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过量的早期信号活性会抑制细胞对血小板衍生生长因子-BB的趋化作用。

Excess early signaling activity inhibits cellular chemotaxis toward PDGF-BB.

作者信息

Kundra V, Soker S, Zetter B R

机构信息

Program in Biological and Biomedical Sciences, Harvard Medical School, Children's Hospital, Boston, Massachusetts.

出版信息

Oncogene. 1994 May;9(5):1429-35.

PMID:8152804
Abstract

Chemotaxis, directed migration toward a gradient of a soluble substance, requires a cell to spatially distinguish the concentration of a chemoattractant at one end relative to its opposite end. Platelet-derived growth factor (PDGF) is a potent mitogen and chemoattractant. In the current study, we attempted to interfere with PDGF-BB mediated chemotaxis by abnormal expression of potential early components of the signaling cascade. We find that expression of the PDGF homolog v-Sis prevents cellular migration toward PDGF-BB, indicating that autocrine production of a PDGF receptor ligand will prevent the chemotactic response to exogenously added ligand. In addition, while it is known that PDGF receptor mutants incapable of activating tyrosine kinase activity cannot transduce a signal for mitogenesis or chemotaxis, the effects of excess tyrosine kinase activity on PDGF mediated chemotaxis have not been tested. We demonstrate that cells expressing constitutively active tyrosine kinase genes such as v-fms, v-fes, or v-src fail to migrate toward PDGF-BB whereas expression of the serine/threonine kinase v-mos does not block the chemotactic response. The results demonstrate that chemotaxis may be prevented by excess production of either ligand, receptor activity, or downstream signaling molecule. In addition, our results show that the signals that mediate chemotaxis are separable from those that regulate unstimulated random motility in the same cells.

摘要

趋化作用,即朝着可溶性物质梯度的定向迁移,要求细胞在空间上区分趋化因子在一端相对于另一端的浓度。血小板衍生生长因子(PDGF)是一种有效的促有丝分裂剂和趋化因子。在本研究中,我们试图通过信号级联潜在早期成分的异常表达来干扰PDGF-BB介导的趋化作用。我们发现PDGF同源物v-Sis的表达可阻止细胞向PDGF-BB迁移,这表明PDGF受体配体的自分泌产生会阻止对外源添加配体的趋化反应。此外,虽然已知不能激活酪氨酸激酶活性的PDGF受体突变体无法转导有丝分裂或趋化作用的信号,但过量酪氨酸激酶活性对PDGF介导的趋化作用的影响尚未得到测试。我们证明,持续表达活性酪氨酸激酶基因(如v-fms、v-fes或v-src)的细胞不会向PDGF-BB迁移,而丝氨酸/苏氨酸激酶v-mos的表达不会阻断趋化反应。结果表明,配体、受体活性或下游信号分子的过量产生可能会阻止趋化作用。此外,我们的结果表明,介导趋化作用的信号与调节同一细胞中未受刺激的随机运动的信号是可分离的。

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