CCDC158:通过外显子组测序和相互作用组分析揭示肾近曲小管内吞过程中的新型调节因子

IF 4.5 2区 生物学 Q2 CELL BIOLOGY Journal of Cellular Physiology Pub Date : 2024-09-25 DOI:10.1002/jcp.31447
Tjessa Bondue, Francesca Cervellini, Bart Smeets, Sergei V. Strelkov, Flore Horuz-Engels, Koenraad Veys, Rosa Vargas-Poussou, Maria Antonietta De Matteis, Leopoldo Staiano, Lambertus van den Heuvel, Elena Levtchenko
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引用次数: 0

摘要

肾近曲小管对蛋白质和多肽的重吸收受到多种配体受体的协同作用的严格调控,这些配体受体随后从克拉氏蛋白包被的小孔进入早期/回收和晚期内体,最后进入溶酶体。我们对一名来自近亲结婚家庭的男性患者进行了全外显子组测序,该患者表现为中低分子量蛋白尿、肾钙化和少精症。我们发现了肾小管内吞过程中的一个新的潜在参与者--含有盘绕线圈结构域的 158(CCDC158)。CCDC158 的变异与表型分离,在一个具有类似临床肾脏表型的女性同胞中也检测到了这种变异。我们证实了该蛋白在肾小管中的表达,并对其结构进行了硅学建模。我们假设该蛋白通过与其他内吞调节因子相互作用而在肾小管内吞过程中发挥作用,并使用质谱法鉴定了潜在的相互作用因子。在患者来源的近端肾小管上皮细胞中进行的转铁蛋白和 GST-RAP 转运分析进一步证实了 CCDC158 在受体介导的内吞作用中的作用。最后,由于已知 CCDC158 在睾丸中表达,男性同胞出现少精子症进一步证实了所检测到的错义变异在所观察到的表型中的致病作用。在这项研究中,我们提供的数据证明了 CCDC158 在受体介导的内吞过程中的潜在作用,它很可能是通过与其他内吞相关蛋白的相互作用而发挥作用的,这些蛋白与在患者身上观察到的近端肾小管功能障碍表型密切相关。然而,要完全揭示 CCDC158 参与其中的分子机制,还需要进行更多的研究。
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CCDC158: A novel regulator in renal proximal tubular endocytosis unveiled through exome sequencing and interactome analysis

Renal proximal tubular reabsorption of proteins and polypeptides is tightly regulated by a concerted action of the multi-ligand receptors with subsequent processing from the clathrin-coated pits to early/recycling and late endosomes and towards lysosomes. We performed whole exome-sequencing in a male patient from a consanguineous family, who presented with low- and intermediate molecular weight proteinuria, nephrocalcinosis and oligospermia. We identified a new potential player in tubular endocytosis, coiled-coil domain containing 158 (CCDC158). The variant in CCDC158 segregated with the phenotype and was also detected in a female sibling with a similar clinical kidney phenotype. We demonstrated the expression of this protein in kidney tubules and modeled its structure in silico. We hypothesized that the protein played a role in the tubular endocytosis by interacting with other endocytosis regulators, and used mass spectrometry to identify potential interactors. The role of CCDC158 in receptor-mediated endocytosis was further confirmed by transferrin and GST-RAP trafficking analyses in patient-derived proximal tubular epithelial cells. Finally, as CCDC158 is known to be expressed in the testis, the presence of oligospermia in the male sibling further substantiated the pathogenic role of the detected missense variant in the observed phenotype. In this study, we provide data that demonstrate the potential role of CCDC158 in receptor-mediated endocytosis, most likely by interaction with other endocytosis-related proteins that strongly correlate with the proximal tubular dysfunction phenotype as observed in the patients. However, more studies are needed to fully unravel the molecular mechanism(s) in which CCDC158 is involved.

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来源期刊
CiteScore
14.70
自引率
0.00%
发文量
256
审稿时长
1 months
期刊介绍: The Journal of Cellular Physiology publishes reports of high biological significance in areas of eukaryotic cell biology and physiology, focusing on those articles that adopt a molecular mechanistic approach to investigate cell structure and function. There is appreciation for the application of cellular, biochemical, molecular and in vivo genetic approaches, as well as the power of genomics, proteomics, bioinformatics and systems biology. In particular, the Journal encourages submission of high-interest papers investigating the genetic and epigenetic regulation of proliferation and phenotype as well as cell fate and lineage commitment by growth factors, cytokines and their cognate receptors and signal transduction pathways that influence the expression, integration and activities of these physiological mediators. Similarly, the Journal encourages submission of manuscripts exploring the regulation of growth and differentiation by cell adhesion molecules in addition to the interplay between these processes and those induced by growth factors and cytokines. Studies on the genes and processes that regulate cell cycle progression and phase transition in eukaryotic cells, and the mechanisms that determine whether cells enter quiescence, proliferate or undergo apoptosis are also welcomed. Submission of papers that address contributions of the extracellular matrix to cellular phenotypes and physiological control as well as regulatory mechanisms governing fertilization, embryogenesis, gametogenesis, cell fate, lineage commitment, differentiation, development and dynamic parameters of cell motility are encouraged. Finally, the investigation of stem cells and changes that differentiate cancer cells from normal cells including studies on the properties and functions of oncogenes and tumor suppressor genes will remain as one of the major interests of the Journal.
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