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Orphanet Journal of Rare Diseases· 2026Q1

Multiple simetrik lipomatozda gen ifadesi doğrulaması ile ön metabolomik ve genomik keşif

Preliminary metabolomic and genomic exploration with gene-expression validation in multiple symmetric lipomatosis

Shuai Zhang, Bo Hu, Haoxinai Wang, Tengxiao Ma ve diğerleri

Kısa özet

7 multiple simetrik lipomatoz (MSL) hastasında yapılan ön bir çalışma, lezyonlu ve normal adipoz doku arasında 42 farklı bollukta metabolit (örn. artmış 5-hidroksitriptofan, azalmış treonin/aspartik asit) ve 9 farklı ifade edilen gen (örn. artmış CD200, MYF5, IL4I1; azalmış UCP-1, CIDEA) belirledi.

Yapay zekâ ile başlık ve abstract'tan üretildi; tam metin okunmaz.

Ana noktalar

  • MSL adipoz dokusunda artmış 5-hidroksitriptofan ve azalmış treonin/aspartik asit dahil 42 farklı bollukta metabolit belirlendi.
  • Farklı bolluklardaki metabolitler, gliserofosfolipid metabolizması, otofaji ve GPI jangı biyosentezi ile ilgili yollarda zenginleşti.
  • MSL dokularında CD200, MYF5, IL4I1, Cbl-b ve LIPE'nin arttığı, UCP-1, CIDEA, MFN2'nin azaldığı 9 farklı ifade edilen gen belirlendi.
  • mGWAS yoluyla IL4I1 önceliklendirildi ve gen ifadesi örüntüleri adipoz fenotip, lipid metabolizması, insülin sinyalizasyonu ve mitokondriyal fonksiyondaki farklılıkları düşündürmektedir.

Yapay zekâ ile başlık ve abstract'tan üretildi; tam metin okunmaz.

Özet (abstract)

Abstract Background Multiple symmetric lipomatosis (MSL) is a rare disorder of fat metabolism with an incompletely understood pathogenesis and limited treatment options. This preliminary study explored metabolite differences and genomic characteristics in paired lesional and adjacent adipose tissues. Metabolome-genome association analysis and quantitative PCR (qPCR) follow-up were used to generate candidate molecular hypotheses. Methods Seven patients with multiple symmetric lipomatosis diagnosed from January 2022 to November 2023 were selected, and diseased tissues and adjacent normal adipose tissues were collected. Seven pairs of samples were subjected to nontargeted metabolomic analysis via ultraperformance liquid chromatography–high resolution mass spectrometry (UPLC–HRMS) to detect metabolites, and 5 pairs of samples were subjected to whole-genome sequencing to detect gene mutations. Finally, metabolomics‒genome association analysis was used to analyze the differentially expressed genes, and three pairs of samples were selected for validation via real-time quantitative PCR. Results A total of 977 metabolites, including 5-hydroxytryptophan (upregulated), threonine (downregulated) and aspartic acid (downregulated), were detected, and 42 differentially abundant metabolites (18 upregulated and 24 downregulated) were identified. The differentially abundant metabolites were enriched mainly in pathways related to glycerophospholipid metabolism, autophagy, and biosynthesis of glycosylphosphatidylinositol anchors; 2,915 candidate SNP sites were identified, and a total of 1,804 mutated genes were annotated. A total of 9 differentially expressed genes were identified, and compared with those in normal adipose tissues, CD200, MYF5, p107, IL4I1, and Cbl-b were upregulated in the lesion tissues of multifocal symmetric lipomatosis patients, and LIPE was significantly upregulated. The mRNA expression levels of UCP-1, CIDEA, and MFN2 were significantly decreased. Conclusions This preliminary analysis prioritized IL4I1 through mGWAS and identified gene-expression patterns consistent with differences in adipose phenotype, lipid metabolism, insulin signaling and mitochondrial function. Because the metabolomic, genomic and qPCR analyses included seven, five and three paired samples, respectively, these findings are hypothesis-generating and require independent validation.

Yazarların özeti; kaynağından alınmıştır. Orphanet Journal of Rare Diseases, 2026 · DOI ↗

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Alan: Biyokimya (Biyokimya, Genetik ve Moleküler Biyoloji)

BiochemistryBiochemistry, Genetics and Molecular Biology