Gopalakrishnan Kathirvel, Kumarasamy Sivarajan, Yan Yanling, Liu Jiang, Kalinoski Andrea, Kothandapani Anbarasi, Farms Phyllis, Joe Bina
Center for Hypertension and Personalized Medicine, University of Toledo College of Medicine and Life Sciences Toledo, OH, USA.
Front Genet. 2012 Aug 8;3:138. doi: 10.3389/fgene.2012.00138. eCollection 2012.
Cell surface proteins are internalized into the cell through endocytosis and either degraded within lysosomes or recycled back to the plasma membrane. While perturbations in endosomal internalization are known to modulate renal function, it is not known whether similar alterations in recycling affect renal function. Rififylin is a known regulator of endocytic recycling with E3 ubiquitin protein ligase activity. In this study, using two genetically similar strains, the Dahl Salt-sensitive rat and an S.LEW congenic strain, which had allelic variants within a < 330 kb segment containing rififylin, we tested the hypothesis that alterations in endosomal recycling affect renal function. The congenic strain had 1.59-fold higher renal expression of rififylin. Transcriptome analysis indicated that components of both endocytosis and recycling were upregulated in the congenic strain. Transcription of Atp1a1 and cell surface content of the protein product of Atp1a1, the alpha subunit of Na(+)K(+)ATPase were increased in the proximal tubules from the congenic strain. Because rififylin does not directly regulate endocytosis and it is also a differentially expressed gene within the congenic segment, we reasoned that the observed alterations in the transcriptome of the congenic strain constitute a feedback response to the primary functional alteration of recycling caused by rififylin. To test this, recycling of transferrin was studied in isolated proximal tubules. Recycling was significantly delayed within isolated proximal tubules of the congenic strain, which also had a higher level of polyubiquitinated proteins and proteinuria compared with S. These data provide evidence to suggest that delayed endosomal recycling caused by excess of rififylin indirectly affects endocytosis, enhances intracellular protein polyubiquitination and contributes to proteinuria.
细胞表面蛋白通过内吞作用被内化到细胞内,然后在溶酶体内被降解或循环回到质膜。虽然已知内体内化的扰动会调节肾功能,但尚不清楚回收过程中类似的改变是否会影响肾功能。利菲菲林是一种已知的具有E3泛素蛋白连接酶活性的内吞循环调节剂。在本研究中,我们使用了两种基因相似的品系,即 Dahl 盐敏感大鼠和 S.LEW 同源品系,它们在一个小于 330 kb 的包含利菲菲林的片段内具有等位基因变体,我们检验了内体循环改变会影响肾功能的假设。同源品系中利菲菲林的肾脏表达高 1.59 倍。转录组分析表明,内吞和循环的成分在同源品系中均上调。同源品系近端小管中 Atp1a1 的转录以及 Na(+)K(+)ATP 酶α亚基 Atp1a1 蛋白产物的细胞表面含量增加。由于利菲菲林不直接调节内吞作用,并且它也是同源片段内差异表达的基因,我们推断同源品系转录组中观察到的改变是对利菲菲林引起的循环主要功能改变的反馈反应。为了验证这一点,我们在分离的近端小管中研究了转铁蛋白的循环。同源品系分离的近端小管中的循环明显延迟,与 S 品系相比,其多泛素化蛋白水平和蛋白尿水平也更高。这些数据提供了证据表明,利菲菲林过量导致的内体循环延迟间接影响内吞作用,增强细胞内蛋白多泛素化并导致蛋白尿。