首页> 外文期刊>Journal of Cell Science >btn1, the Schizosaccharomyces pombe homologue of the human Batten disease gene CLN3, regulates vacuole homeostasis.
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btn1, the Schizosaccharomyces pombe homologue of the human Batten disease gene CLN3, regulates vacuole homeostasis.

机译:btn1是人巴顿病基因CLN3的粟酒裂殖酵母的同源物,它调节液泡稳态。

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摘要

We have cloned the Schizosaccharomyces pombe homologue of the human Batten disease gene, CLN3. This gene, btn1, encodes a predicted transmembrane protein that is 30% identical and 48% similar to its human counterpart. Cells deleted for btn1 were viable but had enlarged and more alkaline vacuoles. Conversely overexpression of Btn1p reduced both vacuole diameter and pH. Thus Btn1p regulates vacuole homeostasis. The vacuolar defects of btn1Delta cells were rescued by heterologous expression of CLN3, proving that Btn1p and CLN3 are functional homologues. The disease severity of Batten disease-causing mutations (G187A, E295K and V330F), when expressed in btn1 appeared to correlate with their effect on vacuolar pH, suggesting that elevated lysosomal pH contributes to the disease process. In fission yeast, both Btn1p and CLN3 trafficked to the vacuole membrane via early endocytic and pre-vacuolar compartments, and localisation of Btn1p to the vacuole membrane was dependent on the Ras GTPase Ypt7p. Importantly, vacuoles in cells deleted for both ypt7 and btn1 were larger and more alkaline than those of cells deleted for ypt7 alone, indicating that Btn1p has a functional role prior to reaching the vacuole. Consistently, btn1 and vma1, the gene encoding subunit A of the V1 portion of vATPase, showed conditional synthetic lethality, and in cells deleted for vma1 (a subunit of the vacuolar ATPase) Btn1p was essential for septum deposition during cytokinesis.
机译:我们已经克隆了人类巴顿病基因CLN3的粟酒裂殖酵母(Schizosaccharomyces pombe)同源物。该基因btn1编码一种预测的跨膜蛋白,与人类的跨膜蛋白具有30%的相同性和48%的相似性。删除btn1的细胞是可行的,但具有增大的和更多的碱性液泡。相反,Btn1p的过表达降低了液泡直径和pH。因此,Btn1p调节液泡稳态。 btn1Delta细胞的液泡缺陷通过CLN3的异源表达得以挽救,证明Btn1p和CLN3是功能同源物。当在btn1中表达时,引起Batten致病突变(G187A,E295K和V330F)的疾病严重程度似乎与其对液泡pH的影响相关,表明溶酶体pH升高有助于疾病进程。在裂变酵母中,Btn1p和CLN3都通过早期的内吞和真空前腔室进入液泡膜,而Btn1p定位于液泡膜取决于Ras GTPase Ypt7p。重要的是,缺失ypt7和btn1的细胞中的液泡比仅缺失ypt7的细胞更大且更碱性,这表明Btn1p在到达液泡之前具有功能性作用。一致地,btn1和vma1,即编码vATPase V1部分亚基A的基因,显示条件合成杀伤力,在缺失了vma1(液泡ATPase的亚基)的细胞中,Btn1p对于胞质分裂过程中的隔膜沉积至关重要。

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