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2005 - Smb.wsu.edu - Washington State University

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Teaching and Research Changes<br />

ALAM 466/566; 465 NMR, Zn-dependent ubiquitin binding domains.<br />

BERTRAND 107; 503/504 Multidrug efflux pumps in E. coli<br />

DAHL 302 Latent survival of Mycobacterium tuberculosis<br />

DAVIS 413/513; 414/514 DNA oxidative damage and repair<br />

DUNKER 413/513;466/566; 494 Bioinformatics and protein folding<br />

EVANS 414/514 Biomolecular NMR Spectroscopy<br />

GARZA 302; Spatial control of cell differentiation in Myxococcus xanthus<br />

GLOSS 304; 413/513; 414/514 Protein adaptation in archae extreme halophiles<br />

GRIMES Lipoxygenase function in soybean<br />

GRISWOLD Role of Sertoli cells in mammalian spermatogenesis<br />

HASSOLD Meitoic chromosome abnormalities<br />

HER 503; 504 Mammalian DNA mismatch repair pathways<br />

HUNT Mammalian germ cell development and meiotic cell cycle control<br />

ICHIYE Protein control of electron transfer rates via polarization<br />

KANG 413/513; 466/566; 465 Protein and DNA X-ray crystallography<br />

KIM 303; 401/501; Vitamin A and retinoic acid receptors in spermatogenesis and testis development<br />

KONKEL 340; 341; 443 Campylobacter jejuni pathogenic determinants<br />

LURQUIN 301; 425; UH 410 Transgenic plants<br />

MAGNUSON 440/540 Role of Pim-1 cellular proliferation and differentiation<br />

NILSON 503; 504 Regulation of gonadotropin gene expression and mechanism of gonadotropin action<br />

POSTLE 454 Ton-B dependent energy transduction in E. coli transport<br />

REEVES 503; 504; 574 HMG-A regulation of transcription<br />

SHELDEN 303; 401/501 Cytoskeletal regulation in cell processes<br />

SKINNER 401/501 Cell-cell interactions in spermatozoa and oocyte development<br />

SMERDON 466/566; 465 DNA excision repair in the context of chromatin structure<br />

TAYLOR 490; Sen Proj Signal transduction pathways in plant fertilization<br />

WYRICK 478/578; 503 Histone modifications in global gene expression.<br />

XUN 450/550 Microbial degradation of xenobiotics.<br />

28<br />

Areas of need: NMR; prokaryotic molecular biology; molecular virology; immunology; cell signaling<br />

via GPCR; nuclear receptors; model organisms (drosophila, c elegans)– molecular biology

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