Unprenylated RhoA Contributes to IL-1β Hypersecretion in Mevalonate Kinase Deficiency Model through Stimulation of Rac1 Activity

被引:42
|
作者
van der Burgh, Robert [1 ]
Pervolaraki, Kalliopi [1 ]
Turkenburg, Marjolein [2 ]
Waterham, Hans R. [2 ]
Frenkel, Joost [1 ]
Boes, Marianne [1 ]
机构
[1] Univ Med Ctr Utrecht, Wilhelmina Childrens Hosp, Dept Pediat Immunol & Infect Dis, NL-3584 EA Utrecht, Netherlands
[2] Univ Amsterdam, Amsterdam Med Ctr, Dept Clin Chem, Lab Genet Metab Dis, NL-1100 DE Amsterdam, Netherlands
关键词
Autophagy; Interleukin; Protein Isoprenylation; Ras Homolog Gene Family; Member A (RhoA); Ras-related C3 Botulinum Toxin Substrate 1 (Rac1); Small GTPase; Autoinflammatory-disorder; Mitochondrial Elongation; CELL-ADHESION; SMALL GTPASES; FAMILY; INHIBITION; ACTIVATION; BIOSYNTHESIS; PRENYLATION; CASPASE-1; AUTOPHAGY; MIGRATION;
D O I
10.1074/jbc.M114.571810
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Background: Shortage of isoprenoids causes aberrant activity of prenylated small GTPases. Results: Inactivation of RhoA due to lack of prenylation leads to Rac1 activation and subsequent priming for IL-1 secretion. Conclusion: RhoA inactivation contributes to the pathology of isoprenoid deficiency. Significance: Insight into the multiple networks involving RhoA will benefit new intervention strategies in prenylation-related pathologies. Protein prenylation is a post-translational modification whereby non-sterol isoprenoid lipid chains are added, thereby modifying the molecular partners with which proteins interact. The autoinflammatory disease mevalonate kinase deficiency (MKD) is characterized by a severe reduction in protein prenylation. A major class of proteins that are affected are small GTPases, including Rac1 and RhoA. It is not clear how protein prenylation of small GTPases relates to GTP hydrolysis activity and downstream signaling. Here, we investigated the contribution of RhoA prenylation to the biochemical pathways that underlie MKD-associated IL-1 hypersecretion using human cell cultures, Rac1 and RhoA protein variants, and pharmacological inhibitors. We found that when unprenylated, the GTP-bound levels of RhoA decrease, causing a reduction in GTPase activity and increased protein kinase B (PKB) phosphorylation. Cells expressing unprenylated RhoA produce increased levels of interleukin 1 mRNA. Of other phenotypic cellular changes seen in MKD, increased mitochondrial potential and mitochondrial elongation, only mitochondrial elongation was observed. Finally, we show that pharmacological inactivation of RhoA boosts Rac1 activity, a small GTPase whose activity was earlier implied in MKD pathogenesis. Together, our data show that RhoA plays a pivotal role in MKD pathogenesis through Rac1/PKB signaling toward interleukin 1 production and elucidate the effects of protein prenylation in monocytes.
引用
收藏
页码:27757 / 27765
页数:9
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