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代谢程序的表观遗传失调介导脂肪肉瘤细胞可塑性。

Epigenetic dysregulation of metabolic programs mediates liposarcoma cell plasticity.

作者信息

Pimenta Erica M, Garza Amanda E, Camp Sabrina Y, Park Jihye, Hoffman Samantha E, Valderrábano Laura, Fu Jingxin, Bi Kevin, Karam Julie, Titchen Breanna M, Khandekar Melin J, Shannon Erin, Kang Yun Jee, Nag Anwesha, Thorner Aaron R, Raut Chandrajit P, Hornick Jason L, Merriam Priscilla, Solimini Nicole L, George Suzanne, Demetri George D, Van Allen Eliezer M

机构信息

Department of Medical Oncology, Dana-Farber Cancer Institute, Boston, MA 02115, USA.

Broad Institute of Harvard and MIT, Cambridge, MA 02142, USA.

出版信息

bioRxiv. 2025 Jan 24:2025.01.20.633920. doi: 10.1101/2025.01.20.633920.

Abstract

Sarcomas are rare connective tissue cancers thought to arise from aberrant mesenchymal stem cell (MSC) differentiation. Liposarcoma (LPS) holds valuable insights into dysfunctional differentiation given its well- and dedifferentiated histologic subtypes (WDLPS, DDLPS). Despite well-established differences in histology and clinical behavior, the molecular pathways underlying each subtype are poorly understood. Here, we performed single-nucleus multiome sequencing and spatial profiling on carefully curated human LPS samples and found defects in adipocyte-specific differentiation within LPS. Loss of insulin-like growth factor 1 (IGF1) and gain of cellular programs related to early mesenchymal development and glucagon-like peptide-1 (GLP-1)-induced insulin secretion are primary features of DDLPS. IGF1 loss was associated with worse overall survival in LPS patients. Through stimulation of the IGF1 pathway, we identified that DDLPS cells are deficient in the adipose-specific PPARG isoform 2 (PPARG2). Defects in IGF1/PPARG2 signaling in DDLPS led to a block in differentiation that could not be fully overcome with the addition of exogenous IGF1 or the pro-adipogenic agonists to PPARG and GLP-1. However, we noted upregulation of the IGF1 receptor (IGF1R) in the setting of IGF1 deficiency, which promoted sensitivity to an IGF1R-targeted antibody-drug conjugate that may serve as a novel therapeutic strategy in LPS. In summary, lineage-specific defects in adipogenesis drive dedifferentiation in LPS and may translate into selective therapeutic targeting in this disease.

摘要

肉瘤是罕见的结缔组织癌症,被认为起源于间充质干细胞(MSC)的异常分化。脂肪肉瘤(LPS)因其良好分化和去分化的组织学亚型(WDLPS、DDLPS),为功能失调的分化提供了有价值的见解。尽管在组织学和临床行为方面存在已明确的差异,但每种亚型背后的分子途径仍知之甚少。在这里,我们对精心挑选的人类LPS样本进行了单核多组学测序和空间分析,发现LPS中存在脂肪细胞特异性分化缺陷。胰岛素样生长因子1(IGF1)的缺失以及与早期间充质发育和胰高血糖素样肽-1(GLP-1)诱导的胰岛素分泌相关的细胞程序的增加是去分化脂肪肉瘤(DDLPS)的主要特征。IGF1的缺失与LPS患者较差的总生存期相关。通过刺激IGF1途径,我们发现DDLPS细胞缺乏脂肪特异性的过氧化物酶体增殖物激活受体γ2(PPARG2)亚型。DDLPS中IGF1/PPARG2信号通路的缺陷导致分化受阻,添加外源性IGF1或PPARG和GLP-1的促脂肪生成激动剂无法完全克服这一障碍。然而,我们注意到在IGF1缺乏的情况下IGF1受体(IGF1R)上调,这促进了对靶向IGF1R的抗体药物偶联物的敏感性,这可能是LPS的一种新型治疗策略。总之,脂肪生成中的谱系特异性缺陷驱动了LPS的去分化,并可能转化为该疾病的选择性治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9137/11785083/6eec0df39ba1/nihpp-2025.01.20.633920v1-f0001.jpg

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