Type 2 Deiodinase Promotes Fatty Adipogenesis in Muscle Fibroadipogenic Progenitors From Adult Male Mice.

IF 3.8 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Cristina Luongo, Daniela Di Girolamo, Raffaele Ambrosio, Sara Di Cintio, Maria Angela De Stefano, Tommaso Porcelli, Domenico Salvatore
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Abstract

Fibro-adipogenic progenitor cells (FAPs) are a heterogeneous population of multipotent mesenchymal cells that give rise to fibroblasts and adipocytes. In response to muscle injury, FAPs are activated and cooperate with inflammatory and muscle stem cells to promote muscle regeneration. In pathological conditions, such as muscular dystrophies, this coordinated response is partially lost and an accumulation of FAPs is observed that is responsible for maladaptive fibrosis, ectopic fat deposition, and impaired muscle regeneration. The role of intracellular thyroid hormone (TH) signaling in this cellular context is largely unknown. Here we show that intracellular 3,5,3'-triiodothyronine (T3) concentration in FAPs is increased in vitro during adipogenic differentiation via the increase of the T3-producing type 2 deiodinase (D2). The adipogenic potential is reduced in FAPs cultured in the presence of 3,3,5'-triiodothyronine (rT3), a specific D2 inhibitor, while exogenous administration of THs is able to induce the expression of relevant adipogenic genes. Accordingly, on genetic D2 depletion in vivo, adipogenesis was significantly reduced in D2KO compared to control mice. These data were confirmed using a FAP-inducible specific D2-KO mouse model, suggesting that a cell-specific D2-depletion in FAPs is sufficient to decrease fatty muscle infiltration and to improve muscle regeneration. Taken together, these data show that TH signaling is dynamically modulated in FAPs wherein D2-produced T3 is required to promote maturation of FAPs into adipocytes.

2型脱碘酶促进成年雄性小鼠肌肉纤维脂肪祖细胞的脂肪脂肪生成。
纤维脂肪原细胞(FAPs)是多能间充质细胞的异质群体,可产生成纤维细胞和脂肪细胞。在肌肉损伤的反应中,FAPs被激活,并与炎症和肌肉干细胞合作,促进肌肉再生。在病理条件下,如肌肉营养不良,这种协调反应部分丧失,观察到FAPs的积累,这是导致适应性不良纤维化、异位脂肪沉积和肌肉再生受损的原因。细胞内甲状腺激素(TH)信号在这种细胞背景下的作用在很大程度上是未知的。本研究表明,在体外成脂分化过程中,FAPs细胞内T3浓度通过产生T3的2型脱碘酶(D2)的增加而增加。在rT3(一种特异性D2抑制剂)存在下培养的FAPs中,成脂潜能降低,而外源性给药THs能够诱导相关成脂基因的表达。因此,体内D2基因缺失后,与对照小鼠相比,D2KO的脂肪生成明显减少。这些数据通过fap诱导的特异性D2-KO小鼠模型得到证实,表明FAPs中细胞特异性d2的消耗足以减少脂肪肌肉浸润并改善肌肉再生。综上所述,这些数据表明,在FAPs中,TH信号是动态调节的,其中d2产生的T3是促进FAPs成熟为脂肪细胞所必需的。
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来源期刊
Endocrinology
Endocrinology 医学-内分泌学与代谢
CiteScore
8.10
自引率
4.20%
发文量
195
审稿时长
2-3 weeks
期刊介绍: The mission of Endocrinology is to be the authoritative source of emerging hormone science and to disseminate that new knowledge to scientists, clinicians, and the public in a way that will enable "hormone science to health." Endocrinology welcomes the submission of original research investigating endocrine systems and diseases at all levels of biological organization, incorporating molecular mechanistic studies, such as hormone-receptor interactions, in all areas of endocrinology, as well as cross-disciplinary and integrative studies. The editors of Endocrinology encourage the submission of research in emerging areas not traditionally recognized as endocrinology or metabolism in addition to the following traditionally recognized fields: Adrenal; Bone Health and Osteoporosis; Cardiovascular Endocrinology; Diabetes; Endocrine-Disrupting Chemicals; Endocrine Neoplasia and Cancer; Growth; Neuroendocrinology; Nuclear Receptors and Their Ligands; Obesity; Reproductive Endocrinology; Signaling Pathways; and Thyroid.
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