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1
Quantifying Heterogeneity of Individual Organelles in Mixed Populations via Mass Cytometry.通过质谱细胞术定量混合群体中个体细胞器的异质性。
Anal Chem. 2018 Nov 20;90(22):13315-13321. doi: 10.1021/acs.analchem.8b02790. Epub 2018 Nov 5.
2
The Satellite Cell Niche Regulates the Balance between Myoblast Differentiation and Self-Renewal via p53.卫星细胞龛通过 p53 调节成肌细胞分化和自我更新之间的平衡。
Stem Cell Reports. 2018 Mar 13;10(3):970-983. doi: 10.1016/j.stemcr.2018.01.007. Epub 2018 Feb 8.
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Function of the myogenic regulatory factors Myf5, MyoD, Myogenin and MRF4 in skeletal muscle, satellite cells and regenerative myogenesis.成肌调节因子 Myf5、MyoD、Myogenin 和 MRF4 在骨骼肌、卫星细胞和再生肌发生中的功能。
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High-resolution myogenic lineage mapping by single-cell mass cytometry.通过单细胞质谱流式细胞术进行高分辨率肌源性谱系图谱分析。
Nat Cell Biol. 2017 May;19(5):558-567. doi: 10.1038/ncb3507. Epub 2017 Apr 17.
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Ulk1-mediated autophagy plays an essential role in mitochondrial remodeling and functional regeneration of skeletal muscle.Ulk1介导的自噬在骨骼肌的线粒体重塑和功能再生中起重要作用。
Am J Physiol Cell Physiol. 2017 Jun 1;312(6):C724-C732. doi: 10.1152/ajpcell.00348.2016. Epub 2017 Mar 29.
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Autophagy maintains stemness by preventing senescence.自噬通过防止衰老来维持干细胞特性。
Nature. 2016 Jan 7;529(7584):37-42. doi: 10.1038/nature16187.
7
Mitophagy is required for mitochondrial biogenesis and myogenic differentiation of C2C12 myoblasts.线粒体自噬是C2C12成肌细胞线粒体生物合成和肌源性分化所必需的。
Autophagy. 2016;12(2):369-80. doi: 10.1080/15548627.2015.1115172.
8
Evaluating the efficiency of isotope transmission for improved panel design and a comparison of the detection sensitivities of mass cytometer instruments.评估同位素传输效率以改进面板设计并比较质谱流式细胞仪的检测灵敏度。
Cytometry A. 2015 Apr;87(4):357-68. doi: 10.1002/cyto.a.22648. Epub 2015 Feb 20.
9
Single-cell trajectory detection uncovers progression and regulatory coordination in human B cell development.单细胞轨迹检测揭示了人类 B 细胞发育中的进展和调控协调。
Cell. 2014 Apr 24;157(3):714-25. doi: 10.1016/j.cell.2014.04.005.
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Building muscle: molecular regulation of myogenesis.肌肉生长:成肌分化的分子调控。
Cold Spring Harb Perspect Biol. 2012 Feb 1;4(2):a008342. doi: 10.1101/cshperspect.a008342.

非特异性结合校正在自噬和肌细胞分化的单细胞质量细胞分析中的应用。

Nonspecific Binding Correction for Single-Cell Mass Cytometric Analysis of Autophagy and Myoblast Differentiation.

机构信息

Department of Chemistry, University of Minnesota, Minneapolis, Minnesota 55455, United States.

出版信息

Anal Chem. 2021 Jan 26;93(3):1401-1408. doi: 10.1021/acs.analchem.0c03211. Epub 2020 Dec 22.

DOI:10.1021/acs.analchem.0c03211
PMID:33348978
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9487344/
Abstract

Satellite cells provide regenerative capacity to the skeletal muscle after injury. In this process, termed myogenesis, satellite cells get activated, proliferate, and differentiate. Myogenesis is recapitulated in the tissue culture of myoblasts that differentiate by fusion and then by the formation of myotubes. Autophagy plays an important role in myogenesis, but the asynchronous and unique trajectory of differentiation of each myoblast along the myogenic lineage complicates teasing apart at what stages of differentiation autophagy plays a critical role. In this report, we describe a mass cytometric, multidimensional, individual cell analysis of differentiating myoblasts that characterizes autophagy flux (i.e., autophagy rate) at separate myogenesis stages. Because mass cytometry uses a set of lanthanide-tagged antibodies, each being specific for a desired molecular target, quantification of each molecular target could be exaggerated by nonspecific binding of its respective antibody to other nontarget cellular regions. In this report, we used lanthanide-tagged isotypes, which allowed for correction for nonspecific binding at the single-cell level. Using this approach, myoblasts were phenotypically identified by their position in the myogenic lineage, simultaneously with the quantification of autophagic flux in each identified subset. We found that generally autophagy flux is upregulated specifically during myoblast fusion and declines in myotubes. We also observed that mitophagy (i.e., selective autophagic degradation of mitochondria) is also active after myotube formation. The ability to track different types of autophagy is another feature of this methodology, which could be key to expand the current understanding of autophagy regulation in regenerating the skeletal muscle.

摘要

卫星细胞为损伤后的骨骼肌提供再生能力。在这个过程中,称为成肌发生,卫星细胞被激活、增殖和分化。成肌发生在成肌细胞的组织培养中得到再现,这些细胞通过融合然后形成肌管而分化。自噬在成肌发生中起着重要作用,但每个成肌细胞沿着成肌谱系的分化的异步和独特轨迹使得难以确定自噬在分化的哪个阶段起着关键作用。在本报告中,我们描述了一种用于分化成肌细胞的质谱流式细胞术、多维、单细胞分析,该分析描述了成肌发生不同阶段的自噬通量(即自噬率)。由于质谱流式细胞术使用一组镧系元素标记的抗体,每个抗体都针对特定的分子靶标,因此可以通过其相应抗体对其他非靶标细胞区域的非特异性结合来夸大每个分子靶标的定量。在本报告中,我们使用了镧系元素标记的同种型,这允许在单细胞水平上对非特异性结合进行校正。使用这种方法,成肌细胞通过其在成肌谱系中的位置被表型鉴定,同时对每个鉴定的亚群中的自噬通量进行定量。我们发现,自噬通量通常在成肌细胞融合期间特异性地上调,并在肌管中下降。我们还观察到,线粒体自噬(即线粒体的选择性自噬降解)也在肌管形成后活跃。跟踪不同类型的自噬的能力是该方法的另一个特点,这可能是扩展当前对骨骼肌再生中自噬调节的理解的关键。