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Titlebook: Biological Chemistry of Organelle Formation; 31. Colloquium, 14.- Th. Bücher,W. Sebald,H. Weiss Conference proceedings 1980 Springer-Verlag

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期刊全称Biological Chemistry of Organelle Formation
期刊简称31. Colloquium, 14.-
影响因子2023Th. Bücher,W. Sebald,H. Weiss
视频video
学科分类Colloquium der Gesellschaft für Biologische Chemie in Mosbach Baden
图书封面Titlebook: Biological Chemistry of Organelle Formation; 31. Colloquium, 14.- Th. Bücher,W. Sebald,H. Weiss Conference proceedings 1980 Springer-Verlag
影响因子Eukaryotic cells contain a plurality of organelles distinguished by their specific membranes and contents. Their biogenesis occurs by growth and division of preexisting structures rather than de novo. Mitochondria and chloroplasts, which appear to be descended from prokaryotic ancestors, have retained some DNA and the biosynthetic capability for its expression. They synthesize, however, only a few of their proteins themselves. Most of their proteins are synthesized on free ribosomes in the cytoplasm and are only assembled in the correct membrane after synthesis is complete. The biogenesis of peroxisomes and glyoxysomes also appears to occur by an incorporation of proteins synthesized first in the cytoplasm. Other organelles, the Golgi complex, lysosomes, secretory vesicles, and the plasma membrane, are formed in a different manner. Their proteins are assembled in the membrane of the endoplasmic reticulum during trans­ lation by bound ribosomes and they must then be transported to the correct membrane. The 1980 Mosbach Colloquium was one of the first attempts to discuss the biogenesis of the various organelles in biochemical terms. This was appropriate since the crucial problems now
Pindex Conference proceedings 1980
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,Lebensführung und Konzeptionschancen,nd mitochondria this reaction cycle probably developed to photosynthesis and respiration. However, it was not prokaryotes which made the most successful use of these achievements but the eukaryotic cell with its superior genetic capabilities.
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Structure and Nucleotide Sequence of the Cytochrome B Gene in Yeast Mitochondrial DNA,l (Weiss and Ziganke, 1974) and mammalian (VonJagow et al., 1978) sources, the relationship of the purified protein to cytochromes b. and b. has not been satisfactorily resolved and until recently it was not clear whether they represent two different or a single heme protein.
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Individuelle Therapieentscheidung,gated. (This information is supplied thoroughly by the proceedings of recent symposia.) Rather, an attempt has been made to survey a selected number of experimental works of exemplary character and subject them to a critical appraisal.
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The Optional Introns in Yeast Mitochondrial DNA,resent knowledge of the nature of the large insertions/deletions in yeast mtDNA, discovered by Sanders et al. (1977) in our lab. In the last part I shall briefly compare some of the common and uncommon features of mitochondrial biogenesis in fungi, protozoa, animal cells, and plants.
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