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维生素 B₁₂ 依赖性变化在小鼠脊髓中维生素 B₁₂ 相关蛋白和表皮生长因子系统的表达。

Vitamin B₁₂ dependent changes in mouse spinal cord expression of vitamin B₁₂ related proteins and the epidermal growth factor system.

机构信息

Department of Clinical Biochemistry, Aarhus University Hospital, Norrebrogade 44, DK-8000 Aarhus, Denmark.

出版信息

Brain Res. 2013 Mar 29;1503:1-6. doi: 10.1016/j.brainres.2013.01.050. Epub 2013 Feb 8.

Abstract

Chronic vitamin B12 (cobalamin) deficiency in the mammalian central nervous system causes degenerative damage, especially in the spinal cord. Previous studies have shown that cobalamin status alters spinal cord expression of epidermal growth factor (EGF) and its receptor in rats. Employing a mouse model of cobalamin-depletion and loading, we have explored the influence of Cbl status on spinal cord expression of cobalamin related proteins, as well as all four known EGF receptors and their activating ligands. Following four weeks of osmotic minipump infusion (n=7 in each group) with cobinamide (4.25nmol/h), saline or cobalamin (1.75nmol/h) the spinal cords were analyzed for cobalamin and for the mRNA levels of cobalamin related proteins and members of the EGF system using quantitative reverse transcription PCR. The median spinal cord cobalamin content was 17, 32, and 52pmol/gr of tissues in cobinamide, saline, and cobalamin treated animals, respectively. Both cobinamide and cobalamin induced a significant decrease in the expression of the lysosomal membrane cobalamin transporter. All four EGF receptors and their activating ligands, except for EGF, were expressed in the spinal cord. Notably, the expression of one of the EGF receptors, HER3, and the ligands heparin-binding EGF-like growth factor, transforming growth factor-α, and neuregulins 1α was increased in cobalamin treated mice. Our studies show that four weeks treatment of mice with cobinamide induces spinal cord cobalamin depletion and that cobalamin loading induces an altered expression pattern of the EGF system thus confirming a spinal cord cross talk between Cbl and the EGF system.

摘要

哺乳动物中枢神经系统慢性维生素 B12(钴胺素)缺乏会导致退行性损伤,尤其是在脊髓中。先前的研究表明,钴胺素状态会改变大鼠脊髓中表皮生长因子(EGF)及其受体的表达。本研究采用钴胺素耗竭和加载的小鼠模型,探索了 Cbl 状态对脊髓中钴胺素相关蛋白以及所有四种已知 EGF 受体及其激活配体表达的影响。在为期四周的渗透微型泵输注(每组 n=7)中,分别给予钴胺酰胺(4.25nmol/h)、生理盐水或钴胺素(1.75nmol/h),然后使用定量逆转录 PCR 分析脊髓中的钴胺素以及钴胺素相关蛋白和 EGF 系统成员的 mRNA 水平。钴胺酰胺、生理盐水和钴胺素处理动物的脊髓中钴胺素含量中位数分别为 17、32 和 52pmol/g 组织。钴胺酰胺和钴胺素均显著降低了溶酶体膜钴胺素转运蛋白的表达。除了 EGF 之外,所有四种 EGF 受体及其激活配体均在脊髓中表达。值得注意的是,在钴胺素处理的小鼠中,一种 EGF 受体 HER3 及其配体肝素结合 EGF 样生长因子、转化生长因子-α和神经调节蛋白 1α的表达增加。我们的研究表明,用钴胺酰胺治疗小鼠四周会导致脊髓钴胺素耗竭,而钴胺素加载会导致 EGF 系统的表达模式发生改变,从而证实了 Cbl 和 EGF 系统之间的脊髓交叉对话。

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