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Expression of Human PTEN-L in a Yeast Heterologous Model Unveils Specific N-Terminal Motifs Controlling PTEN-L Subcellular Localization and Function

机译:人PTEN-L在酵母异源模型中的表达揭示了控制PTEN-L亚细胞定位和功能的特定N端基序。

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摘要

The tumour suppressor PTEN is frequently downregulated, mutated or lost in several types of tumours and congenital disorders including PHTS (PTEN Hamartoma Tumour Syndrome) and ASD (Autism Spectrum Disorder). PTEN is a lipid phosphatase whose activity over the lipid messenger PIP counteracts the stimulation of the oncogenic phosphatidylinositol 3-kinase (PI3K) pathway. Recently, several extended versions of PTEN produced in the cell by alternative translation initiation have been described, among which, PTEN-L and PTEN-M represent the longest isoforms. We previously developed a humanized yeast model in which the expression of PI3K in led to growth inhibition that could be suppressed by co-expression of PTEN. Here, we show that the expression of PTEN-L and PTEN-M in yeast results in robust counteracting of PI3K-dependent growth inhibition. N-terminally tagged GFP-PTEN-L was sharply localized at the yeast plasma membrane. Point mutations of a putative membrane-binding helix located at the PTEN-L extension or its deletion shifted localization to nuclear. Also, a shift from plasma membrane to nucleus was observed in mutants at basic amino acid clusters at the PIP -binding motif, and at the Cα2 and CBR3 loops at the C2 domain. In contrast, C-terminally tagged PTEN-L-GFP displayed mitochondrial localization in yeast, which was shifted to plasma membrane by removing the first 22 PTEN-L residues. Our results suggest an important role of the N-terminal extension of alternative PTEN isoforms on their spatial and functional regulation.
机译:PTEN在多种类型的肿瘤和先天性疾病(包括PHTS(PTEN肾瘤肿瘤综合征)和ASD(自闭症谱系障碍))中经常被下调,突变或丢失。 PTEN是一种脂质磷酸酶,其对脂质使者PIP的活性抵消了致癌性磷脂酰肌醇3-激酶(PI3K)途径的刺激。最近,已经描述了通过交替翻译起始在细胞中产生的PTEN的几种延伸形式,其中,PTEN-L和PTEN-M代表最长的同工型。我们先前开发了一种人源化的酵母模型,其中PI3K的表达导致可被PTEN的共表达抑制的生长抑制。在这里,我们表明酵母中PTEN-L和PTEN-M的表达导致PI3K依赖的生长抑制作用的强大抵消。 N末端标记的GFP-PTEN-L急剧定位在酵母的质膜上。位于PTEN-L延伸的假定膜结合螺旋的点突变或其缺失将定位转移至核。另外,在突变体中,在PIP结合基序处的碱性氨基酸簇处以及在C2域的Cα2和CBR3环处观察到了从质膜向核的转变。相比之下,C末端标记的PTEN-L-GFP在酵母中显示线粒体定位,通过去除前22个PTEN-L残基将其转移到质膜上。我们的结果表明,替代性PTEN亚型的N末端延伸对它们的空间和功能调控具有重要作用。

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