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PMID: 41750164 已发表 · epublish 英语

Potential Biological Processes Related to Brain SLC13A5 Across the Lifespan: Weighted Gene Co-Expression Network Analysis from Large Human Transcriptomic Data.

Brain sciences ·第 16 卷 ·第 2 期 ·2026-01-30

Ferreira BK, Schuck PF, Ferreira GC, Freitas HR

摘要

Background/Objectives:SLC13A5 encodes a sodium-citrate cotransporter implicated in early-onset epileptic encephalopathy and metabolic brain dysfunction, yet its developmental regulation and molecular context in the human brain remain incompletely defined. Methods: Leveraging human developmental transcriptomes from the Evo-Devo resource, we delineated tissue trajectories and network context for SLC13A5 across the fetal-postnatal life. Results: In the cerebrum, SLC13A5 expression rises from late fetal stages to peak in the first postnatal year and then declines into adulthood, while cerebellar levels increase across the lifespan; liver shows a fetal decrease followed by sustained postnatal upregulation. A transcriptome-wide scan identified extensive positive and negative associations with SLC13A5, and a signed weighted gene co-expression network analysis (WGCNA) built on biweight midcorrelation placed SLC13A5 in a large module. The module eigengene tracked brain maturation (Spearman rho = 0.802, p = 8.62 × 10-6) and closely matched SLC13A5 abundance (rho = 0.884, p = 2.73 × 10-6), with a significant partial association after adjusting for developmental rank (rho = 0.672, p = 6.17 × 10-4). Functional enrichment converged on oxidative phosphorylation and mitochondria. A force-directed subnetwork of the top intramodular members (|bicor| > 0.6) positioned SLC13A5 adjacent to a densely connected nucleus including CYP46A1, ITM2B, NRGN, GABRD, FBXO2, CHCHD10, CYSTM1, and MFSD4A. Conclusions: Together, these results define a developmentally tuned, mitochondria-centered program that co-varies with SLC13A5 in the human brain across the lifespan. It may provide insights to interrogate age-dependent phenotypes and therapeutic avenues for disorders involving citrate metabolism.

关键词
Na(+)/citrate cotransporter SLC13A5 cerebrum developmental and epileptic encephalopathy
文献信息
期刊
Brain sciences
期刊简称
Brain Sci
ISSN
2076-3425
发表日期
2026-01-30
语言
英语
国家/地区
Switzerland
NLM ID
101598646
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