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个体磷脂酰肌醇转移蛋白具有不同的功能,不涉及脂质转移活性。

Individual phosphatidylinositol transfer proteins have distinct functions that do not involve lipid transfer activity.

机构信息

Department of Medicine, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA.

Department of Pediatrics, Research Institute, Children's Hospital of Philadelphia, University of Pennsylvania, Philadelphia, PA.

出版信息

Blood Adv. 2023 Aug 22;7(16):4233-4246. doi: 10.1182/bloodadvances.2022008735.

Abstract

Platelets use signal transduction pathways facilitated by class I phosphatidylinositol transfer proteins (PITPs). The 2 mammalian class I PITPs, PITPα and PITPβ, are single PITP domain soluble proteins that are encoded by different genes and share 77% sequence identity, although their individual roles in mammalian biology remain uncharacterized. These proteins are believed to shuttle phosphatidylinositol and phosphatidylcholine between separate intracellular membrane compartments, thereby regulating phosphoinositide synthesis and second messenger formation. Previously, we observed that platelet-specific deletion of PITPα, the predominantly expressed murine PITP isoform, had no effect on hemostasis but impaired tumor metastasis formation and disrupted phosphoinositide signaling. Here, we found that mice lacking the less expressed PITPβ in their platelets exhibited a similar phenotype. However, in contrast to PITPα-null platelet lysates, which have impaired lipid transfer activity, PITPβ-null platelet lysates have essentially normal lipid transfer activity, although both isoforms contribute to phosphoinositide synthesis in vitro. Moreover, we found that platelet-specific deletion of both PITPs led to ex vivo platelet aggregation/secretion and spreading defects, impaired tail bleeding, and profound tumor dissemination. Our study also demonstrated that PITP isoforms are required to maintain endogenous phosphoinositide PtdInsP2 levels and agonist-stimulated second messenger formation. The data shown here demonstrate that the 2 isoforms are functionally overlapping and that a single isoform is able to maintain the homeostasis of platelets. However, both class I PITP isoforms contribute to phosphoinositide signaling in platelets through distinct biochemical mechanisms or different subcellular domains.

摘要

血小板利用 I 类磷脂酰肌醇转移蛋白(PITP)介导的信号转导途径。哺乳动物的 2 种 I 类 PITP,PITPα 和 PITPβ,是具有不同基因编码的单 PITP 结构域可溶性蛋白,它们具有 77%的序列同一性,尽管它们在哺乳动物生物学中的各自作用仍未被阐明。这些蛋白被认为在不同的细胞内膜隔室之间穿梭磷脂酰肌醇和磷脂酰胆碱,从而调节磷酸肌醇的合成和第二信使的形成。先前,我们观察到血小板特异性缺失 PITPα(主要表达的鼠 PITP 同工型)对止血没有影响,但损害了肿瘤转移的形成并破坏了磷酸肌醇信号。在这里,我们发现血小板中缺乏表达较少的 PITPβ 的小鼠表现出类似的表型。然而,与 PITPα 缺失血小板裂解物的脂质转移活性受损不同,PITPβ 缺失血小板裂解物的脂质转移活性基本正常,尽管这两种同工型都有助于体外磷酸肌醇的合成。此外,我们发现血小板特异性缺失这两种 PITP 导致体外血小板聚集/分泌和扩展缺陷、尾巴出血受损和严重的肿瘤扩散。我们的研究还表明,PITP 同工型对于维持内源性磷酸肌醇 PtdInsP2 水平和激动剂刺激的第二信使形成是必需的。这里显示的数据表明这两种同工型在功能上是重叠的,并且单一同工型能够维持血小板的内稳态。然而,这两种 I 类 PITP 同工型都通过不同的生化机制或不同的亚细胞结构域来参与血小板中的磷酸肌醇信号。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0b9/10424146/41eddd49f6d0/BLOODA_ADV-2022-008735-fx1.jpg

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