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      Evolution of heliobacteria: Implications for photosynthetic reaction center complexes

      Photosynthesis Research
      Springer Nature

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          A comprehensive set of sequence analysis programs for the VAX.

          The University of Wisconsin Genetics Computer Group (UWGCG) has been organized to develop computational tools for the analysis and publication of biological sequence data. A group of programs that will interact with each other has been developed for the Digital Equipment Corporation VAX computer using the VMS operating system. The programs available and the conditions for transfer are described.
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            Atomic model of plant light-harvesting complex by electron crystallography.

            The structure of the light-harvesting chlorophyll a/b-protein complex, an integral membrane protein, has been determined at 3.4 A resolution by electron crystallography of two-dimensional crystals. Two of the three membrane-spanning alpha-helices are held together by ion pairs formed by charged residues that also serve as chlorophyll ligands. In the centre of the complex, chlorophyll a is in close contact with chlorophyll b for rapid energy transfer, and with two carotenoids that prevent the formation of toxic singlet oxygen.
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              Compilation of small ribosomal subunit RNA structures.

              The database on small ribosomal subunit RNA structure contained 1804 nucleotide sequences on April 23, 1993. This number comprises 365 eukaryotic, 65 archaeal, 1260 bacterial, 30 plastidial, and 84 mitochondrial sequences. These are stored in the form of an alignment in order to facilitate the use of the database as input for comparative studies on higher-order structure and for reconstruction of phylogenetic trees. The elements of the postulated secondary structure for each molecule are indicated by special symbols. The database is available on-line directly from the authors by ftp and can also be obtained from the EMBL nucleotide sequence library by electronic mail, ftp, and on CD ROM disk.
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                Author and article information

                Journal
                Photosynthesis Research
                Photosynth Res
                Springer Nature
                0166-8595
                1573-5079
                July 1994
                July 1994
                : 41
                : 1
                : 285-294
                Article
                10.1007/BF02184169
                f4432076-73a5-4f5b-b379-19a840fb79e2
                © 1994
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