology, immunology, physiology, pharmacology, neuroscience, and psychology.
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