Morgner Nina, Zickermann Volker, Kerscher Stefan, Wittig Ilka, Abdrakhmanova Albina, Barth Hans-Dieter, Brutschy Bernhard, Brandt Ulrich
Institute of Physical and Theoretical Chemistry, Johann Wolfgang Goethe-Universität, Frankfurt am Main, Germany.
Biochim Biophys Acta. 2008 Oct;1777(10):1384-91. doi: 10.1016/j.bbabio.2008.08.001. Epub 2008 Aug 15.
We have employed laser induced liquid bead ion desorption (LILBID) mass spectrometry to determine the total mass and to study the subunit composition of respiratory chain complex I from Yarrowia lipolytica. Using 5-10 pmol of purified complex I, we could assign all 40 known subunits of this membrane bound multiprotein complex to peaks in LILBID subunit fingerprint spectra by comparing predicted protein masses to observed ion masses. Notably, even the highly hydrophobic subunits encoded by the mitochondrial genome were easily detectable. Moreover, the LILBID approach allowed us to spot and correct several errors in the genome-derived protein sequences of complex I subunits. Typically, the masses of the individual subunits as determined by LILBID mass spectrometry were within 100 Da of the predicted values. For the first time, we demonstrate that LILBID spectrometry can be successfully applied to a complex I band eluted from a blue-native polyacrylamide gel, making small amounts of large multiprotein complexes accessible for subunit mass fingerprint analysis even if they are membrane bound. Thus, the LILBID subunit mass fingerprint method will be of great value for efficient proteomic analysis of complex I and its assembly intermediates, as well as of other water soluble and membrane bound multiprotein complexes.
我们采用激光诱导液滴离子解吸(LILBID)质谱法来测定总质量,并研究解脂耶氏酵母呼吸链复合体I的亚基组成。使用5 - 10皮摩尔纯化的复合体I,通过将预测的蛋白质质量与观察到的离子质量进行比较,我们能够将这个膜结合多蛋白复合体的所有40个已知亚基与LILBID亚基指纹图谱中的峰进行匹配。值得注意的是,即使是线粒体基因组编码的高度疏水亚基也很容易检测到。此外,LILBID方法使我们能够发现并纠正复合体I亚基的基因组衍生蛋白质序列中的几个错误。通常,通过LILBID质谱法测定的各个亚基的质量与预测值相差在100道尔顿以内。我们首次证明,LILBID光谱法可以成功应用于从蓝色天然聚丙烯酰胺凝胶上洗脱的复合体I条带,即使是膜结合的少量大型多蛋白复合体也可用于亚基质量指纹分析。因此,LILBID亚基质量指纹方法对于复合体I及其组装中间体以及其他水溶性和膜结合多蛋白复合体的高效蛋白质组学分析具有重要价值。