首页> 美国卫生研究院文献>Molecular and Cellular Biology >Extracellular Heat Shock Protein 90 Signals through Subdomain II and the NPVY Motif of LRP-1 Receptor to Akt1 and Akt2: a Circuit Essential for Promoting Skin Cell Migration In Vitro and Wound Healing In Vivo
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Extracellular Heat Shock Protein 90 Signals through Subdomain II and the NPVY Motif of LRP-1 Receptor to Akt1 and Akt2: a Circuit Essential for Promoting Skin Cell Migration In Vitro and Wound Healing In Vivo

机译:细胞外热激蛋白90信号通过亚结构域II和LRP-1受体的NPVY基序传递到Akt1和Akt2:促进皮肤细胞体外迁移和体内伤口愈合必不可少的电路

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摘要

Normal cells secrete heat shock protein 90 alpha (Hsp90α) in response to tissue injury. Tumor cells have managed to constitutively secrete Hsp90α during invasion and metastasis. The sole function of extracellular Hsp90α (eHsp90α) is to promote cell motility, a critical event for both wound healing and tumor progression. The mechanism of promotility action by eHsp90α, however, has remained elusive. A key issue is whether eHsp90α still acts as a chaperone outside the cells or is a new and bona fide signaling molecule. Here, we have provided evidence that eHsp90α utilizes a unique transmembrane signaling mechanism to promote cell motility and wound healing. First, subdomain II in the extracellular part of low-density lipoprotein receptor-related protein 1 (LRP-1) receives the eHsp90α signal. Then, the NPVY but not the NPTY motif in the cytoplasmic tail of LRP-1 connects eHsp90α signaling to serine 473 but not threonine 308 phosphorylation in Akt kinases. Individual knockdown of Akt1, Akt2, or Akt3 revealed the importance of Akt1 and Akt2 in eHsp90α-induced cell motility. Akt gene rescue experiments suggest that Akt1 and Akt2 work in concert, rather than independently, to mediate eHsp90α promotility signaling. Finally, Akt1 and Akt2 knockout mice showed impaired wound healing that cannot be corrected by topical application with the eHsp90α protein.
机译:正常细胞响应组织损伤分泌热激蛋白90α(Hsp90α)。肿瘤细胞在侵袭和转移过程中设法组成性地分泌Hsp90α。细胞外Hsp90α(eHsp90α)的唯一功能是促进细胞运动,这是伤口愈合和肿瘤进展的关键事件。但是,eHsp90α的促进作用的机制仍然不清楚。一个关键问题是eHsp90α是否仍在细胞外充当分子伴侣或是新的真正的信号分子。在这里,我们提供了eHsp90α利用独特的跨膜信号传导机制来促进细胞运动和伤口愈合的证据。首先,低密度脂蛋白受体相关蛋白1(LRP-1)胞外部分的亚结构域II接收eHsp90α信号。然后,NPVY而不是LRP-1胞质尾部中的NPTY基序将eHsp90α信号转导与Akt激酶中的丝氨酸473而非苏氨酸308磷酸化。单独敲低Akt1,Akt2或Akt3揭示了Akt1和Akt2在eHsp90α诱导的细胞运动中的重要性。 Akt基因拯救实验表明,Akt1和Akt2协同工作,而不是独立发挥作用,以介导eHsp90α促进信号传递。最后,Akt1和Akt2基因敲除小鼠的伤口愈合受损,无法通过局部使用eHsp90α蛋白来纠正。

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