682 results on '"Graham, Laurie"'
Search Results
202. Notes from Our Publishers (et al.).
203. The Thr- and Ala-Rich Hyperactive Antifreeze Protein from Inchworm Folds as a Flat Silk-like β-Helix
204. Onion
205. I know less
206. Structural Basis for the Superior Activity of the Large Isoform of Snow Flea Antifreeze Protein
207. Home Learning Activities: A Feasible Practice for Increasing Parental Involvement
208. Superheating of Ice in the Presence of Ice Binding Proteins
209. Voa1p Functions in V-ATPase Assembly in the Yeast Endoplasmic Reticulum
210. Lateral Transfer of a Lectin-Like Antifreeze Protein Gene in Fishes
211. Intramolecular Regulation of Phospholipase C-γ1 by Its C-Terminal Src Homology 2 Domain
212. The basis for hyperactivity of antifreeze proteins
213. PKR1 Encodes an Assembly Factor for the Yeast V-Type ATPase
214. PKR1Encodes an Assembly Factor for the Yeast V-Type ATPase
215. Vma9p (Subunit e) Is an Integral Membrane V0 Subunit of the Yeast V-ATPase
216. Expression and purification of sea raven type II antifreeze protein from Drosophila melanogaster S2 cells
217. Fighting for the Union Label: The Women's Garment Industry and the ILGWU in Pennsylvania Kenneth C. Wolensky Nicole H. Wolensky Robert P. Wolensky
218. A New Tyrosine Phosphorylation Site in PLCγ1: The Role of Tyrosine 775 in Immune Receptor Signaling
219. Book Review: Living Labour: Life on the Line at Peugeot France
220. Role of Vma21p in Assembly and Transport of the Yeast Vacuolar ATPase
221. Role of the V‐ATPase in the Cellular Physiology of the Yeast Saccharomyces cerevisiae
222. On the mechanism coupling phospholipase Cγ1 to the B- and T-cell antigen receptors
223. 70Z/3 Cbl induces PLCγ1 activation in T lymphocytes via an alternate Lat- and Slp-76-independent signaling mechanism
224. Public discourses of Dreams: Xavante dreams in local and international arenas
225. Singing The City
226. Identification of the ice-binding face of antifreeze protein fromTenebrio molitor
227. The odorant-binding proteins of Drosophila melanogaster : annotation and characterization of a divergent gene family
228. Membrane Raft-Dependent Regulation of Phospholipase Cγ-1 Activation in T Lymphocytes
229. Book Review: Economic and Social Security and Substandard Working Conditions: Women, Work and Trade Unions
230. Differences by Gender and Sexual Experience in Adolescent Sexual Behavior: Implications for Education and HIV Prevention
231. PARANKA.
232. Developmental and environmental regulation of antifreeze proteins in the mealworm beetle Tenebrio molitor
233. Capitalist Development and Class Capacities: Marxist Theory and Union Organization
234. Functional Independence and Interdependence of the Src Homology Domains of Phospholipase C-γ1 in B-Cell Receptor Signal Transduction
235. A Complex Family of Highly Heterogeneous and Internally Repetitive Hyperactive Antifreeze Proteins from the Beetle Tenebrio molitor,
236. Underground Woman: My Four Years as a New York City Subway Conductor
237. Beaver Hills, Aspen Parkland
238. Backstop
239. Sequences Surrounding the Src-Homology 3 Domain of Phospholipase Cγ-1 Increase the Domain's Association with Cbl
240. Assembly of the Yeast Vacuolar H+-ATPase Occurs in the Endoplasmic Reticulum and Requires a Vma12p/Vma22p Assembly Complex
241. The Amino-Terminal Src Homology 2 Domain of Phospholipase Cγ1 Is Essential for TCR-Induced Tyrosine Phosphorylation of Phospholipase Cγ1
242. On the Line at Subaru-Isuzu: The Japanese Model and the American Worker.
243. Cbl-mediated Regulation of T Cell Receptor-induced AP1 Activation
244. V1-situated Stalk Subunits of the Yeast Vacuolar Proton-translocating ATPase
245. Book Reviews
246. VMA11 and VMA16 Encode Second and Third Proteolipid Subunits of the Saccharomyces cerevisiae Vacuolar Membrane H+-ATPase
247. On the Line at Subaru-Isuzu: The Japanese Model and the American Worker
248. On Watching Footage of a Horse-Drawn Combine from 1938.
249. Heterologous Complementation of a Rieske Iron-Sulfur Protein-deficient by the Gene of
250. Cloning and baculovirus expression of a desiccation stress gene from the beetle, Tenebrio molitor
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