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Institution

Wayne State University

EducationDetroit, Michigan, United States
About: Wayne State University is a education organization based out in Detroit, Michigan, United States. It is known for research contribution in the topics: Population & Cancer. The organization has 42801 authors who have published 82738 publications receiving 3083713 citations. The organization is also known as: WSU & Wayne University.


Papers
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Journal ArticleDOI
TL;DR: In this article, a review article provides an overview of the problems pertaining to structural dynamics with bolted joints, including energy dissipation, dynamic properties of the joints, parameter uncertainties and relaxation, and active control of the joint preload.

397 citations

Journal ArticleDOI
TL;DR: It is proposed that CL is required for maintaining the mitochondrial membrane potential and that reduced membrane potential in the absence of CL leads to defects in protein import and other mitochondrial functions.

396 citations

Journal ArticleDOI
TL;DR: The 3D solution structure as determined by NMR of the 2-kDa NAG-NAM(pentapeptide)-NAG-Nam(pentAPEptide) synthetic fragment of the cell wall is reported and a model for the bacterial cell wall has been proposed.
Abstract: The 3D structure of the bacterial peptidoglycan, the major constituent of the cell wall, is one of the most important, yet still unsolved, structural problems in biochemistry. The peptidoglycan comprises alternating N-acetylglucosamine (NAG) and N-acetylmuramic disaccharide (NAM) saccharides, the latter of which has a peptide stem. Adjacent peptide stems are cross-linked by the transpeptidase enzymes of cell wall biosynthesis to provide the cell wall polymer with the structural integrity required by the bacterium. The cell wall and its biosynthetic enzymes are targets of antibiotics. The 3D structure of the cell wall has been elusive because of its complexity and the lack of pure samples. Herein we report the 3D solution structure as determined by NMR of the 2-kDa NAG-NAM(pentapeptide)-NAG-NAM(pentapeptide) synthetic fragment of the cell wall. The glycan backbone of this peptidoglycan forms a right-handed helix with a periodicity of three for the NAG-NAM repeat (per turn of the helix). The first two amino acids of the pentapeptide adopt a limited number of conformations. Based on this structure a model for the bacterial cell wall is proposed.

396 citations

Book ChapterDOI
TL;DR: Many of the key in vitro findings on the properties of antifolate transporters are now beginning to be extended to patient specimens, thus setting the stage for understanding response to these drugs in the clinical setting at the molecular level.
Abstract: The chapter reviews the current understanding of the transport mechanisms for folates in mammalian cells—their molecular identities and organization, tissue expression, regulation, structures, and their kinetic and thermodynamic properties. This encompasses a variety of diverse processes. Best characterized is the reduced folate carrier, a member of the SLC19 family of facilitative carriers. But other facilitative organic anion carriers (SLC21), largely expressed in epithelial tissues, transport folates as well. In addition to these bi-directional carrier systems are the membrane-localized folate receptors alpha and beta, that mediate folate uptake unidirectionally into cells via an endocytotic process. There are also several transporters, typified by the family of multidrug resistance-associated proteins, that unidirectionally export folates from cells. There are transport activities for folates, that function optimally at low pH, related in part to the reduced folate carrier, with at least one activity that is independent of this carrier. The reduced folate carrier-associated low-pH route mediates intestinal folate transport. This review considers how these different transport processes contribute to the generation of transmembrane folate gradients and to vectorial flows of folates across epithelia. The role of folate transporters in mouse development, as assessed by homologous deletion of folate receptors and the reduced folate carrier, is described. Much of the focus is on antifolate cancer chemotherapeutic agents that are often model surrogates for natural folates in transport studies. In particular, antifolate transport mediated by the reduced folate carrier is a major determinant of the activity of, and resistance to, these agents. Finally, many of the key in vitro findings on the properties of antifolate transporters are now beginning to be extended to patient specimens, thus setting the stage for understanding response to these drugs in the clinical setting at the molecular level.© 2003, Elsevier Science (USA).

396 citations

Journal ArticleDOI
J. Gronberg1, T. S. Hill1, R. Kutschke1, Dj Lange1  +221 moreInstitutions (27)
TL;DR: Using the CLEO II detector, the authors measured the differential cross sections for exclusive two-photon production of light pseudoscalar mesons {pi}{sup 0, {eta, and {eta}{prime}.
Abstract: Using the CLEO II detector, we have measured the differential cross sections for exclusive two-photon production of light pseudoscalar mesons {pi}{sup 0}, {eta}, and {eta}{prime}. From our measurements we have obtained the form factors associated with the electromagnetic transitions {gamma}*{gamma} {yields} meson. We have measured these form factors in the momentum transfer ranges from 1.5 to 9, 20, and 30 GeV2 for {pi}{sup 0}, {eta}, and {eta}{prime}, respectively, and have made comparisons to various theoretical predictions.

396 citations


Authors

Showing all 43073 results

NameH-indexPapersCitations
Robert Langer2812324326306
Eugene Braunwald2301711264576
Rakesh K. Jain2001467177727
Anil K. Jain1831016192151
Richard A. Gibbs172889249708
Bradley Cox1692150156200
Jun Wang1661093141621
David Altshuler162345201782
Elliott M. Antman161716179462
Jovan Milosevic1521433106802
Roberto Romero1511516108321
Kypros H. Nicolaides147130287091
John F. Hartwig14571466472
Charles Maguire142119795026
Mingshui Chen1411543125369
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202391
2022407
20213,537
20203,508
20193,011
20182,963