Department of Psychiatry and Behavioral Neurobiology, University of Alabama at Birmingham, Sparks Center 865, 1720 7th Avenue South, Birmingham, AL 35294, USA.
J Neurosci Methods. 2013 Apr 15;214(2):156-62. doi: 10.1016/j.jneumeth.2013.01.010. Epub 2013 Jan 30.
Cytochrome oxidase (COX) is the enzyme that constitutes the last step of the mitochondrial electron transport chain for the production of ATP. Measurement of COX activity can be achieved by histochemistry, thus providing information about the metabolic status of the brain. Brain regions with high metabolism will present high COX activity in histochemistry assays and vice versa. Using histochemistry versus biochemistry to assess COX activity presents the advantage of providing a map of the differences in metabolism in discrete brain regions. Moreover, COX histochemistry allows quantifying the activity of a particular brain region, by converting units of optical density into units of activity. In the present work we have devised a methodology that allows not only quantifying differences in COX activity between groups, but also quantifying the amount of COX present in brain tissue sections, by directly relating optical density (OD) measurements to cytochrome C oxidase concentration, something that traditionally is achieved by the use of western blot. For this purpose we created a set of standards of known concentration of COX that were affixed to a nitrocellulose membrane, and this membrane was incubated together with the tissue sections in which COX activity was assessed. A standard curve was created using a gradient of different concentrations of purified bovine heart cytochrome oxidase (from 2μg to 0.1μg in intervals of 0.25μg). This standard curve allowed us to detect changes in optical density as low as 5%, and relate these OD differences with known concentrations of cytochrome C oxidase.
细胞色素氧化酶(COX)是构成线粒体电子传递链最后一步的酶,用于产生 ATP。COX 活性的测量可以通过组织化学方法实现,从而提供有关大脑代谢状态的信息。代谢活跃的脑区在组织化学测定中会表现出高 COX 活性,反之亦然。与生物化学相比,使用组织化学评估 COX 活性具有提供离散脑区代谢差异图谱的优势。此外,COX 组织化学允许通过将光密度单位转换为活性单位来定量特定脑区的活性。在本工作中,我们设计了一种方法,不仅可以定量组间 COX 活性的差异,还可以通过将光密度(OD)测量值与细胞色素 C 氧化酶浓度直接相关,从而定量脑组织切片中 COX 的含量,这在传统上是通过使用western blot 来实现的。为此,我们创建了一组已知 COX 浓度的标准品,并将其固定在硝酸纤维素膜上,然后将该膜与评估 COX 活性的组织切片一起孵育。使用梯度浓度的不同浓度的纯化牛心细胞色素氧化酶(从 2μg 到 0.1μg,间隔 0.25μg)创建标准曲线。该标准曲线允许我们检测到低至 5%的光密度变化,并将这些 OD 差异与已知浓度的细胞色素 C 氧化酶相关联。