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本文引用的文献

1
Significance of myoglobin as an oxygen store and oxygen transporter in the intermittently perfused human heart: a model study.肌红蛋白作为间歇性灌注人心肌中的氧储存和氧转运蛋白的意义:模型研究。
Cardiovasc Res. 2010 Jul 1;87(1):22-9. doi: 10.1093/cvr/cvq036. Epub 2010 Feb 2.
2
Diffusion in cytoplasm: effects of excluded volume due to internal membranes and cytoskeletal structures.细胞质中的扩散:内膜和细胞骨架结构引起的排阻体积效应。
Biophys J. 2009 Aug 5;97(3):758-67. doi: 10.1016/j.bpj.2009.05.036.
3
Hypoxia reprograms calcium signaling and regulates myoglobin expression.缺氧会重新编程钙信号传导并调节肌红蛋白表达。
Am J Physiol Cell Physiol. 2009 Mar;296(3):C393-402. doi: 10.1152/ajpcell.00428.2008. Epub 2008 Nov 12.
4
Blood flow and metabolic regulation in seal muscle during apnea.海豹在呼吸暂停期间肌肉中的血流与代谢调节
J Exp Biol. 2008 Oct;211(Pt 20):3323-32. doi: 10.1242/jeb.018887.
5
Interaction of fatty acid with myoglobin.脂肪酸与肌红蛋白的相互作用。
FEBS Lett. 2008 Oct 29;582(25-26):3643-9. doi: 10.1016/j.febslet.2008.09.047. Epub 2008 Oct 7.
6
Determination of myoglobin concentration in blood-perfused tissue.血液灌注组织中肌红蛋白浓度的测定。
Eur J Appl Physiol. 2008 Sep;104(1):41-8. doi: 10.1007/s00421-008-0775-x. Epub 2008 May 31.
7
A spectrophotometric method for the simultaneous determination of myoglobin and hemoglobin in extracts of human muscle.一种同时测定人体肌肉提取物中肌红蛋白和血红蛋白的分光光度法。
Acta Chem Scand. 1948;2(3):264-89. doi: 10.3891/acta.chem.scand.02-0264.
8
Running, swimming and diving modifies neuroprotecting globins in the mammalian brain.跑步、游泳和潜水会改变哺乳动物大脑中的神经保护球蛋白。
Proc Biol Sci. 2008 Apr 7;275(1636):751-8. doi: 10.1098/rspb.2007.1484.
9
Diffusion of Carbon Monoxide through Thin Layers of Hemoglobin Solution.一氧化碳通过血红蛋白溶液薄层的扩散。
Science. 1962 Nov 23;138(3543):897-8. doi: 10.1126/science.138.3543.897.
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On optima: the case of myoglobin-facilitated oxygen diffusion.论最佳状态:肌红蛋白促进氧扩散的情况。
Gene. 2007 Aug 15;398(1-2):156-61. doi: 10.1016/j.gene.2007.02.040. Epub 2007 Apr 25.

肌红蛋白的旧衣新穿:从分子结构到活细胞中的功能。

Myoglobin's old and new clothes: from molecular structure to function in living cells.

机构信息

Zentrum Physiologie, Medizinische Hochschule Hannover, 30625 Hannover, Germany.

出版信息

J Exp Biol. 2010 Aug 15;213(Pt 16):2713-25. doi: 10.1242/jeb.043075.

DOI:10.1242/jeb.043075
PMID:20675540
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2912754/
Abstract

Myoglobin, a mobile carrier of oxygen, is without a doubt an important player central to the physiological function of heart and skeletal muscle. Recently, researchers have surmounted technical challenges to measure Mb diffusion in the living cell. Their observations have stimulated a discussion about the relative contribution made by Mb-facilitated diffusion to the total oxygen flux. The calculation of the relative contribution, however, depends upon assumptions, the cell model and cell architecture, cell bioenergetics, oxygen supply and demand. The analysis suggests that important differences can be observed whether steady-state or transient conditions are considered. This article reviews the current evidence underlying the evaluation of the biophysical parameters of myoglobin-facilitated oxygen diffusion in cells, specifically the intracellular concentration of myoglobin, the intracellular diffusion coefficient of myoglobin and the intracellular myoglobin oxygen saturation. The review considers the role of myoglobin in oxygen transport in vertebrate heart and skeletal muscle, in the diving seal during apnea as well as the role of the analogous leghemoglobin of plants. The possible role of myoglobin in intracellular fatty acid transport is addressed. Finally, the recent measurements of myoglobin diffusion inside muscle cells are discussed in terms of their implications for cytoarchitecture and microviscosity in these cells and the identification of intracellular impediments to the diffusion of proteins inside cells. The recent experimental data then help to refine our understanding of Mb function and establish a basis for future investigation.

摘要

肌红蛋白是一种可移动的氧载体,无疑是心脏和骨骼肌生理功能的重要参与者。最近,研究人员已经克服了在活细胞中测量 Mb 扩散的技术挑战。他们的观察结果激发了关于 Mb 促进扩散对总氧通量的相对贡献的讨论。然而,相对贡献的计算取决于假设、细胞模型和细胞结构、细胞生物能量学、氧气供应和需求。分析表明,无论是考虑稳态还是瞬态条件,都可以观察到重要的差异。本文综述了目前评估细胞中肌红蛋白促进氧扩散的生物物理参数的证据,特别是肌红蛋白的细胞内浓度、肌红蛋白的细胞内扩散系数和细胞内肌红蛋白氧饱和度。本文还考虑了肌红蛋白在脊椎动物心脏和骨骼肌中的氧运输、潜水海豹在潜水时的作用以及植物类似的 leghemoglobin 的作用。本文还探讨了肌红蛋白在细胞内脂肪酸运输中的可能作用。最后,根据最近对肌肉细胞内肌红蛋白扩散的测量结果,讨论了它们对这些细胞的细胞结构和微观粘度的影响,以及对细胞内蛋白质扩散的识别。最近的实验数据有助于我们进一步了解 Mb 的功能,并为未来的研究奠定基础。