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Pleiotrophin signals increased tyrosine phosphorylation of β-catenin through inactivation of the intrinsic catalytic activity of the receptor-type protein tyrosine phosphatase β/ζ

机译:促营养素信号增加酪氨酸的酪氨酸磷酸化 β-catenin通过失活内在的催化活性 受体型酪氨酸磷酸酶β/ζ

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摘要

Pleiotrophin (PTN) is a platelet-derived growth factor-inducible, 18-kDa heparin-binding cytokine that signals diverse phenotypes in normal and deregulated cellular growth and differentiation. To seek the mechanisms of PTN signaling, we studied the interactions of PTN with the receptor protein tyrosine phosphatase (RPTP) β/ζ in U373-MG cells. Our results suggest that PTN is a natural ligand for RPTP β/ζ. PTN signals through “ligand-dependent receptor inactivation” of RPTP β/ζ and disrupts its normal roles in the regulation of steady-state tyrosine phosphorylation of downstream signaling molecules. We have found that PTN binds to and functionally inactivates the catalytic activity of RPTP β/ζ. We also have found that an active site-containing domain of RPTP β/ζ both binds β-catenin and functionally reduces its levels of tyrosine phosphorylation when added to lysates of pervanidate-treated cells. In contrast, an (inactivating) active-site mutant of RPTP β/ζ also binds β-catenin but fails to reduce tyrosine phosphorylation of β-catenin. Finally, in parallel to its ability to inactivate endogenous RPTP β/ζ, PTN sharply increases tyrosine phosphorylation of β-catenin in PTN-treated cells. The results suggest that in unstimulated cells, RPTP β/ζ is intrinsically active and functions as an important regulator in the reciprocal control of the steady-state tyrosine phosphorylation levels of β-catenin by tyrosine kinases and phosphatases. The results also suggest that RPTP β/ζ is a functional receptor for PTN; PTN signals through ligand-dependent receptor inactivation of RPTP β/ζ to increase levels of tyrosine phosphorylation of β-catenin to initiate downstream signaling. PTN is the first natural ligand identified for any of the RPTP family; its identification provides a unique tool to pursue the novel signaling pathway activated by PTN and the relationship of PTN signaling with other pathways regulating β-catenin.
机译:促肾上腺皮质激素(PTN)是一种血小板衍生的生长因子诱导型18 kDa肝素结合细胞因子,可在正常和失调的细胞生长和分化中发出多种表型信号。为了寻求PTN信号传导的机制,我们研究了PTN与U373-MG细胞中受体蛋白酪氨酸磷酸酶(RPTP)β/ζ的相互作用。我们的结果表明,PTN是RPTPβ/ζ的天然配体。 PTN通过RPTPβ/ζ的“配体依赖性受体失活”发出信号,并破坏其在调节下游信号分子稳态酪氨酸磷酸化中的正常作用。我们已经发现PTN结合并在功能上使RPTPβ/ζ的催化活性失活。我们还发现,添加到过钒酸盐处理过的细胞的裂解物中时,RPTPβ/ζ的含活性位点的域既与β-catenin结合,又在功能上降低了其酪氨酸磷酸化水平。相反,RPTPβ/ζ的(失活)活性位点突变体也结合β-catenin,但不能减少β-catenin的酪氨酸磷酸化。最后,与其灭活的能力平行 内源性RPTPβ/ζ,PTN急剧增加酪氨酸 PTN处理的细胞中β-catenin的磷酸化。结果 提示在未刺激的细胞中,RPTPβ/ζ本质上是 是积极的,并在互惠中起着重要的调节器的作用 的稳态酪氨酸磷酸化水平的控制 β-catenin由酪氨酸激酶和磷酸酶组成。结果也 提示RPTPβ/ζ是PTN的功能性受体; PTN 通过配体依赖性受体使RPTP失活而产生信号 β/ζ增加β-catenin的酪氨酸磷酸化水平 启动下游信令。 PTN是第一个天然配体 为任何RPTP系列确定;其标识提供了 追求由PTN和PTN激活的新型信号通路的独特工具 PTN信号与其他调节途径的关系 β-连环蛋白。

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