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T. , “Structure-based assign- hydrolyze GTI? In these studies, we have shown that “MAD experiments can lead to very rapid protein structure determination. Furthermore, in the case of ment of the biochemical flmction of a hypothetical protein: A test case of structural genomics,” Proc. Natl. 15,15189-15193 (1998). MJ0577, the three-dimensional structure of an 32 unknown protein has provided direct information *present address: Gyeongsang National University, for fimcrional (biochemical) assignment.

Department of Energy, Oflice of Biological and Environmental Research. 30 Science Hiehli~hts I I Environmental and Earth Sciences BilOSCil ENICES U: PROTIEUINI CFlY$3TALlL0GlRAlF’ lXIY Structural Genomics of M. mctions. mctions derivable tive indicator of itsj%z-tion. k,protein struc- from mutational studies, transcription tracking, turesare ckzu$abh in tem translation tracking, and interaction tracking. ofa$niteset offoh To this end, we are using the Macromolecular associatedwith a smai[lirt offinti”ons.

0. , “Photoelectron spectroscopy superimposed neon photoemission spectra taken with the “magic-angle” other analyzers, not (black). , “Beyond the dipole approxi- mation: Angular-distribution effects in valence Time of Flight (ns) the scaled to each other by using neon KLLAuger lines. The intensity differences between 42 O. Hemmers, I? L. Hansen, H. Wang, and the dipole approximation, ” Synchz Rad. News 9 (6),40 (1996) and erratum 10 (3), 21 (1997). 0. , “High-resolution electron- the 2s and 2p photoemission peaks are due to nondipole time-of-flight apparatus for the soft-x-ray region,” effects.

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