Vincent O, Townley R, Kuchin S, Carlson M
Departments of Genetics and Development and Microbiology, Molecular Biology and Biophysical Studies, Columbia University, New York, New York 10032, USA.
Genes Dev. 2001 May 1;15(9):1104-14. doi: 10.1101/gad.879301.
The Snf1/AMP-activated protein kinase family has broad roles in transcriptional, metabolic, and developmental regulation in response to stress. In Saccharomyces cerevisiae, Snf1 is required for the response to glucose limitation. Snf1 kinase complexes contain the alpha (catalytic) subunit Snf1, one of the three related beta subunits Gal83, Sip1, or Sip2, and the gamma subunit Snf4. We present evidence that the beta subunits regulate the subcellular localization of the Snf1 kinase. Green fluorescent protein fusions to Gal83, Sip1, and Sip2 show different patterns of localization to the nucleus, vacuole, and/or cytoplasm. We show that Gal83 directs Snf1 to the nucleus in a glucose-regulated manner. We further identify a novel signaling pathway that controls this nuclear localization in response to glucose phosphorylation. This pathway is distinct from the glucose signaling pathway that inhibits Snf1 kinase activity and responds not only to glucose but also to galactose and sucrose. Such independent regulation of the localization and the activity of the Snf1 kinase, combined with the distinct localization of kinases containing different beta subunits, affords versatility in regulating physiological responses.
Snf1/AMP 激活的蛋白激酶家族在应激反应中的转录、代谢和发育调控中发挥着广泛作用。在酿酒酵母中,Snf1 是应对葡萄糖限制所必需的。Snf1 激酶复合物包含 α(催化)亚基 Snf1、三个相关的 β 亚基 Gal83、Sip1 或 Sip2 之一,以及 γ 亚基 Snf4。我们提供的证据表明,β 亚基调节 Snf1 激酶的亚细胞定位。与 Gal83、Sip1 和 Sip2 融合的绿色荧光蛋白显示出不同的定位模式,定位于细胞核、液泡和/或细胞质。我们表明,Gal83 以葡萄糖调节的方式将 Snf1 导向细胞核。我们进一步鉴定出一条新的信号通路,该通路响应葡萄糖磷酸化来控制这种核定位。该通路不同于抑制 Snf1 激酶活性且不仅对葡萄糖而且对半乳糖和蔗糖都有反应的葡萄糖信号通路。Snf1 激酶定位和活性的这种独立调节,与含有不同 β 亚基的激酶的不同定位相结合,为调节生理反应提供了多样性。