Buchwalter A, Van Dort C, Schultz S, Smith R, Le I P, Abbott J L, Oosterhouse E, Johnson A E, Hansen-Smith F, Burnatowska-Hledin M
Department of Biology and Chemistry, Science Center, Hope College, Holland, MI 49422-9000, USA.
Microvasc Res. 2008 Mar;75(2):155-68. doi: 10.1016/j.mvr.2007.08.004. Epub 2007 Sep 4.
Vasopressin-activated calcium mobilizing receptor (VACM-1) is a member of the cullin gene family involved in ubiquitin-proteosome dependent regulation of cellular functions. Expression of VACM-1 cDNA in cos-1 cells in vitro decreases basal cAMP levels and inhibits growth. The expression of (S730A)VACM-1 mutant cDNA, which removes PKA-dependent phosphorylation site in the VACM-1 cDNA sequence, reverses this phenotype. Since the expression of VACM-1 protein in vivo localizes largely to the vascular endothelial cells, in this study, we examined the effects of (S730A)VACM-1 cDNA expression on cellular signaling in the rat endothelial cell line RAMEC. Our results indicate that expression of (S730A)VACM-1 cDNA in RAMEC promotes cellular proliferation and induces angiogenic growth patterns. Western blot analyses indicate that (S730A)VACM-1 cDNA transfected cells express increased levels of Nedd8 modified VACM-1 and have higher levels of phosphorylated MAPK protein when compared to controls. Furthermore, expression of (S730A)VACM-1 cDNA induces translocation of the endogenous early response gene, egr-1, to the nucleus and leads to morphological changes that involve actin rearrangement. Finally, expression of (S730A)VACM-1 cDNA in RAMEC decreases concentration of maspin, a putative anti-angiogenic factor with a tumor suppressor activity. These results show that VACM-1 protein regulates endothelial cell growth and may modulate angiogenesis by a mechanism that involves MAPK phosphorylation, nuclear localization of egr-1, maspin expression, and actin polymerization.
血管加压素激活的钙动员受体(VACM-1)是cullin基因家族的成员,参与细胞功能的泛素-蛋白酶体依赖性调控。体外在cos-1细胞中表达VACM-1 cDNA可降低基础cAMP水平并抑制生长。(S730A)VACM-1突变体cDNA的表达去除了VACM-1 cDNA序列中依赖蛋白激酶A的磷酸化位点,可逆转这种表型。由于VACM-1蛋白在体内的表达主要定位于血管内皮细胞,因此在本研究中,我们检测了(S730A)VACM-1 cDNA表达对大鼠内皮细胞系RAMEC中细胞信号传导的影响。我们的结果表明,在RAMEC中表达(S730A)VACM-1 cDNA可促进细胞增殖并诱导血管生成生长模式。蛋白质印迹分析表明,与对照相比,转染(S730A)VACM-1 cDNA的细胞中Nedd8修饰的VACM-1水平升高,磷酸化丝裂原活化蛋白激酶(MAPK)蛋白水平更高。此外,(S730A)VACM-1 cDNA的表达诱导内源性早期反应基因egr-1易位至细胞核,并导致涉及肌动蛋白重排的形态学变化。最后,在RAMEC中表达(S730A)VACM-1 cDNA可降低maspin的浓度,maspin是一种具有肿瘤抑制活性的假定抗血管生成因子。这些结果表明,VACM-1蛋白通过涉及MAPK磷酸化、egr-1核定位、maspin表达和肌动蛋白聚合的机制调节内皮细胞生长并可能调节血管生成。