Griesen Daniel, Su Dan, Bérczi Alajos, Asard Han
Department of Biochemistry, University of Nebraska, Lincoln, Nebraska 68588, USA.
Plant Physiol. 2004 Feb;134(2):726-34. doi: 10.1104/pp.103.032359. Epub 2004 Jan 15.
As a free radical scavenger, and cofactor, ascorbate (ASC) is a key player in the regulation of cellular redox processes. It is involved in responses to biotic and abiotic stresses and in the control of enzyme activities and metabolic reactions. Cytochromes (Cyts) b561 catalyze ASC-driven trans-membrane electron transport and contribute to ASC-mediated redox reactions in subcellular compartments. Putative Cyts b561 have been identified in Arabidopsis (ecotype Columbia) on the basis of sequence similarity to their mammalian counterparts. However, little is known about the function or subcellular localization of this unique class of membrane proteins. We have expressed one of the putative Arabidopsis Cyt b561 genes (CYBASC1) in yeast and we demonstrate that this protein encodes an ASC-reducible b-type Cyt with absorbance characteristics similar to that of other members of this family. Several lines of independent evidence demonstrate that CYBASC1 is localized at the plant tonoplast (TO). Isoform-specific antibodies against CYBASC1 indicate that this protein cosediments with the TO marker on sucrose gradients. Moreover, CYBASC1 is strongly enriched in TO-enriched membrane fractions, and TO fractions contain an ASC-reducible b-type Cyt with alpha-band absorbance maximum near 561 nm. The TO ASC-reducible Cyt has a high specific activity, suggesting that it is a major constituent of this membrane. These results provide evidence for the presence of trans-membrane redox components in this membrane type, and they suggest the coupling of cytoplasmic and vacuolar metabolic reactions through ASC-mediated redox activity.
作为一种自由基清除剂和辅因子,抗坏血酸(ASC)是细胞氧化还原过程调控中的关键参与者。它参与生物和非生物胁迫反应以及酶活性和代谢反应的控制。细胞色素(Cyts)b561催化由ASC驱动的跨膜电子传递,并有助于亚细胞区室中ASC介导的氧化还原反应。基于与哺乳动物对应物的序列相似性,已在拟南芥(生态型哥伦比亚)中鉴定出推定的Cyts b561。然而,对于这类独特的膜蛋白的功能或亚细胞定位知之甚少。我们已在酵母中表达了一种推定的拟南芥Cyt b561基因(CYBASC1),并且我们证明该蛋白编码一种可被ASC还原的b型细胞色素,其吸收特性与该家族的其他成员相似。几条独立的证据表明CYBASC1定位于植物液泡膜(TO)。针对CYBASC1的亚型特异性抗体表明该蛋白在蔗糖梯度上与TO标记物共沉降。此外,CYBASC1在富含TO的膜组分中强烈富集,并且TO组分含有一种可被ASC还原的b型细胞色素,其α带吸收最大值接近561nm。TO中可被ASC还原的细胞色素具有高比活性,表明它是该膜的主要成分。这些结果为这种膜类型中存在跨膜氧化还原成分提供了证据,并且它们表明通过ASC介导的氧化还原活性实现细胞质和液泡代谢反应的偶联。