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Novel mesenchymal and haematopoietic cell isoforms of the SHP-2 docking receptor, PZR: identification, molecular cloning and effects on cell migration

机译:SHP-2对接受体PZR的新型间充质和造血细胞亚型:鉴定,分子克隆及其对细胞迁移的影响

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SHP-2 (Src homology phosphatase type-2) is essential for haematopoietic skeletal and vascular development. Thus the identification of its binding partners is critically important. In the present study, we describe a unique monoclonal antibody, WM78, which interacts with PZR, a SHP-2 binding partner. Furthermore, we identify two novel isoforms of PZR, PZRa and PZRb, derived by differential splicing from a single gene transcription unit on human chromosome 1q24. All are type I transmembrane glycoproteins with identical extracellular and transmembrane domains, but differ in their cytoplasmic tails. The PZR intracellular domain contains two SHP-2 binding immunoreceptor tyrosine-based inhibitory motifs (VIY(246)AQL and VVY(263)ADI) which are not present in PZRa and PZRb. Using the WM78 monoclonal antibody, which recognizes the common extracellular domain of the PZR isoforms, we demonstrate that the PZR molecules are expressed on mesenchymal and haematopoietic cells, being present on the majority of CD34(+)CD38(+) and early clonogenic progenitors, and at lower levels on CD34(+)CD38(-) cells and the hierarchically more primitive pre-colony forming units. Interestingly, we show by reverse transcriptase-PCR that the PZR isoforms are differentially expressed in haematopoietic, endothelial and mesenchymal cells. Both PZR and PZRb are present in CD133(+) precursors and endothelial cells, PZRb predominates in mesenchymal and committed myelomonocytic progenitor cells, and all three isoforms occur in erythroid precursor cell lines. Importantly, using SHP-2 mutant (Delta46-110) and SHP-2 rescue of embryonic fibroblasts stably expressing the PZR isoforms, we demonstrate for the first time that PZR, but not PZRa on PZRb, facilitates fibronectin-dependent migration of cells expressing a competent SHP-2 molecule. These observations will be instrumental in determining the mechanisms whereby PZR isoforms regulate cell motility. [References: 44]
机译:SHP-2(Src同源磷酸酶2型)对于造血骨骼和血管发育至关重要。因此,确定其结合伙伴至关重要。在本研究中,我们描述了一种独特的单克隆抗体WM78,它与SZ-2结合伴侣PZR相互作用。此外,我们确定了两种新型的PZR,PZRa和PZRb的同工型,它们是通过从人类1q24染色体上的单个基因转录单元进行差异剪接而衍生的。它们都是具有相同的细胞外和跨膜结构域,但胞质尾部不同的I型跨膜糖蛋白。 PZR细胞内域包含两个基于SHP-2结合免疫受体酪氨酸的抑制性基序(VIY(246)AQL和VVY(263)ADI),在PZRa和PZRb中不存在。使用WM78单克隆抗体识别PZR同工型的常见胞外域,我们证明PZR分子在间充质和造血细胞上表达,并存在于大多数CD34(+)CD38(+)和早期克隆形成祖细胞中,并在CD34(+)CD38(-)细胞和层次更原始的前殖民地形成单位上处于较低水平。有趣的是,我们通过逆转录酶-PCR显示PZR亚型在造血,内皮和间充质细胞中差异表达。 PZR和PZRb都存在于CD133(+)前体和内皮细胞中,PZRb主要存在于间充质和定型的骨髓单核祖细胞中,而这三种同工型都出现在类红细胞前体细胞系中。重要的是,我们使用SHP-2突变体(Delta46-110)和SHP-2抢救稳定表达PZR同工型的胚胎成纤维细胞,首次证明PZR而非PZRb上的PZRa促进表达纤连蛋白的细胞的纤连蛋白依赖性迁移胜任的SHP-2分子。这些观察将有助于确定PZR亚型调节细胞运动的机制。 [参考:44]

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