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新型受体蛋白酪氨酸磷酸酶PTPRO的特性及染色体定位,该酶在造血干细胞中表达

Characterization and chromosomal localization of PTPRO, a novel receptor protein tyrosine phosphatase, expressed in hematopoietic stem cells.

作者信息

Avraham S, London R, Tulloch G A, Ellis M, Fu Y, Jiang S, White R A, Painter C, Steinberger A A, Avraham H

机构信息

Division of Experimental Medicine, Beth Israel Deaconess Medical Center, Harvard Institutes of Medicine, Boston, MA 02115, USA.

出版信息

Gene. 1997 Dec 19;204(1-2):5-16. doi: 10.1016/s0378-1119(97)00420-4.

Abstract

Hematopoietic stem cells (HSCs) support blood cells throughout life by utilizing their self-renewing and multilineage differentiating capabilities. Hematopoietic growth factors mediate their effects on stem cells by the tyrosine phosphorylation of proteins. Regulation of tyrosine phosphorylation is partially mediated by protein tyrosine phosphatases (PTPases). A possible mechanism by which hematopoietic stem cells maintain their self-renewing capacity and undifferentiated state is by controlling the balanced and opposing actions of protein tyrosine kinases (PTKs), receptors for growth factors, and PTPases. We have characterized the expression of PTPases in 5-fluorouracil (5-FU)-treated murine bone marrow cells, which represent a very primitive population of progenitors enriched for reconstituting stem cells, by using a consensus polymerase chain reaction (PCR) method. Several PTPases were expressed abundantly in the 5-FU-treated bone marrow stem cells. A novel PTP, termed protein tyrosine phosphatase receptor omicron (PTPRO), which is related to the homotypically adhering kappa, mu and PCP-2 receptor-type tyrosine phosphatases, was identified and characterized. We have cloned the murine and full-length human PTPRO cDNAs which share 89% homology, indicating that PTPRO is highly conserved between these species. The human PTPRO cDNA clone encodes a polypeptide of 1439 amino acids (aa) and has a calculated molecular mass of approximately 162 kDa. PTPRO consists of an extracellular segment containing a MAM domain, an immunoglobulin (Ig) domain, four fibronectin-type III (FN-III) repeats, a transmembrane segment, and two tandem intracellular PTP domains. The human PTPRO gene was assigned to human chromosome 1p35-pter using Southern blot analyses of genomic DNAs from rodent/human somatic hybrid cell lines containing human chromosome 1 or the p35-pter region of the chromosome. The mouse Ptpro gene was mapped to chromosome 4, closely linked to D4Mit16 and Elp1 (elliptocytosis-1), by using genomic DNAs from a (C57BL/6J x Mus spretus)F1 x Mus spretus backcross. In fetal tissues, PTPRO expression was observed in the brain and lung, whereas lower levels were observed in the kidney. In adult tissues, PTPRO was less restricted and was observed in the lung, heart, skeletal muscle, prostate, testis, and in various areas of the brain, indicating that PTPRO expression is developmentally regulated. Expression of PTPRO was also observed in human CD34+ bone marrow cells and 5-FU-treated murine primitive stem cells. These results suggest a potential role for PTPRO in stem cell adhesion and in mediating homophilic cell-cell interactions in other cell types.

摘要

造血干细胞(HSCs)通过利用其自我更新和多谱系分化能力,在整个生命过程中维持血细胞的生成。造血生长因子通过蛋白质的酪氨酸磷酸化介导其对干细胞的作用。酪氨酸磷酸化的调节部分由蛋白酪氨酸磷酸酶(PTPases)介导。造血干细胞维持其自我更新能力和未分化状态的一种可能机制是通过控制蛋白酪氨酸激酶(PTKs)、生长因子受体和PTPases的平衡且相反的作用。我们使用一种通用聚合酶链反应(PCR)方法,对5-氟尿嘧啶(5-FU)处理的小鼠骨髓细胞中PTPases的表达进行了表征,这些细胞代表了一个非常原始的祖细胞群体,富含用于重建的干细胞。几种PTPases在5-FU处理的骨髓干细胞中大量表达。我们鉴定并表征了一种新的PTP,称为蛋白酪氨酸磷酸酶受体ο(PTPRO),它与同型粘附的κ、μ和PCP-2受体型酪氨酸磷酸酶相关。我们克隆了小鼠和全长人类PTPRO cDNA,它们具有89%的同源性,表明PTPRO在这些物种之间高度保守。人类PTPRO cDNA克隆编码一个1439个氨基酸(aa)的多肽,计算分子量约为162 kDa。PTPRO由一个包含MAM结构域、一个免疫球蛋白(Ig)结构域、四个纤连蛋白III型(FN-III)重复序列、一个跨膜结构域和两个串联的细胞内PTP结构域的细胞外区段组成。使用来自含有人类1号染色体或该染色体p35-翼区的啮齿动物/人类体细胞杂种细胞系的基因组DNA进行Southern印迹分析,将人类PTPRO基因定位于人类染色体1p35-翼区。通过使用来自(C57BL/6J×小家鼠)F1×小家鼠回交的基因组DNA,将小鼠Ptpro基因定位到4号染色体,与D4Mit16和Elp1(椭圆形红细胞增多症-1)紧密连锁。在胎儿组织中,在脑和肺中观察到PTPRO表达,而在肾中观察到较低水平的表达。在成体组织中,PTPRO的表达限制较少,在肺、心脏、骨骼肌、前列腺、睾丸以及脑的各个区域均有观察到,表明PTPRO的表达受发育调控。在人类CD34+骨髓细胞和5-FU处理的小鼠原始干细胞中也观察到了PTPRO的表达。这些结果表明PTPRO在干细胞黏附以及介导其他细胞类型中的同型细胞间相互作用方面具有潜在作用。

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