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4
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(a) Todd, A. C.; Wetmur, J. G.; Moline, J. M.; Godbold, J. H.; Levin, S. M.; Landrigan, P. J. Environ. Health Perspect. 1996, 104, 141-146.
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9
-
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0343100581
-
-
note
-
ALAD is also known as porphobilinogen synthase (PBGS).
-
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13
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Warren, M. J.; Cooper, J. B.; Wood, S. P.; Shoolingin-Jordan, P. M. Trends Biochem. Sci. 1998, 23, 217-221.
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14
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(a) Campagna, D.; Huel, G.; Girard, F.; Sahuquillo, J.; Blot, P. Toxicology 1999, 134, 143-152.
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Campagna, D.1
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15
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(b) Sithisarankul, P.; Weaver, V. M.; Davoli, C. T.; Strickland, P. T. Biomarkers 1999, 4, 281-289.
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16
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(c) Wetmur, J. G.; Lehnert, G.; Desnick, R. J. Environ. Res. 1991, 56, 109-119.
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Wetmur, J.G.1
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18
-
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0033546125
-
-
A class of magnesium dependent ALAD enzymes is also known. See ref 5 and Frankenberg, N.; Erskine, P. T.; Cooper, J. B.; Shoolingin-Jordan, P. M.; Jahn, D.; Heinz, D. W. J. Mol. Biol. 1999, 289, 591-602.
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Jahn, D.5
Heinz, D.W.6
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19
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0030733584
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(a) Erskine, P. T.; Senior, N.; Awan, S.; Lambert, R.; Lewis, G.; Tickle, L. J.; Sarwar, M.; Spencer, P.; Thomas, P.; Warren, M. J.; Shoolingin-Jordan, P. M.; Wood, S. P.; Cooper, J. B. Nat. Struct. Biol. 1997, 4, 1025-1031.
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Erskine, P.T.1
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Sarwar, M.7
Spencer, P.8
Thomas, P.9
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Shoolingin-Jordan, P.M.11
Wood, S.P.12
Cooper, J.B.13
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20
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0033528697
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(b) Erskine, P. T.; Norton, E.; Cooper, J. B.; Lambert, R.; Coker, A.; Lewis, G.; Spencer, P.; Sarwar, M.; Wood, S. P.; Warren, M. J.; Schoolingin-Jordan, P. M. Biochemistry 1999, 38, 4266-4276.
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Spencer, P.7
Sarwar, M.8
Wood, S.P.9
Warren, M.J.10
Schoolingin-Jordan, P.M.11
-
21
-
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0342666243
-
-
note
-
It should be noted that ALAD enzymes contain more than one type of metal binding site. For further discussion of structures of the various sites, see ref 5.
-
-
-
-
23
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29444451111
-
Probing of Proteins by Metal Ions and Their Low-Molecular-Weight Complexes
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Sigel. A., Sigel, H., Eds.; M. Dekker: New York, in press
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Parkin, G. Probing of Proteins by Metal Ions and Their Low-Molecular-Weight Complexes. In Metal Ions in Biological Systems; Sigel. A., Sigel, H., Eds.; M. Dekker: New York, 2000; Vol. 38, in press.
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Parkin, G.1
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Parkin, G.4
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25
-
-
0343972370
-
-
note
-
2 in MeCN and has been structurally characterized by X-ray diffraction. See Supporting Information.
-
-
-
-
26
-
-
0343923843
-
-
note
-
Furthermore, the Pb⋯Pb separation of 3.99 Å is significantly greater than twice the covalent radius of lead (3.08 Å).
-
-
-
-
27
-
-
0000518104
-
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II complexes, see: Shimoni-Livny, L.; Glusker, J. P.; Bock, C. W. Inorg. Chem. 1998, 37, 1853-1867.
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(a) Parr, J. Polyhedron 1997, 16, 551-566.
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Polyhedron
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Parr, J.1
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(a) Dean, P. A. W.; Vittal, J. J.; Payne, N. C. Inorg. Chem. 1984, 23, 4232-6.
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Dean, P.A.W.1
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(b) Christou, G.; Folting, K.; Huffman, J. C. Polyhedron 1984, 3, 1247-53.
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Christou, G.1
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32
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0000147617
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2] derivatives are polymeric. See, for example (a) Krebs, B.; Brommelhaus, A.; Kersting, B.; Nienhaus, M. Eur. J. Solid State Inorg. Chem. 1992, 29, 167-180.
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Krebs, B.1
Brommelhaus, A.2
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Nienhaus, M.4
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33
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0000056852
-
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(b) Rae, A. D.; Craig, D. C.; Dance, I. G.; Scudder, M. L.; Dean, P. A. W.; Kmetic, M. A.; Payne, N. C.; Vittal, J. J. Acta Crystallogr., Sect. B 1997, 53, 457-465.
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Rae, A.D.1
Craig, D.C.2
Dance, I.G.3
Scudder, M.L.4
Dean, P.A.W.5
Kmetic, M.A.6
Payne, N.C.7
Vittal, J.J.8
-
34
-
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0343923841
-
Cambridge Structural Database (version 5.18)
-
Cambridge Structural Database (version 5.18). 3D Search and Research Using the Cambridge Structural Database: Allen, F. H.; Kennard, O. Chemical Design Automation News 1993, 8 (1), pp 1, 31-37.
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3D Search and Research Using the Cambridge Structural Database
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35
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0002087304
-
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Cambridge Structural Database (version 5.18). 3D Search and Research Using the Cambridge Structural Database: Allen, F. H.; Kennard, O. Chemical Design Automation News 1993, 8 (1), pp 1, 31-37.
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Chemical Design Automation News
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Allen, F.H.1
Kennard, O.2
-
36
-
-
0343052165
-
-
note
-
Ph]Pb} [2.693(2) Å].
-
-
-
-
37
-
-
0000609585
-
-
Bock, C. W.; Katz, A. K.; Glusker, J. P. J. Am. Chem. Soc. 1995, 117, 3754-3763.
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Bock, C.W.1
Katz, A.K.2
Glusker, J.P.3
-
38
-
-
0343052167
-
-
note
-
"Hemidirected" geometries are those in which the ligands are distributed over only a portion of the coordination sphere, while "holodirected" geometries are those in which the ligands are distributed more evenly about the whole surface of the coordination sphere. See ref 18.
-
-
-
-
39
-
-
0343487978
-
-
note
-
-1 higher in energy than the tetrahedral structure. See ref 18.
-
-
-
-
41
-
-
0343923839
-
-
note
-
Zn to be determined.
-
-
-
-
43
-
-
0000591563
-
-
See, for example: Abudari, K.; Karpishin, T. B.; Raymond, K. N. Inorg. Chem. 1993, 32, 3052-3055.
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Abudari, K.1
Karpishin, T.B.2
Raymond, K.N.3
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