首页> 美国卫生研究院文献>Journal of the Endocrine Society >OR09-05 Expression of SLC35F1 in the Plasma Membrane of Cells of Aldosterone Producing Cell Clusters (APCCs) and Its Possible Role in Aldosterone Synthesis
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OR09-05 Expression of SLC35F1 in the Plasma Membrane of Cells of Aldosterone Producing Cell Clusters (APCCs) and Its Possible Role in Aldosterone Synthesis

机译:OR09-05 SLC35F1在醛固酮产生细胞簇(APCC)的细胞膜中的表达及其在醛固酮合成中的作用

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摘要

Background Genetic mutations and histological appearances suggest that APCCs are precursors to some aldosterone producing adenomas (APA). They are hypothesised to contribute to post-operative non-cure and recurrence of primary aldosteronism (PA) but are currently undetectable pre-operatively. SLC35F1 is a possible nucleotide sugar transporter. On microarray it is highly expressed in APCCs, but not in the rest of the adrenal cortex (1). Our aim was to investigate the role of SLC35F1 in APCCs, determine its subcellular localisation and establish whether expression is consistent with pathological APCC subtypes (as suggested by recent evidence from in situ metabolomic studies (2)). Methods Comparative bioinformatic analysis of the SLC35F1 amino acid sequence was carried out. Ex vivo 4uM adrenal sections, from 6 PA patients in the MATCH study, were stained on serial sections with anti-CYP11B2 (Gomez-Sanchez) or anti-SLC35F1 (Novus NBP1-86755). In vitro, H295R cells were transfected with SLC35F1 cDNA. Subcellular localisation of SLC35F1-GFP was studied by comparison to organelle markers (golgin 97, RAB11, wheat germ agglutinin, calnexin and Tom20) using confocal microscopy. Overexpression and siRNA knock-down in H295R cells was correlated to aldosterone production. Results SLC35F1 is a decamembrane-spanning transporter molecule predicted to have a negatively charged pocket in the substrate binding site, implying a transport substrate with a positive charge. Strong staining of CYP11B2 in clusters of cells in adrenal cortex, consistent with APCCs, were present in all six adrenal glands (25 APCCs). Serial sections showed specific SLC35F1 staining of APCCs, in cytoplasm and plasma membrane. SLC35F1 staining was absent from normal cortex. 12 APCCs (48%) were SLC35F1-negative. Visualisation of transiently expressed SLC35F1 demonstrated localisation to the endoplasmic reticulum in H295R cells (Pearson’s coefficient r=0.758) with no plasma membrane localisation (r=-0.07). Preliminary transfection data suggest direct involvement in aldosterone production. Conclusions Expression of SLC35F1 in the plasma membrane and cytosol of APCC cells supports a role in pathological aldosterone production by APCCs. The inferred transport substrate of SLC35F1 is the NAD(P)(H) precursor, nicotinamide riboside, a positively-charged nucleotide sugar. If confirmed, the essential requirement for NAD(P)H in steroidogenesis, and heterogeneity of SLC35F1-staining in APCCs, is consistent with a metabolically active, possibly pathological, subtype of APCCs. Detection of SLC35F1 in vivo may therefore facilitate sub-classification of PA patients.
机译:背景基因突变和组织学露面建议APCCs前体的一些醛固酮产生腺瘤(APA)。他们假设的促进手术后的非固化和原发性醛固酮增多症(PA)的复发,但目前检测不到手术前。 SLC35F1是一个可能的核苷酸糖转运。在芯片它在APCCs高表达,而不是在肾上腺皮质(1)的其余部分。我们的目的是调查SLC35F1的APCCs的作用,决定了其亚细胞定位,并建立表达是否与病理亚型APCC一致(如最近的证据从原位代谢研究(2)建议)。方法的比较的SLC35F1氨基酸序列的生物信息学分析进行。离体4UM肾上腺部分,从6名PA患者在研究MATCH,染色上用抗CYP11B2(Gomez的桑切斯)或抗SLC35F1(Novus公司NBP1-86755)连续切片。在体外,H295R细胞用SLC35F1 cDNA转。 SLC35F1-GFP的亚细胞定位通过比较使用共聚焦显微镜的细胞器标记物(golgin 97,RAB11,小麦胚芽凝集素,钙联接蛋白和TOM20)研究。表达和siRNA击倒在H295R细胞相关醛固酮生产。结果是SLC35F1预测具有在底物结合位点的带负电荷的口袋,意味着传输基板与正电荷的decamembrane跨度转运分子。在细胞在肾上腺皮质,用APCCs一致的簇CYP11B2的强染色,存在于所有六个肾上腺(25个APCCs)。连续切片显示APCCs的特定SLC35F1染色,在细胞质和细胞膜。 SLC35F1染色与正常皮质缺席。 12个APCCs(48%)为SLC35F1阴性。瞬时表达SLC35F1的可视化显示出定位在H295R细胞内质网(皮尔森系数r = 0.758),无质膜定位性(r = -0.07)。初步转染数据表明醛固酮生产直接参与。在APCC细胞的质膜和胞质溶胶SLC35F1的结论表达支持病理醛固酮产生由APCCs的作用。 SLC35F1的推断传输基板是NAD(P)(H)的前体,烟酰胺核糖核苷,带正电荷的核苷酸糖。如果得到确认,对于NAD的SLC35F1-染色在APCCs基本要求(P)H在类固醇生成,和异质性,是具有APCCs的代谢活性,可能是病理性的,亚型相一致。因此,在体内SLC35F1的检测可以促进PA患者的子分类。

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