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溶酶体整合膜蛋白2依赖性过氧化物酶体增殖物激活受体6向板层小体的递送受损导致衔接蛋白3缺陷型珍珠小鼠肺泡磷脂含量改变。

Impaired Lysosomal Integral Membrane Protein 2-dependent Peroxiredoxin 6 Delivery to Lamellar Bodies Accounts for Altered Alveolar Phospholipid Content in Adaptor Protein-3-deficient pearl Mice.

作者信息

Kook Seunghyi, Wang Ping, Young Lisa R, Schwake Michael, Saftig Paul, Weng Xialian, Meng Ying, Neculai Dante, Marks Michael S, Gonzales Linda, Beers Michael F, Guttentag Susan

机构信息

From the Division of Neonatology and.

Division of Pediatric Pulmonary Medicine, Department of Pediatrics, Vanderbilt University School of Medicine, Nashville, Tennessee 37232.

出版信息

J Biol Chem. 2016 Apr 15;291(16):8414-27. doi: 10.1074/jbc.M116.720201. Epub 2016 Feb 23.

Abstract

The Hermansky Pudlak syndromes (HPS) constitute a family of disorders characterized by oculocutaneous albinism and bleeding diathesis, often associated with lethal lung fibrosis. HPS results from mutations in genes of membrane trafficking complexes that facilitate delivery of cargo to lysosome-related organelles. Among the affected lysosome-related organelles are lamellar bodies (LB) within alveolar type 2 cells (AT2) in which surfactant components are assembled, modified, and stored. AT2 from HPS patients and mouse models of HPS exhibit enlarged LB with increased phospholipid content, but the mechanism underlying these defects is unknown. We now show that AT2 in the pearl mouse model of HPS type 2 lacking the adaptor protein 3 complex (AP-3) fails to accumulate the soluble enzyme peroxiredoxin 6 (PRDX6) in LB. This defect reflects impaired AP-3-dependent trafficking of PRDX6 to LB, because pearl mouse AT2 cells harbor a normal total PRDX6 content. AP-3-dependent targeting of PRDX6 to LB requires the transmembrane protein LIMP-2/SCARB2, a known AP-3-dependent cargo protein that functions as a carrier for lysosomal proteins in other cell types. Depletion of LB PRDX6 in AP-3- or LIMP-2/SCARB2-deficient mice correlates with phospholipid accumulation in lamellar bodies and with defective intraluminal degradation of LB disaturated phosphatidylcholine. Furthermore, AP-3-dependent LB targeting is facilitated by protein/protein interaction between LIMP-2/SCARB2 and PRDX6 in vitro and in vivo Our data provide the first evidence for an AP-3-dependent cargo protein required for the maturation of LB in AT2 and suggest that the loss of PRDX6 activity contributes to the pathogenic changes in LB phospholipid homeostasis found HPS2 patients.

摘要

赫尔曼斯基-普德拉克综合征(HPS)是一类以眼皮肤白化病和出血素质为特征的疾病,常伴有致命性肺纤维化。HPS是由膜转运复合体基因的突变引起的,这些复合体有助于将货物运输到溶酶体相关细胞器。受影响的溶酶体相关细胞器包括2型肺泡细胞(AT2)内的板层小体(LB),表面活性剂成分在其中组装、修饰和储存。HPS患者和HPS小鼠模型的AT2显示LB增大,磷脂含量增加,但这些缺陷的潜在机制尚不清楚。我们现在发现,在缺乏衔接蛋白3复合体(AP-3)的2型HPS珍珠鼠模型中,AT2无法在LB中积累可溶性酶过氧化物还原酶6(PRDX6)。这一缺陷反映了PRDX6向LB的AP-3依赖性运输受损,因为珍珠鼠AT2细胞的PRDX6总含量正常。PRDX6向LB的AP-3依赖性靶向需要跨膜蛋白LIMP-2/SCARB2,它是一种已知的AP-3依赖性货物蛋白,在其他细胞类型中作为溶酶体蛋白的载体发挥作用。AP-3或LIMP-2/SCARB2缺陷小鼠中LB PRDX6的消耗与板层小体中磷脂的积累以及LB二饱和磷脂酰胆碱的腔内降解缺陷相关。此外,体外和体内LIMP-2/SCARB2与PRDX6之间的蛋白质/蛋白质相互作用促进了AP-3依赖性LB靶向。我们的数据首次证明了AT2中LB成熟所需的AP-3依赖性货物蛋白,并表明PRDX6活性的丧失导致了HPS2患者LB磷脂稳态的病理变化。

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