2007/12/09

P

o-o PCD o-o phylogenetics o-o plasmid o-o plastid o-o proto-oncogene

p53 PA ф pattern-recognition receptors PD: PDGF receptorPDK1PDK1 PE ~ peptideperoxisome »» Persistence of functional gene duplicates PH ф phagocytephagocytosisphosphatases : phosphatidic acid, PA : phosphatidylinositol : phosphatidylinositol phosphates, PIPsphosphodiesterases ¨ phospholipases : phospholipase A2 : phospholipase C family : phospolipase C-γphosphotransfer-mediated signaling pathwaysphosphorylases ~ phospolipidphotosynthesis »» Phyletic gradualism ^ Phylogeneticsphysiological function PI ◊ PIKKPI3K : PI3K ARF : PI3K cancer : PI3K Kit : PI3K signaling ~ PIPs PL סּ plant cell PK ◊ PKAPKBPKCs PO »» point mutation : polar amino acids ~ polyadenylation ~ polypeptide : polyphosphoinositides »» Population Genetics and Formulae PR~ preinitiation complex ~ pre-mRNA ~ pre-mRNA splicing ~ promoters ~ proteome »» proteome and genomeprokaryotes, prokaryotic ¤ proliferation : prostaglandinsprotein degradationproteasomeprotein kinasesProtein Kinase Signaling Networks ~ proteins ~ protein tyrosine kinases ¤ proto-oncogenes PT ◊ PTEN ~ PTKs PU »» Punctuated equilibriapumps

P-bodies : Paks : PDGF : PDK1 and cellular survival : phagocytic macrophages : phospholipases and signal transduction : phycobilin absorption spectra : phycocyanin : phycoerythrin : PI3K and ARF : PI3K and cancer : PI3K and cellular survival : PI3K and chemotaxis : PI3K and Kit : PI3K and signaling : PI3K signaling : PIKKs and FRAP1 : PIP control : PIPs and eicosanoids : PIPs and membranes : PIPs and prostaglandins : PIP roles : PKA : PKCs as molecular switches : PKC and signal transduction : PKCs as serine/threonine kinases : PLC-gamma and PIPs : pleiotropy : predisposition to cancer : pro- and anti-apoptotic : processing bodies : prophase : prostaglandins (eicosanoids) : protein degradation : protein kinases and signal transduction : protein mediators of VDJ recombination : protozoa-porifera-metazoa : PTC and NMD : PTEN : PTK (cellular) : PT-pore :

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