Department of Pediatrics, Herman B Wells Center for Pediatric Research, Indianapolis, IN, USA.
Blood. 2011 Sep 29;118(13):3459-69. doi: 10.1182/blood-2011-04-351809. Epub 2011 Jul 25.
Mast cell maturation is poorly understood. We show that enhanced PI3K activation results in accelerated maturation of mast cells by inducing the expression of microphthalmia transcription factor (Mitf). Conversely, loss of PI3K activation reduces the maturation of mast cells by inhibiting the activation of AKT, leading to reduced Mitf but enhanced Gata-2 expression and accumulation of Gr1(+)Mac1(+) myeloid cells as opposed to mast cells. Consistently, overexpression of Mitf accelerates the maturation of mast cells, whereas Gata-2 overexpression mimics the loss of the PI3K phenotype. Expressing the full-length or the src homology 3- or BCR homology domain-deleted or shorter splice variant of the p85α regulatory subunit of PI3K or activated AKT or Mitf in p85α-deficient cells restores the maturation but not growth. Although deficiency of both SHIP and p85α rescues the maturation of SHIP(-/-) and p85α(-/-) mast cells and expression of Mitf; in vivo, mast cells are rescued in some, but not all tissues, due in part to defective KIT signaling, which is dependent on an intact src homology 3 and BCR homology domain of p85α. Thus, p85α-induced maturation, and growth and survival signals, in mast cells can be uncoupled.
肥大细胞的成熟过程尚不清楚。我们发现,增强 PI3K 的激活可通过诱导小眼畸形转录因子(Mitf)的表达,加速肥大细胞的成熟。相反,PI3K 激活的丧失通过抑制 AKT 的激活,减少 Mitf,但增加 Gata-2 的表达和 Gr1(+)Mac1(+)髓样细胞的积累,而不是肥大细胞。一致地,过表达 Mitf 可加速肥大细胞的成熟,而过表达 Gata-2 则模拟 PI3K 表型的丧失。在 p85α 缺陷细胞中表达全长或 src 同源性 3 或 BCR 同源结构域缺失或较短的拼接变异体的 p85α 调节亚基的 PI3K 或激活的 AKT 或 Mitf 可恢复成熟,但不能恢复生长。尽管 SHIP 和 p85α 的双重缺乏可挽救 SHIP(-/-)和 p85α(-/-)肥大细胞的成熟和 Mitf 的表达;但在体内,由于部分依赖于完整的 src 同源性 3 和 BCR 同源结构域的 p85α 的 KIT 信号的缺陷,仅在一些而不是所有组织中拯救了肥大细胞。因此,肥大细胞中 p85α 诱导的成熟、生长和存活信号可以解耦。