School of Mathematical and Natural Sciences, New College of Interdisciplinary Arts and Sciences, Arizona State University, 4701 W Thunderbird Rd, Glendale, AZ, MC235285306, USA.
Arch Microbiol. 2022 Jul 24;204(8):519. doi: 10.1007/s00203-022-03095-2.
After a single extracellular 100 mM calcium pulse (final concentration), wild type S. cerevisiae exhibits a sharp peak in cytosolic calcium. The concentration drops rapidly in these cells as the calcium is sequestered away in the endoplasmic reticulum, Golgi, and vacuoles leaving resting cytosolic levels higher than their original state, followed by changes in gene expression. In cells lacking calmodulin kinase 2 (Cmk2p), a secondary rise in cytosolic calcium concentration is seen after extracellular calcium increases and the cytosolic calcium is subsequently sequestered. Utilizing double deletions, we demonstrate that Cmk2p is modulating the activity of Rch1p, a known inhibitor of Channel X which is a yeast plasma membrane channel through which calcium ions are transported after an extracellular calcium pulse. We hypothesize that Cmk2p is acting as a regulator of Channel X by activating Rch1p and without CMK2, Channel X inactivation does not occur fully.
在单个细胞外 100mM 钙离子脉冲(最终浓度)后,野生型酿酒酵母表现出细胞质钙离子的急剧峰值。由于钙离子被内质网、高尔基体和液泡隔离,这些细胞中的钙离子浓度迅速下降,使细胞质中的静息水平高于其原始状态,随后基因表达发生变化。在缺乏钙调蛋白激酶 2(Cmk2p)的细胞中,细胞外钙离子增加后会观察到细胞质钙离子浓度的二次上升,随后细胞质钙离子被隔离。利用双缺失,我们证明 Cmk2p 正在调节 Rch1p 的活性,Rch1p 是已知的 Channel X 的抑制剂,Channel X 是酵母质膜通道,钙离子在细胞外钙离子脉冲后通过该通道运输。我们假设 Cmk2p 通过激活 Rch1p 作为 Channel X 的调节剂,并且没有 CMK2,Channel X 的失活不会完全发生。