Chattopadhyay S, Muzaffar N E, Sherman F, Pearce D A
Center for Aging and Developmental Biology, University of Rochester Medical School, Rochester, New York 14642, USA.
J Bacteriol. 2000 Nov;182(22):6418-23. doi: 10.1128/JB.182.22.6418-6423.2000.
The BTN1 gene product of the yeast Saccharomyces cerevisiae is 39% identical and 59% similar to human CLN3, which is associated with the neurodegenerative disorder Batten disease. Furthermore, btn1-Delta strains have an elevated activity of the plasma membrane H(+)-ATPase due to an abnormally high vacuolar acidity during the early phase of growth. Previously, DNA microarray analysis revealed that btn1-Delta strains compensate for the altered plasma membrane H(+)-ATPase activity and vacuolar pH by elevating the expression of the two genes HSP30 and BTN2. We now show that deletion of either HSP30 or BTN2 in either BTN1(+) or btn1-Delta strains does not alter vacuolar pH but does lead to an increased activity of the vacuolar H(+)-ATPase. Deletion of BTN1, BTN2, or HSP30 does not alter cytosolic pH but diminishes pH buffering capacity and causes poor growth at low pH in a medium containing sorbic acid, a condition known to result in disturbed intracellular pH homeostasis. Btn2p was localized to the cytosol, suggesting a role in mediating pH homeostasis between the vacuole and plasma membrane H(+)-ATPase. Increased expression of HSP30 and BTN2 in btn1-Delta strains and diminished growth of btn1-Delta, hsp30-Delta, and btn2-Delta strains at low pH reinforce our view that altered pH homeostasis is the underlying cause of Batten disease.
酿酒酵母的BTN1基因产物与人类CLN3有39%的同一性和59%的相似性,而人类CLN3与神经退行性疾病巴滕病相关。此外,btn1缺失菌株在生长早期由于液泡酸度异常高,导致质膜H(+) -ATP酶活性升高。此前,DNA微阵列分析表明,btn1缺失菌株通过提高HSP30和BTN2这两个基因的表达来补偿质膜H(+) -ATP酶活性和液泡pH值的改变。我们现在表明,在BTN1(+)或btn1缺失菌株中删除HSP30或BTN2中的任何一个都不会改变液泡pH值,但确实会导致液泡H(+) -ATP酶活性增加。删除BTN1、BTN2或HSP30不会改变细胞质pH值,但会降低pH缓冲能力,并在含有山梨酸的培养基中低pH条件下导致生长不良,已知这种条件会导致细胞内pH稳态紊乱。Btn2p定位于细胞质,表明其在介导液泡和质膜H(+) -ATP酶之间的pH稳态中起作用。btn1缺失菌株中HSP30和BTN2表达增加,以及btn1缺失、hsp30缺失和btn2缺失菌株在低pH条件下生长减弱,强化了我们的观点,即pH稳态改变是巴滕病的根本原因。