Establishment of a two-dimensional electrophoresis map of human mitochondrial proteins
نویسندگان
چکیده
Mitochondrial disorders are multisystem diseases that can be caused by any defect in the energy (ATP) generating pathways in the mitochondria. The difficulty in diagnosing mitochondrial diseases on the molecular level arises from several obstacles: (A) About 1000 genes are involved in the biogenesis of mitochondria. The dysfunction of each of them may potentially cause mitochondriopathy. (B) The mitochondrial proteins are encoded by two genomes: the mitochondrial DNA and the nuclear DNA. (C) The clinical symptoms of the patients rarely suggest a molecular diagnosis since in most cases, the phenotype is a secondary phenomenon to energy depletion. Generally there is no genotype-phenotype relation. Based on current diagnostic methods in only 20% of the patients a mutation can be found. We therefore wanted to develop a new screening method by which we hope to increase the identification rate. Since the numerous proteins of an organelle or of a whole cell (its “proteome”) connect the genotype with the phenotype, we set out to study the proteome of the mitochondrion in healthy individuals and in patients with mitochondrial diseases. Deviating protein patterns between the two individuals could direct the attention to disease-specific proteins and genes, which might be involved in the expression of a disease-phenotype. In order to perform such a comparison I first had to establish a normal reference map. In my dissertation project I performed this basic task and identified numerous mitochondrial proteins on the proteomemap of human mitochondria, which had been extracted from lymphoblastoid cells. I selected Epstein-Barr-Virus-transformed lymphoblastoid cells as samples not only because they are easily obtained from patients, but also due to their potential permanent growth. This approach allows the cultivation of high cell numbers without excessive expenditure of work and cost. I optimized a protocol for hybrid gradient centrifugation, by which enough mitochondria can be purified from 10 cells. I used a cultured lymphoblastoid cell line from a normal control patient and isolated mitochondria from it by using hybrid gradient centrifugation. In proteomics the combination of the high-resolution two-dimensional electrophoresis and matrix assisted laser desorption/ionization–time–of–flight–mass spectrometry (MALDI-TOF-MS) is currently the method of choice for protein identification. I detected more than 400 spots in a silver-stained two-dimensional gel. I analyzed the 141 strongest spots of it by trypsin in gel digestion and subsequent MALDI-TOF mass spectrometry in a process termed “peptide mass fingerprinting”. After database search, I finally identified 115 protein spots (corresponding to
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تاریخ انتشار 2003