Hornemann Thorsten, Wei Yu, von Eckardstein Arnold
Institute for Clinical Chemistry, University Hospital Zurich, Rämistrasse 100, CH-8091 Zürich, Switzerland.
Biochem J. 2007 Jul 1;405(1):157-64. doi: 10.1042/BJ20070025.
SPT (serine palmitoyltransferase) catalyses the rate-limiting step for the de novo synthesis of sphingolipids. Mammalian SPT is believed to be a heterodimer composed of two subunits, SPTLC1 and SPTLC2. We reported previously the identification of a new third SPT subunit, SPTLC3. In the present study, we have investigated the structure of the SPT complex in more detail. Pull-down assays with antibodies against SPTLC3 concomitantly co-precipitated SPTLC1 and SPTLC2 in human placenta extracts and SPTLC3 overexpressing human embryonic kidney-293 cells. By size exclusion chromatography, we determined the molecular mass of the functional SPT complex to be approx. 480 kDa. By Blue-native-PAGE experiments we demonstrated that all three SPT subunits (SPTLC1-3) are co-localized within a single SPT complex. On the basis of these results we conclude that the functional SPT is not a dimer, but a higher organized complex, composed of three distinct subunits (SPTLC1, SPTLC2 and SPTLC3) with a molecular mass of 480 kDa. The stoichiometry of SPTLC2 and SPTLC3 in this complex seems not to be fixed and is probably changed dynamically in dependence of the tissue specific SPTLC2 and SPTLC3 expression levels. Based on our own and earlier published data we propose a model of an octameric SPT structure. The observed dynamic composition of the SPT complex could provide a cellular mechanism to adjust SPT activity to tissue specific requirements in sphingolipid synthesis.
丝氨酸棕榈酰转移酶(SPT)催化鞘脂从头合成的限速步骤。哺乳动物的SPT被认为是由两个亚基SPTLC1和SPTLC2组成的异二聚体。我们之前报道了一种新的第三个SPT亚基SPTLC3的鉴定。在本研究中,我们更详细地研究了SPT复合物的结构。用抗SPTLC3抗体进行的下拉实验在人胎盘提取物和过表达SPTLC3的人胚肾293细胞中同时共沉淀了SPTLC1和SPTLC2。通过尺寸排阻色谱法,我们确定功能性SPT复合物的分子量约为480 kDa。通过蓝色天然聚丙烯酰胺凝胶电泳实验,我们证明所有三个SPT亚基(SPTLC1 - 3)共定位于单个SPT复合物中。基于这些结果,我们得出结论,功能性SPT不是二聚体,而是一种更高层次组织的复合物,由三个不同的亚基(SPTLC1、SPTLC2和SPTLC3)组成,分子量为480 kDa。该复合物中SPTLC2和SPTLC3的化学计量似乎不是固定的,可能会根据组织特异性的SPTLC2和SPTLC3表达水平动态变化。基于我们自己和早期发表的数据,我们提出了一个八聚体SPT结构模型。观察到的SPT复合物的动态组成可能提供一种细胞机制,以根据鞘脂合成中的组织特异性需求来调节SPT活性。