Stein Merle, Dütting Sebastian, Mougiakakos Dimitrios, Bösl Michael, Fritsch Kristin, Reimer Dorothea, Urbanczyk Sophia, Steinmetz Tobit, Schuh Wolfgang, Bozec Aline, Winkler Thomas H, Jäck Hans-Martin, Mielenz Dirk
Department of Internal Medicine 3, Division of Molecular Immunology, Nikolaus-Fiebiger-Center, Friedrich-Alexander-University of Erlangen-Nuremberg, Erlangen, Germany.
Department of Internal Medicine V, University Clinic, Friedrich-Alexander-University of Erlangen-Nuremberg, Erlangen, Germany.
Cell Death Differ. 2017 Jul;24(7):1239-1252. doi: 10.1038/cdd.2017.52. Epub 2017 May 19.
B-cell development in the bone marrow comprises proliferative and resting phases in different niches. We asked whether B-cell metabolism relates to these changes. Compared to pro B and small pre B cells, large pre B cells revealed the highest glucose uptake and ROS but not mitochondrial mass, whereas small pre B cells exhibited the lowest mitochondrial membrane potential. Small pre B cells from Rag1;33.C9 μ heavy chain knock-in mice revealed decreased glycolysis (ECAR) and mitochondrial spare capacity compared to pro B cells from Rag1 mice. We were interested in the step regulating this metabolic switch from pro to pre B cells and uncovered that Swiprosin-2/EFhd1, a Ca-binding protein of the inner mitochondrial membrane involved in Ca-induced mitoflashes, is expressed in pro B cells, but downregulated by surface pre B-cell receptor expression. Knockdown and knockout of EFhd1 in 38B9 pro B cells decreased the oxidative phosphorylation/glycolysis (OCR/ECAR) ratio by increasing glycolysis, glycolytic capacity and reserve. Prolonged expression of EFhd1 in EFhd1 transgenic mice beyond the pro B cell stage increased expression of the mitochondrial co-activator PGC-1α in primary pre B cells, but reduced mitochondrial ATP production at the pro to pre B cell transition in IL-7 cultures. Transgenic EFhd1 expression caused a B-cell intrinsic developmental disadvantage for pro and pre B cells. Hence, coordinated expression of EFhd1 in pro B cells and by the pre BCR regulates metabolic changes and pro/pre B-cell development.
骨髓中的B细胞发育在不同的微环境中包括增殖期和静止期。我们探究了B细胞代谢是否与这些变化相关。与前B细胞和小前B细胞相比,大前B细胞显示出最高的葡萄糖摄取和活性氧水平,但线粒体质量无差异,而小前B细胞表现出最低的线粒体膜电位。与Rag1小鼠的前B细胞相比,Rag1;33.C9 μ重链敲入小鼠的小前B细胞显示糖酵解(细胞外酸化率)和线粒体备用能力降低。我们对调节从前B细胞到前B细胞这种代谢转换的步骤感兴趣,并发现Swiprosin-2/EFhd1,一种参与钙诱导线粒体闪烁的线粒体内膜钙结合蛋白,在前B细胞中表达,但在表面前B细胞受体表达时被下调。在38B9前B细胞中敲低和敲除EFhd1通过增加糖酵解、糖酵解能力和储备来降低氧化磷酸化/糖酵解(耗氧率/细胞外酸化率)比值。在EFhd1转基因小鼠中,EFhd1在前B细胞阶段之后的持续表达增加了原代前B细胞中线粒体共激活因子PGC-1α的表达,但在IL-7培养条件下,从前B细胞到前B细胞转变时线粒体ATP产生减少。转基因EFhd1表达对前B细胞和前B细胞造成了B细胞内在的发育劣势。因此,EFhd1在前B细胞中的协调表达以及前B细胞受体调节代谢变化和前B细胞/前B细胞发育。