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Expression profiling and immunolocalization of Na+-d-glucose-cotransporter 1 in mice employing knockout mice as specificity control indicate novel locations and differences between mice and rats

机译:Na +-d-葡萄糖-cotransporter 1在小鼠中的表达谱和免疫定位采用敲除小鼠作为特异性对照表明小鼠和大鼠之间存在新的位置和差异

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摘要

The expression and localization of sodium-d-glucose cotransporter SGLT1 (SLC5A1), which is involved in small intestinal glucose absorption and renal glucose reabsorption, is of high biomedical relevance because SGLT1 inhibitors are currently tested for antidiabetic therapy. In human and rat organs, detailed expression profiling of SGLT1/Sglt1 mRNA and immunolocalization of the transporter protein has been performed. Using polyspecific antibodies and preabsorption with antigenic peptide as specificity control, in several organs, different immunolocalizations of SGLT1/Sglt1 between human and rat were obtained. Because the preabsorption control does not exclude cross-reactivity with similar epitopes, some localizations remained ambiguous. In the present study, we performed an immunocytochemical localization of Sglt1 in various organs of mice. Specificities of the immunoreactions were evaluated using antibody preabsorption with the Sglt1 peptide and the respective organs of Sglt1 knockout mice. Because staining in some locations was abolished after antibody preabsorption but remained in the knockout mice, missing staining in knockout mice was used as specificity criterion. The immunolocalization in mouse was identical or similar to rat in many organs, including small intestine, liver, and kidney. However, the male-dominant renal Sglt1 protein expression in mice differed from the female-dominant expression in rats, and localization in lung, heart, and brain observed in rats was not detected in mice. In mice, several novel locations of Sglt1, e.g., in eyes, tongue epithelial cells, pancreatic ducts, prostate, and periurethral glands were detected. Using end-point and quantitative RT-PCR in various organs, different Sglt1 expression in mice and rats was confirmed.Electronic supplementary materialThe online version of this article (doi:10.1007/s00424-017-2056-1) contains supplementary material, which is available to authorized users.
机译:参与小肠葡萄糖吸收和肾葡萄糖重吸收的钠-d-葡萄糖共转运蛋白SGLT1(SLC5A1)的表达和定位具有高度的生物医学意义,因为目前已对SGLT1抑制剂进行了抗糖尿病治疗的测试。在人体和大鼠器官中,已经进行了SGLT1 / Sglt1 mRNA的详细表达谱分析和转运蛋白的免疫定位。使用多特异性抗体并用抗原肽预吸收作为特异性对照,在几个器官中,获得了人与大鼠之间SGLT1 / Sglt1的不同免疫定位。因为预吸收对照并未排除与相似表位的交叉反应性,所以某些定位仍然不明确。在本研究中,我们在小鼠的各个器官中进行了Sglt1的免疫细胞化学定位。使用Sglt1肽和Sglt1基因敲除小鼠的各个器官的抗体预吸收来评估免疫反应的特异性。由于抗体预吸收后某些位置的染色被消除,但保留在基因敲除小鼠中,因此将基因敲除小鼠中缺失的染色用作特异性标准。小鼠在许多器官(包括小肠,肝脏和肾脏)中的免疫定位与大鼠相同或相似。但是,小鼠中男性占主导地位的肾Sglt1蛋白表达与大鼠中女性占主导地位的表达不同,并且在小鼠中未观察到大鼠中肺,心脏和脑的定位。在小鼠中,检测到Sglt1的几个新位置,例如在眼睛,舌头上皮细胞,胰管,前列腺和尿道周围的腺体中。使用端点和定量RT-PCR在各个器官中,证实了Sglt1在小鼠和大鼠中的表达不同。电子补充材料本文的在线版本(doi:10.1007 / s00424-017-2056-1)包含补充材料,该材料是可供授权用户使用。

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