Year |
Citation |
Score |
2003 |
Treves K, Traub W, Weiner S, Addadi L. Aragonite Formation in the Chiton (Mollusca) Girdle Helvetica Chimica Acta. 86: 1101-1112. DOI: 10.1002/Hlca.200390096 |
0.341 |
|
2000 |
Beniash E, Traub W, Veis A, Weiner S. A transmission electron microscope study using vitrified ice sections of predentin: structural changes in the dentin collagenous matrix prior to mineralization. Journal of Structural Biology. 132: 212-25. PMID 11243890 DOI: 10.1006/Jsbi.2000.4320 |
0.352 |
|
1999 |
Weiner S, Traub W, Wagner HD. Lamellar bone: structure-function relations. Journal of Structural Biology. 126: 241-55. PMID 10475685 DOI: 10.1006/Jsbi.1999.4107 |
0.318 |
|
1997 |
Weiner S, Arad T, Sabanay I, Traub W. Rotated plywood structure of primary lamellar bone in the rat: orientations of the collagen fibril arrays. Bone. 20: 509-14. PMID 9177863 DOI: 10.1016/S8756-3282(97)00053-7 |
0.352 |
|
1996 |
Ziv V, Sabanay I, Arad T, Traub W, Weiner S. Transitional structures in lamellar bone. Microscopy Research and Technique. 33: 203-13. PMID 8845519 DOI: 10.1002/(Sici)1097-0029(19960201)33:2<203::Aid-Jemt10>3.0.Co;2-Y |
0.364 |
|
1994 |
Traub W, Arad T, Vetter U, Weiner S. Ultrastructural studies of bones from patients with osteogenesis imperfecta. Matrix Biology : Journal of the International Society For Matrix Biology. 14: 337-45. PMID 7827757 DOI: 10.1016/0945-053X(94)90200-3 |
0.306 |
|
1992 |
Weiner S, Traub W. Bone structure: from angstroms to microns. Faseb Journal : Official Publication of the Federation of American Societies For Experimental Biology. 6: 879-85. PMID 1740237 DOI: 10.1096/Fasebj.6.3.1740237 |
0.346 |
|
1992 |
Traub W, Arad T, Weiner S. Growth of mineral crystals in turkey tendon collagen fibers. Connective Tissue Research. 28: 99-111. PMID 1628493 DOI: 10.3109/03008209209014230 |
0.354 |
|
1992 |
Traub W, Arad T, Weiner S. Origin of mineral crystal growth in collagen fibrils. Matrix (Stuttgart, Germany). 12: 251-5. PMID 1435508 DOI: 10.1016/S0934-8832(11)80076-4 |
0.36 |
|
1991 |
Weiner S, Arad T, Traub W. Crystal organization in rat bone lamellae. Febs Letters. 285: 49-54. PMID 2065782 DOI: 10.1016/0014-5793(91)80722-F |
0.332 |
|
1991 |
Moradian-Oldak J, Weiner S, Addadi L, Landis WJ, Traub W. Electron imaging and diffraction study of individual crystals of bone, mineralized tendon and synthetic carbonate apatite. Connective Tissue Research. 25: 219-28. PMID 2060300 DOI: 10.3109/03008209109029158 |
0.348 |
|
1989 |
Weiner S, Traub W. Crystal size and organization in bone. Connective Tissue Research. 21: 259-65. PMID 2605950 DOI: 10.3109/03008208909050015 |
0.324 |
|
1989 |
Traub W, Arad T, Weiner S. Three-dimensional ordered distribution of crystals in turkey tendon collagen fibers. Proceedings of the National Academy of Sciences of the United States of America. 86: 9822-6. PMID 2602376 DOI: 10.1073/Pnas.86.24.9822 |
0.37 |
|
1988 |
Jodaikin A, Weiner S, Talmon Y, Grossman E, Traub W. Mineral-organic-matrix relations in tooth enamel International Journal of Biological Macromolecules. 10: 349-352. DOI: 10.1016/0141-8130(88)90027-X |
0.369 |
|
1987 |
Jodaikin A, Weiner S, Perl-Treves D, Traub W, Termine J. Developing enamel matrix proteins: a conformation study of enamelins and amelogenins International Journal of Biological Macromolecules. 9: 166-168. DOI: 10.1016/0141-8130(87)90046-8 |
0.37 |
|
1986 |
Traub W, Steinmann B. Structural study of a mutant type I collagen from a patient with lethal osteogenesis imperfecta containing an intramolecular disulfide bond in the triple-helical domain. Febs Letters. 198: 213-6. PMID 3956729 DOI: 10.1016/0014-5793(86)80407-0 |
0.369 |
|
1986 |
Jodaikin A, Traub W, Weiner S. Protein conformation in rat tooth enamel. Archives of Oral Biology. 31: 685-9. PMID 3477213 DOI: 10.1016/0003-9969(86)90098-1 |
0.341 |
|
1986 |
Weiner S, Traub W. Organization of hydroxyapatite crystals within collagen fibrils. Febs Letters. 206: 262-6. PMID 3019771 DOI: 10.1016/0014-5793(86)80993-0 |
0.349 |
|
1986 |
Jodaikin A, Traub W, Weiner S, Talmon Y, Grossman E, Arad T. Diffraction studies of enamel proteins and crystals: Their structural relations Bone. 7: 394. DOI: 10.1016/8756-3282(86)90283-8 |
0.383 |
|
1984 |
Jodaikin A, Weiner S, Traub W. Enamel rod relations in the developing rat incisor Journal of Ultrastructure Research. 89: 324-332. PMID 6544893 DOI: 10.1016/S0022-5320(84)80048-9 |
0.339 |
|
1984 |
Weiner S, Traub W. Macromolecules in mollusc shells and their functions in biomineralization Philosophical Transactions of the Royal Society B. 304: 425-434. DOI: 10.1098/Rstb.1984.0036 |
0.381 |
|
1983 |
Weiner S, Talmon Y, Traub W. Electron diffraction of mollusc shell organic matrices and their relationship to the mineral phase International Journal of Biological Macromolecules. 5: 325-328. DOI: 10.1016/0141-8130(83)90055-7 |
0.362 |
|
1983 |
Furth DG, Traub W, Harpaz I. What makes Blepharida jump? A structural study of the metafemoral spring of a flea beetle Journal of Experimental Zoology. 227: 43-47. DOI: 10.1002/Jez.1402270107 |
0.349 |
|
1980 |
Weiner S, Kustanovich Z, Gil-Av E, Traub W. Dead Sea Scroll parchments: unfolding of the collagen molecules and racemization of aspartic acid Nature. 287: 820-823. DOI: 10.1038/287820A0 |
0.34 |
|
1979 |
Veis A, Miller A, Leibovich SJ, Traub W. The limiting collagen microfibril The minimum structure demonstrating native axial periodicity Bba - Protein Structure. 576: 88-98. PMID 760811 DOI: 10.1016/0005-2795(79)90487-2 |
0.366 |
|
1979 |
Shoham M, Yonath A, Sussman JL, Moult J, Traub W, Kalb AJ. Crystal structure of demetallized concanavalin A: the metal-binding region. Journal of Molecular Biology. 131: 137-55. PMID 490645 DOI: 10.1016/0022-2836(79)90070-6 |
0.575 |
|
1978 |
Shoham M, Sussman JL, Yonath A, Moult J, Traub W, Kalb(Gilboa) AJ. The effect of binding of metal ions on the three-dimensional structure of demetallized concanavalin A. Febs Letters. 95: 54-6. PMID 720606 DOI: 10.1016/0014-5793(78)80050-7 |
0.525 |
|
1977 |
Yonath A, Podjarny A, Honig B, Sielecki A, Traub W. Crystallographic studies of protein denaturation and renaturation. 2. Sodium dodecyl sulfate induced structural changes in triclinic lysozyme. Biochemistry. 16: 1418-24. PMID 849424 DOI: 10.1021/Bi00626A028 |
0.58 |
|
1977 |
Yonath A, Sielecki A, Moult J, Podjarny A, Traub W. Crystallographic studies of protein denaturation and renaturation. 1. Effects of denaturants on volume and x-ray pattern of cross-linked triclinic lysozyme crystals Biochemistry. 16: 1413-1417. PMID 557340 DOI: 10.1021/Bi00626A027 |
0.602 |
|
1976 |
Moult J, Yonath A, Traub W, Smilansky A, Podjarny A, Rabinovich D, Saya A. The structure of triclinic lysozyme at 2.5 Å resolution Journal of Molecular Biology. 100: 179-195. PMID 1255711 DOI: 10.1016/S0022-2836(76)80147-7 |
0.595 |
|
1975 |
Yonath A, Traub W, Miller EJ. Crystallization of cyanogen bromide peptides from chick cartilage collagen Febs Letters. 57: 93-95. PMID 240739 DOI: 10.1016/0014-5793(75)80159-1 |
0.532 |
|
1974 |
Traub W. Some Stereochemical Implications of the Molecular Conformation of Collagen Israel Journal of Chemistry. 12: 435-439. DOI: 10.1002/Ijch.197400034 |
0.395 |
|
1972 |
Traub W, Perlmann GE. An X‐Ray Study of Phosvitin, The Phosphoglycoprotein in Hens' Egg Yolk Israel Journal of Chemistry. 10: 655-658. DOI: 10.1002/Ijch.197200063 |
0.319 |
|
1971 |
Segal DM, Traub W, Yonath A. Polymers of tripeptides as collagen models. 8. X-ray studies of four polyhexapeptides. Journal of Molecular Biology. 43: 519-27. PMID 5401232 DOI: 10.1016/0022-2836(69)90356-8 |
0.603 |
|
1971 |
Yonath A, Traub W. Polymers of tripeptides as collagen models. IV. Structure analysis of poly(L-proly-glycyl-L-proline). Journal of Molecular Biology. 43: 461-77. PMID 5401228 DOI: 10.1016/0022-2836(69)90352-0 |
0.619 |
|
1969 |
Suwalsky M, Traub W, Shmueli U, Subirana JA. An X-ray study of the interaction of DNA with spermine. Journal of Molecular Biology. 42: 363-73. PMID 5803301 DOI: 10.1016/0022-2836(69)90049-7 |
0.655 |
|
1969 |
Traub W, Yonath A, Segal DM. On the Molecular Structure of Collagen Nature. 221: 914-917. PMID 5765503 DOI: 10.1038/221914A0 |
0.594 |
|
1969 |
Segal DM, Traub W. Polymers of tripeptides as collagen models. VI. Synthesis and structural investigation of poly(L-alanyl-L-prolyl-glycine). Journal of Molecular Biology. 43: 487-496. PMID 5401230 DOI: 10.1016/0022-2836(69)90354-4 |
0.411 |
|
1969 |
Traub W. Polymers of tripeptides as collagen models. V. An x-ray study of poly(L-prolyl-glycyl-glycine). Journal of Molecular Biology. 43: 479-485. PMID 5401229 DOI: 10.1016/0022-2836(69)90353-2 |
0.397 |
|
1967 |
Traub W, Yonath A. Polymers of tripeptides as collagen models. 3. Structural relationship between two forms of poly(L-prolyl-L-alanyl-glycine). Journal of Molecular Biology. 25: 351-5. PMID 6034104 DOI: 10.1016/0022-2836(67)90147-7 |
0.557 |
|
1967 |
Traub W, Yonath A. Polymers of tripeptides as collagen models. I. X-ray studies of poly(L-prolyl-glycyl-L-proline) and related polytripeptides. Journal of Molecular Biology. 16: 404-14. PMID 5954171 DOI: 10.1016/S0022-2836(66)80182-1 |
0.544 |
|
1965 |
SHMUELI U, TRAUB W. AN X-RAY DIFFRACTION STUDY OF POLY-L-LYSINE HYDROCHLORIDE. Journal of Molecular Biology. 12: 205-14. PMID 14343281 DOI: 10.1016/S0022-2836(65)80294-7 |
0.651 |
|
1963 |
TRAUB W, SHMUELI U. Structure of Poly-L-Proline I Nature. 198: 1165-1166. DOI: 10.1038/1981165A0 |
0.602 |
|
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