Department of Pharmacology, University of Medicine and Dentistry of New Jersey-Robert Wood Johnson Medical School, Piscataway, NJ, USA.
Autophagy. 2012 Sep;8(9):1300-11. doi: 10.4161/auto.20681. Epub 2012 Aug 14.
Inositol phosphates are implicated in the regulation of autophagy; however, the exact role of each inositol phosphate species is unclear. In this study, we systematically analyzed the highly conserved inositol polyphosphate synthesis pathway in S. cerevisiae for its role in regulating autophagy. Using yeast mutants that harbored a deletion in each of the genes within the inositol polyphosphate synthesis pathway, we found that deletion of KCS1, and to a lesser degree IPK2, led to a defect in autophagy. KCS1 encodes an inositol hexakisphosphate/heptakisposphate kinase that synthesizes 5-IP(7) and IP(8); and IPK2 encodes an inositol polyphosphate multikinase required for synthesis of IP(4) and IP(5). We characterized the kcs1Δ mutant strain in detail. The kcs1Δ yeast exhibited reduced autophagic flux, which might be caused by both the reduction in autophagosome number and autophagosome size as observed under nitrogen starvation. The autophagy defect in kcs1Δ strain was associated with mislocalization of the phagophore assembly site (PAS) and a defect in Atg18 release from the vacuole membrane under nitrogen deprivation conditions. Interestingly, formation of autophagosome-like vesicles was commonly observed to originate from the plasma membrane in the kcs1Δ strain. Our results indicate that lack of KCS1 interferes with proper localization of the PAS, leads to reduction of autophagosome formation, and causes the formation of autophagosome-like structure in abnormal subcellular locations.
肌醇磷酸盐参与自噬的调节;然而,每种肌醇磷酸盐的具体作用尚不清楚。在这项研究中,我们系统地分析了酿酒酵母中高度保守的肌醇多磷酸盐合成途径,以研究其在自噬调节中的作用。利用酵母突变株,该突变株缺失了肌醇多磷酸盐合成途径中的每个基因,我们发现 KCS1 的缺失,以及程度较小的 IPK2 的缺失,导致自噬缺陷。KCS1 编码肌醇六磷酸/七磷酸激酶,合成 5-IP(7)和 IP(8);IPK2 编码肌醇多磷酸盐多激酶,是合成 IP(4)和 IP(5)所必需的。我们详细描述了 kcs1Δ 突变株。kcs1Δ 酵母表现出较低的自噬通量,这可能是由于氮饥饿下观察到的自噬体数量和自噬体大小减少所致。kcs1Δ 菌株的自噬缺陷与吞噬体组装位点 (PAS) 的定位错误以及氮饥饿条件下 Atg18 从液泡膜释放的缺陷有关。有趣的是,在 kcs1Δ 菌株中,观察到自噬体样囊泡的形成通常起源于质膜。我们的结果表明,缺乏 KCS1 会干扰 PAS 的正确定位,导致自噬体形成减少,并导致自噬体样结构在异常的亚细胞位置形成。