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肿瘤细胞来源的细胞外囊泡作为骨骼肌能量危机的触发因素。

Extracellular vesicles derived from tumour cells as a trigger of energy crisis in the skeletal muscle.

机构信息

Department of Clinical and Biological Sciences, University of Torino, Torino, Italy.

Department of Anatomy, Cell Biology and Physiology, Indiana University School of Medicine, Indianapolis, IN, USA.

出版信息

J Cachexia Sarcopenia Muscle. 2022 Feb;13(1):481-494. doi: 10.1002/jcsm.12844. Epub 2021 Dec 20.

Abstract

BACKGROUND

Cachexia, a syndrome frequently occurring in cancer patients, is characterized by muscle wasting, altered energy and protein metabolism and impaired myogenesis. Tumour-derived microvesicles (TMVs) containing proteins, messenger RNAs (mRNAs), and non-coding RNAs could contribute to cancer-induced muscle wasting.

METHODS

Differential ultracentrifugation was used to isolate TMVs from the conditioned medium of Lewis lung carcinoma and C26 colon carcinoma cell cultures. TMVs were added to the culture medium of C2C12 myoblasts and myotubes for 24-48-72 h, and the effects on protein and energy metabolism were assessed. TMVs were also isolated from the blood of C26-bearing mice. MicroRNA (miR) profile of TMVs was obtained by RNA-seq and validated by digital drop PCR. Selected miRs were overexpressed in C2C12 myoblasts to assess the effects on myogenic differentiation.

RESULTS

Differentiation was delayed in C2C12 myoblasts exposed to TMVs, according to reduced expression of myosin heavy chain (MyHC; about 62% of controls at Day 4) and myogenin (about 68% of controls at Day 4). As for myotubes, TMVs did not affect the expression of MyHC, while revealed able to modulate mitochondria and oxidative metabolism. Indeed, reduced mRNA levels of PGC-1α (C = 1 ± 0.2, TMV = 0.57 ± 0.06, normalized fold change, P < 0.05) and Cytochrome C (C = 1 ± 0.2, TMV = 0.65 ± 0.04, normalized fold change, P < 0.05), associated with increased BNIP3 expression (C = 1 ± 0.1, TMV = 1.29 ± 0.2, normalized fold change, P < 0.05), were observed, suggesting reduced mitochondrial biogenesis/amount and enhanced mitophagy. These changes were paralleled by decreased oxygen consumption (C = 686.9 ± 44 pmol/min, TMV = 552.25 ± 24 pmol/min, P < 0.01) and increased lactate levels (C = 0.0063 ± 0.00045 nmol/μL, TMV = 0.0094 ± 0.00087 nmol/μL, P < 0.01). A total of 118 miRs were found in MVs derived from the plasma of the C26 hosts; however, only three of them were down-regulated (RNA-seq): miR-181a-5p (-1.46 fold change), miR-375-3p (-2.52 fold change), and miR-455-5p (-3.87 fold change). No correlation could be observed among miRs in the MVs obtained from the blood of the C26 host and those released by C26 cells in the culture medium. Overexpression of miR-148a-3p and miR-181a-5p in C2C12 myoblasts revealed the ability to impinge on the mRNA levels of Myf5, Myog, and MyHC (Myh4 and Myh7).

CONCLUSIONS

These results show that in C2C12 cultures, TMVs are able to affect both differentiation and the mitochondrial system. Such effects could be related to TMV-contained miRs.

摘要

背景

恶病质是一种常发生于癌症患者的综合征,其特征为肌肉消耗、能量和蛋白质代谢改变以及成肌生成受损。肿瘤来源的微泡(TMVs)包含蛋白质、信使 RNA(mRNA)和非编码 RNA,可能导致癌症引起的肌肉消耗。

方法

采用差速超速离心法从 Lewis 肺癌和 C26 结肠癌细胞培养物的条件培养基中分离 TMVs。TMVs 被添加到 C2C12 成肌细胞和肌管的培养基中 24-48-72 小时,评估其对蛋白质和能量代谢的影响。TMVs 也从 C26 荷瘤小鼠的血液中分离出来。通过 RNA-seq 获得 TMVs 的 microRNA (miR) 图谱,并通过数字降落 PCR 进行验证。选择的 miR 在 C2C12 成肌细胞中过表达,以评估对成肌分化的影响。

结果

暴露于 TMVs 的 C2C12 成肌细胞的分化被延迟,根据肌球蛋白重链(MyHC;第 4 天约为对照组的 62%)和肌生成素(第 4 天约为对照组的 68%)的表达减少。对于肌管,TMVs 不影响 MyHC 的表达,而能够调节线粒体和氧化代谢。事实上,PGC-1α 的 mRNA 水平降低(C=1±0.2,TMV=0.57±0.06,归一化倍数变化,P<0.05)和细胞色素 C(C=1±0.2,TMV=0.65±0.04,归一化倍数变化,P<0.05),与 BNIP3 表达增加(C=1±0.1,TMV=1.29±0.2,归一化倍数变化,P<0.05)相关,表明线粒体生物发生/数量减少和增强的自噬。这些变化伴随着氧消耗减少(C=686.9±44 pmol/min,TMV=552.25±24 pmol/min,P<0.01)和乳酸水平升高(C=0.0063±0.00045 nmol/μL,TMV=0.0094±0.00087 nmol/μL,P<0.01)。从 C26 宿主血浆中分离的 MV 中发现了 118 个 miRs;然而,只有三个被下调(RNA-seq):miR-181a-5p(-1.46 倍变化),miR-375-3p(-2.52 倍变化)和 miR-455-5p(-3.87 倍变化)。从 C26 宿主血液中获得的 MV 中的 miRs 与在培养基中由 C26 细胞释放的 miRs 之间没有相关性。miR-148a-3p 和 miR-181a-5p 的过表达在 C2C12 成肌细胞中显示出影响 Myf5、Myog 和 MyHC(Myh4 和 Myh7)的 mRNA 水平的能力。

结论

这些结果表明,在 C2C12 培养物中,TMVs 能够影响分化和线粒体系统。这些影响可能与 TMV 中包含的 miRs 有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a596/8818645/191f878635d2/JCSM-13-481-g004.jpg

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