Department of Biological Sciences, Center for Reproductive Biology, University of Idaho, Life Sciences South Room 252, P.O. Box 443051, Moscow, ID 83844-3051, USA.
Curr Genet. 2012 Jun;58(3):149-63. doi: 10.1007/s00294-012-0373-7. Epub 2012 Mar 30.
The molecular chaperone Hsp90 cooperates with multiple cochaperone proteins as it promotes the folding and activation of diverse client proteins. Some cochaperones regulate the ATPase activity of Hsp90, while others appear to promote Hsp90 interaction with specific types of client proteins. Through its interaction with the adenylate cyclase Cyr1, the Sgt1 cochaperone modulates the activity of the cAMP pathway in Saccharomyces cerevisiae. A specific mutation in yeast Hsp90, hsc82-W296A, or a mutation in Sgt1, sgt1-K360E, resulted in altered transcription patterns genetically linked to the cAMP pathway. Hsp90 interacted with Cyr1 in vivo and the hsc82-W296A mutation resulted in reduced accumulation of Cyr1. Hsp90-Sgt1 interaction was altered by either the hsc82-W296A or sgt1-K360E mutation, suggesting defective Hsp90-Sgt1 cooperation leads to reduced Cyr1 activity. Microarray analysis of hsc82-W296A cells indicated that over 80 % of all transcriptional changes in this strain may be attributed to altered cAMP signaling. This suggests that a majority of the cellular defects observed in hsc82-W296A cells are due to altered interaction with one specific essential cochaperone, Sgt1 and one essential client, Cyr1. Together our results indicate that specific interaction of Hsp90 and Sgt1 with Cyr1 plays a key role in regulating gene expression, including genes involved in polarized morphogenesis.
分子伴侣 Hsp90 在促进多种客户蛋白的折叠和激活时,与多种共伴侣蛋白合作。一些共伴侣蛋白调节 Hsp90 的 ATP 酶活性,而另一些则似乎促进 Hsp90 与特定类型的客户蛋白相互作用。通过与腺苷酸环化酶 Cyr1 的相互作用, Sgt1 共伴侣蛋白调节酿酒酵母中 cAMP 途径的活性。酵母 Hsp90 中的特定突变,hsc82-W296A,或 Sgt1 中的突变,sgt1-K360E,导致与 cAMP 途径遗传相关的转录模式发生改变。Hsp90 在体内与 Cyr1 相互作用,并且 hsc82-W296A 突变导致 Cyr1 的积累减少。Hsp90-Sgt1 相互作用被 hsc82-W296A 或 sgt1-K360E 突变改变,表明 Hsp90-Sgt1 合作的缺陷导致 Cyr1 活性降低。hsc82-W296A 细胞的微阵列分析表明,该菌株中超过 80%的所有转录变化可能归因于 cAMP 信号的改变。这表明 hsc82-W296A 细胞中观察到的大多数细胞缺陷是由于与一个特定的必需共伴侣蛋白 Sgt1 和一个必需的客户蛋白 Cyr1 的相互作用改变所致。我们的结果表明,Hsp90 和 Sgt1 与 Cyr1 的特定相互作用在调节基因表达中起着关键作用,包括参与极化形态发生的基因。