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硬骨鱼中Pth4基因的遗传消融会破坏钙磷平衡、骨骼发育和肾脏转录组。

Genetic ablation of Pth4 disrupts calcium-phosphate balance, bone development, and kidney transcriptome in teleosts.

作者信息

Méndez-Martínez Luis, Suarez-Bregua Paula, Guerrero-Peña Laura, Barreiro-Docío Elisa, Costas-Prado Carolina, Cobelo-García Antonio, Rotllant Josep

机构信息

Acuabiotec Lab. Institute of Marine Research, Spanish National Research Council (IIM-CSIC), 36208 Vigo, Spain.

Marine Biogeochemistry Group. Institute of Marine Research, Spanish National Research Council (IIM-CSIC), 36208 Vigo, Spain.

出版信息

Gen Comp Endocrinol. 2025 Oct;373:114805. doi: 10.1016/j.ygcen.2025.114805. Epub 2025 Aug 26.

Abstract

Parathyroid hormone 4 (Pth4) is an evolutionarily conserved member of the PTH family, expressed in hypothalamic neurons and lost in eutherian mammals. In order to elucidate its role in mineral homeostasis and skeletal development, a pth4 knockout (pth4) zebrafish line was generated using CRISPR/Cas9 and transcriptomic profiling was conducted across six key tissues: brain, kidney, intestine, gills, scales, and bone. The results obtained demonstrated that the loss of Pth4 led to pronounced disturbances in calcium and phosphate homeostasis, skeletal deformities, and widespread tissue-specific transcriptional alterations. Notably, dysregulation of mineral regulatory genes-such asfgf23,phex, andslc34a1a was particularly evident in the kidney, suggesting disruption of the FGF23-Klotho axis. In parallel, differential expression of extracellular matrix genes (col1a1a,col10a1a,col11a1) and matrix remodeling enzymes (mmp9,mmp13a,mmp2) in bone and scales indicated impaired skeletal remodeling. Together, these findings highlight a pivotal role for Pth4 in the endocrine and local regulation of mineral metabolism and skeletal integrity, expanding our understanding of PTH family functions in vertebrate physiology.

摘要

甲状旁腺激素4(Pth4)是PTH家族中一个进化上保守的成员,在下丘脑神经元中表达,在真兽类哺乳动物中缺失。为了阐明其在矿物质稳态和骨骼发育中的作用,利用CRISPR/Cas9技术构建了pth4基因敲除(pth4)斑马鱼品系,并对六个关键组织:脑、肾、肠、鳃、鳞片和骨骼进行了转录组分析。所得结果表明,Pth4的缺失导致钙和磷稳态明显紊乱、骨骼畸形以及广泛的组织特异性转录改变。值得注意的是,矿物质调节基因如fgf23、phex和slc34a1a的失调在肾脏中尤为明显,提示FGF23-Klotho轴被破坏。同时,骨骼和鳞片中细胞外基质基因(col1a1a、col10a1a、col11a1)和基质重塑酶(mmp9、mmp13a、mmp2)的差异表达表明骨骼重塑受损。总之,这些发现突出了Pth4在矿物质代谢和骨骼完整性的内分泌及局部调节中的关键作用,扩展了我们对PTH家族在脊椎动物生理学中功能的理解。

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