Abramova N, Sertil O, Mehta S, Lowry C V
Center for Immunology and Microbial Disease, Albany Medical College, New York 12208, USA.
J Bacteriol. 2001 May;183(9):2881-7. doi: 10.1128/JB.183.9.2881-2887.2001.
The DAN/TIR genes encode nine cell wall mannoproteins in Saccharomyces cerevisiae which are expressed during anaerobiosis (DAN1, DAN2, DAN3, DAN4, TIR1, TIR2, TIR3, TIR4, and TIP1). Most are expressed within an hour of an anaerobic shift, but DAN2 and DAN3 are expressed after about 3 h. At the same time, CWP1 and CWP2, the genes encoding the major mannoproteins, are down-regulated, suggesting that there is a programmed remodeling of the cell wall in which Cwp1 and Cwp2 are replaced by nine anaerobic counterparts. TIP1, TIR1, TIR2, and TIR4 are also induced during cold shock. Correspondingly, CWP1 is down-regulated during cold shock. As reported elsewhere, Mox4 is a heme-inhibited activator, and Mot3 is a heme-induced repressor of the DAN/TIR genes (but not of TIP1). We show that CWP2 (but not CWP1) is controlled by the same factors, but in reverse fashion-primarily by Mot3 (which can function as either an activator or repressor) but also by Mox4, accounting for the reciprocal regulation of the two groups of genes. Disruptions of TIR1, TIR3, or TIR4 prevent anaerobic growth, indicating that each protein is essential for anaerobic adaptation. The Dan/Tir and Cwp proteins are homologous, with the greatest similarities shown within three subgroups: the Dan proteins, the Tip and Tir proteins, and, more distantly, the Cwp proteins. The clustering of homology corresponds to differences in expression: the Tip and Tir proteins are expressed during hypoxia and cold shock, the Dan proteins are more stringently repressed by oxygen and insensitive to cold shock, and the Cwp proteins are oppositely regulated by oxygen and temperature.
DAN/TIR基因在酿酒酵母中编码九种细胞壁甘露糖蛋白,这些蛋白在无氧条件下表达(DAN1、DAN2、DAN3、DAN4、TIR1、TIR2、TIR3、TIR4和TIP1)。大多数蛋白在无氧转变后一小时内表达,但DAN2和DAN3在约3小时后表达。同时,编码主要甘露糖蛋白的CWP1和CWP2基因被下调,这表明存在细胞壁的程序性重塑,其中Cwp1和Cwp2被九种无氧对应物取代。TIP1、TIR1、TIR2和TIR4在冷休克期间也被诱导。相应地,CWP1在冷休克期间被下调。如其他地方所报道,Mox4是一种血红素抑制激活剂,Mot3是DAN/TIR基因(但不是TIP1)的血红素诱导阻遏物。我们表明CWP2(但不是CWP1)受相同因素控制,但方式相反——主要受Mot3(其可作为激活剂或阻遏物发挥作用)控制,也受Mox4控制,这解释了两组基因的相互调节。TIR1、TIR3或TIR4的破坏会阻止无氧生长,表明每种蛋白对于无氧适应都是必不可少的。Dan/Tir蛋白和Cwp蛋白是同源的,在三个亚组中显示出最大的相似性:Dan蛋白、Tip和Tir蛋白,以及更远的Cwp蛋白。同源性聚类对应于表达差异:Tip和Tir蛋白在缺氧和冷休克期间表达,Dan蛋白更严格地被氧气抑制且对冷休克不敏感,而Cwp蛋白受氧气和温度的相反调节。