Brancolini C, Marzinotto S, Edomi P, Agostoni E, Fiorentini C, Müller H W, Schneider C
Laboratorio Nazionale Consorzio Interuniversitario Biotecnologie, 34142 Trieste, Italy.
Mol Biol Cell. 1999 Jul;10(7):2441-59. doi: 10.1091/mbc.10.7.2441.
Gas3/PMP22 plays a crucial role in regulating myelin formation and maintenance, and different genetic alterations in gas3/PMP22 are responsible for a set of human peripheral neuropathies. We have previously demonstrated that Gas3/PMP22 could regulate susceptibility to apoptosis in NIH3T3 cells but not in REF 52 cells. In this report we demonstrate that when the apoptotic response triggered by gas3/PMP22 was counteracted by Bcl-2 coexpression, morphological changes were observed. Time-lapse analysis confirmed that Gas3/PMP22 can modulate cell spreading, and this effect was strengthened after inhibition of phosphoinositide 3-kinase. Using the active form of the small GTPase RhoA, we have been able to dissect the different Gas3/PMP22 biological activities. RhoA counteracted the Gas3/PMP22-dependent morphological response but was unable to neutralize the apoptotic response. Treatment of NIH3T3 cells with cytotoxic necrotizing factor 1, which activates endogenous Rho, also counteracted Gas3/PMP22-mediated cell shape and spreading changes. Treatment of REF 52 cells, which are unresponsive to Gas3/PMP22 overexpression, with the C3 exoenzyme, inhibiting Rho activity, renders REF 52 cells responsive to Gas3/PMP22 overexpression for cell shape and spreading changes. Finally, assembly of stress fibers and focal adhesions complexes, in response to lysophosphatidic acid-induced endogenous Rho activation, was impaired in Gas3/PMP22-overexpressing cells. We hypothesize that cell shape and spreading regulated by Gas3/PMP22 through the Rho GTPase might have an important role during Schwann cells differentiation and myelinization.
Gas3/PMP22在调节髓鞘形成和维持过程中发挥着关键作用,Gas3/PMP22基因的不同改变导致了一系列人类周围神经病变。我们之前已经证明,Gas3/PMP22可以调节NIH3T3细胞的凋亡易感性,但对REF 52细胞却没有这种作用。在本报告中,我们证明当Gas3/PMP22引发的凋亡反应被Bcl-2共表达抵消时,会观察到形态学变化。延时分析证实Gas3/PMP22可以调节细胞铺展,并且在抑制磷酸肌醇3激酶后这种作用得到增强。使用小GTP酶RhoA的活性形式,我们能够剖析Gas3/PMP22的不同生物学活性。RhoA抵消了Gas3/PMP22依赖性的形态学反应,但无法中和凋亡反应。用细胞毒性坏死因子1处理NIH3T3细胞(可激活内源性Rho),也抵消了Gas3/PMP22介导的细胞形状和铺展变化。用C3外切酶处理对Gas3/PMP22过表达无反应的REF 52细胞(抑制Rho活性),使REF 52细胞对Gas3/PMP22过表达产生细胞形状和铺展变化的反应。最后,在溶血磷脂酸诱导内源性Rho激活后发生的应力纤维和粘着斑复合物组装,在Gas3/PMP22过表达的细胞中受到损害。我们推测,Gas3/PMP22通过Rho GTP酶调节的细胞形状和铺展可能在雪旺细胞分化和髓鞘形成过程中发挥重要作用。