Gnana-Prakasam Jaya P, Baldowski Renee B, Ananth Sudha, Martin Pamela M, Smith Sylvia B, Ganapathy Vadivel
Department of Biochemistry and Molecular Biology, Medical College of Georgia, Georgia Regents University, Augusta, GA.
Department of Cellular Biology and Anatomy, Medical College of Georgia, Georgia Regents University, Augusta, GA.
Mol Vis. 2014 Apr 26;20:561-74. eCollection 2014.
Matriptase-2 (also known as TMPRSS6) is a critical regulator of the iron-regulatory hormone hepcidin in the liver; matriptase-2 cleaves membrane-bound hemojuvelin and consequently alters bone morphogenetic protein (BMP) signaling. Hemojuvelin and hepcidin are expressed in the retina and play a critical role in retinal iron homeostasis. However, no information on the expression and function of matriptase-2 in the retina is available. The purpose of the present study was to examine the retinal expression of matriptase-2 and its role in retinal iron homeostasis.
RT-PCR, quantitative PCR (qPCR), and immunofluorescence were used to analyze the expression of matriptase-2 and other iron-regulatory proteins in the mouse retina. Polarized localization of matriptase-2 in the RPE was evaluated using markers for the apical and basolateral membranes. Morphometric analysis of retinas from wild-type and matriptase-2 knockout (Tmprss6(msk/msk) ) mice was also performed. Retinal iron status in Tmprss6(msk/msk) mice was evaluated by comparing the expression levels of ferritin and transferrin receptor 1 between wild-type and knockout mice. BMP signaling was monitored by the phosphorylation status of Smads1/5/8 and expression levels of Id1 while interleukin-6 signaling was monitored by the phosphorylation status of STAT3.
Matriptase-2 is expressed in the mouse retina with expression detectable in all retinal cell types. Expression of matriptase-2 is restricted to the apical membrane in the RPE where hemojuvelin, the substrate for matriptase-2, is also present. There is no marked difference in retinal morphology between wild-type mice and Tmprss6(msk/msk) mice, except minor differences in specific retinal layers. The knockout mouse retina is iron-deficient, demonstrable by downregulation of the iron-storage protein ferritin and upregulation of transferrin receptor 1 involved in iron uptake. Hepcidin is upregulated in Tmprss6(msk/msk) mouse retinas, particularly in the neural retina. BMP signaling is downregulated while interleukin-6 signaling is upregulated in Tmprss6(msk/msk) mouse retinas, suggesting that the upregulaton of hepcidin in knockout mouse retinas occurs through interleukin-6 signaling and not through BMP signaling.
The iron-regulatory serine protease matriptase-2 is expressed in the retina, and absence of this enzyme leads to iron deficiency and increased expression of hemojuvelin and hepcidin in the retina. The upregulation of hepcidin expression in Tmprss6(msk/msk) mouse retinas does not occur via BMP signaling but likely via the proinflammatory cytokine interleukin-6. We conclude that matriptase-2 is a critical participant in retinal iron homeostasis.
Matriptase-2(也称为TMPRSS6)是肝脏中铁调节激素铁调素的关键调节因子;Matriptase-2可切割膜结合型血色素沉着症相关蛋白(hemojuvelin),从而改变骨形态发生蛋白(BMP)信号传导。血色素沉着症相关蛋白和铁调素在视网膜中表达,并在视网膜铁稳态中发挥关键作用。然而,目前尚无关于Matriptase-2在视网膜中的表达和功能的信息。本研究的目的是检测Matriptase-2在视网膜中的表达及其在视网膜铁稳态中的作用。
采用逆转录聚合酶链反应(RT-PCR)、定量聚合酶链反应(qPCR)和免疫荧光法分析Matriptase-2及其他铁调节蛋白在小鼠视网膜中的表达。使用顶膜和基底外侧膜标记物评估Matriptase-2在视网膜色素上皮(RPE)中的极化定位。还对野生型和Matriptase-2基因敲除(Tmprss6(msk/msk))小鼠的视网膜进行了形态计量分析。通过比较野生型和基因敲除小鼠之间铁蛋白和转铁蛋白受体1的表达水平,评估Tmprss6(msk/msk)小鼠的视网膜铁状态。通过Smads1/5/8的磷酸化状态和Id1的表达水平监测BMP信号传导,同时通过STAT3的磷酸化状态监测白细胞介素-6信号传导。
Matriptase-2在小鼠视网膜中表达,在所有视网膜细胞类型中均可检测到。Matriptase-2的表达局限于RPE的顶膜,而血色素沉着症相关蛋白(Matriptase-2的底物)也存在于该部位。野生型小鼠和Tmprss6(msk/msk)小鼠的视网膜形态没有明显差异,只是在特定视网膜层存在微小差异。基因敲除小鼠的视网膜缺铁,表现为铁储存蛋白铁蛋白下调和参与铁摄取的转铁蛋白受体1上调。铁调素在Tmprss6(msk/msk)小鼠视网膜中上调,尤其是在神经视网膜中。在Tmprss6(msk/msk)小鼠视网膜中,BMP信号传导下调而白细胞介素-6信号传导上调,这表明基因敲除小鼠视网膜中铁调素的上调是通过白细胞介素-6信号传导而非BMP信号传导实现的。
铁调节丝氨酸蛋白酶Matriptase-2在视网膜中表达,该酶的缺失导致视网膜缺铁,并增加血色素沉着症相关蛋白和铁调素在视网膜中的表达。Tmprss6(msk/msk)小鼠视网膜中铁调素表达的上调不是通过BMP信号传导,而是可能通过促炎细胞因子白细胞介素-6实现的。我们得出结论,Matriptase-2是视网膜铁稳态的关键参与者。