McRae Rebecca, Lapierre Lynne A, Manning Elizabeth H, Goldenring James R
Epithelial Biology Center, Vanderbilt University School of Medicine, Nashville, TN, USA; Department of Cell & Developmental Biology, Vanderbilt University School of Medicine, Nashville, TN, USA.
Epithelial Biology Center, Vanderbilt University School of Medicine, Nashville, TN, USA; Section of Surgical Sciences, Vanderbilt University School of Medicine, Nashville, TN, USA; Nashville VA Medical Center, Nashville, TN, USA.
Cell Logist. 2017 Jan 9;7(1):e1271498. doi: 10.1080/21592799.2016.1271498. eCollection 2017.
MARK2/Par1b/EMK1, a serine/threonine kinase, is required for correct apical/basolateral membrane polarization in epithelial cells. However, the specific substrates mediating MARK2 action are less well understood. We have now found that MARK2 phosphorylates Rab11-FIP1B/C at serine 234 in a consensus site similar to that previously identified in Rab11-FIP2. In MDCK cells undergoing repolarization after a calcium switch, antibodies specific for pS234-Rab11-FIP1 or pS227-Rab11-FIP2 demonstrate that the spatial and temporal activation of Rab11-FIP1 phosphorylation is distinct from that for Rab11-FIP2. Phosphorylation of Rab11-FIP1 persists through calcium switch and remains high after polarity has been reestablished whereas FIP2 phosphorylation is highest early in reestablishment of polarity but significantly reduced once polarity has been re-established. MARK2 colocalized with FIP1B/C/D and p(S234)-FIP1 . Overexpression of GFP-Rab11-FIP1C wildtype or non-phosphorylatable GFP-Rab11-FIP1C(S234A) induced two significant phenotypes following calcium switch. Overexpression of FIP1C wildtype and FIP1C(S234A) caused a psuedo-stratification of cells in early time points following calcium switch. At later time points most prominently observed in cells expressing FIP1C(S234A) a significant lateral lumen phenotype was observed, where F-actin-rich lateral lumens appeared demarcated by a ring of ZO1 and also containing ezrin, syntaxin 3 and podocalyxin. In contrast, p120 and E-Cadherin were excluded from the new apical surface at the lateral lumens and now localized to the new lateral surface oriented toward the media. GFP-FIP1C(S234A) localized to membranes deep to the lateral lumens, and immunostaining demonstrated the reorientation of the centrosome and the Golgi apparatus toward the lateral lumen. These results suggest that both Rab11-FIP1B/C and Rab11-FIP2 serve as critical substrates mediating aspects of MARK2 regulation of epithelial polarity.
MARK2/Par1b/EMK1是一种丝氨酸/苏氨酸激酶,上皮细胞中正确的顶端/基底外侧膜极化需要该激酶。然而,介导MARK2作用的特定底物尚不太清楚。我们现在发现,MARK2在丝氨酸234处使Rab11-FIP1B/C磷酸化,该位点与先前在Rab11-FIP2中鉴定的共有位点相似。在钙转换后经历重新极化的MDCK细胞中,针对pS234-Rab11-FIP1或pS227-Rab11-FIP2的特异性抗体表明,Rab11-FIP1磷酸化的时空激活与Rab11-FIP2不同。Rab11-FIP1的磷酸化在钙转换过程中持续存在,并且在极性重新建立后仍然很高,而FIP2磷酸化在极性重新建立的早期最高,但一旦极性重新建立就会显著降低。MARK2与FIP1B/C/D和p(S234)-FIP1共定位。钙转换后,GFP-Rab11-FIP1C野生型或不可磷酸化的GFP-Rab11-FIP1C(S234A)的过表达诱导了两种显著的表型。FIP1C野生型和FIP1C(S234A)的过表达在钙转换后的早期时间点导致细胞伪分层。在表达FIP1C(S234A)的细胞中最明显观察到的后期时间点,观察到一种显著的外侧腔表型,其中富含F-肌动蛋白的外侧腔似乎由ZO1环界定,并且还含有埃兹蛋白、Syntaxin 3和足突细胞粘附分子。相反,p120和E-钙粘蛋白被排除在外侧腔的新顶端表面之外,现在定位于朝向培养基的新外侧表面。GFP-FIP1C(S234A)定位于外侧腔深处的膜上,免疫染色显示中心体和高尔基体重新定向朝向外侧腔。这些结果表明,Rab11-FIP1B/C和Rab11-FIP2均作为关键底物介导MARK2调节上皮极性的各个方面。