Search Results - "proteins"
Suggested Topics within your search.
Suggested Topics within your search.
- metabolism 473
- Proteins 414
- genetics 327
- physiology 248
- Protein Conformation 186
- Signal Transduction 180
- chemistry 170
- Cellular signal transduction 152
- Protein Folding 142
- Metabolism 123
- Gene Expression Regulation 120
- drug therapy 119
- Molecular Chaperones 117
- immunology 113
- pathology 111
- Protein folding 101
- methods 98
- Neurodegenerative Diseases 97
- Genetic aspects 94
- Neoplasms 93
- Diseases 92
- Mitochondria 90
- Cancer 88
- pharmacology 84
- therapeutic use 83
- therapy 83
- Nervous system 82
- Transcription Factors 79
- Protein Biosynthesis 78
- Receptors 71
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641
The roles of molecular chaperones in bacterial infection
Published 2018Table of Contents: “…Contents: Discovery of major molecular chaperones through the studies on bacteriophage lambda -- Discovery of function of DnaK machinery assisting assembly/disassembly of macromolecule protein structure -- Roles of DnaK chaperone machinery and ClpX chaperone in Salmonella pathogenesis and flagellar biogenesis -- Role of GroEL on bacterial cell surface.…”
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642
The phagocytic synapse in distinguishing particulate and soluble stimuli
Published 2013Subjects: Get full text
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643
Mechanisms regulating STIM expression and function in Ca2+ signaling
Published 2013Subjects: Get full text
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644
Biogenesis of the eukaryotic proteasome
Published 2012Subjects: Get full text
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645
Cytochrome b5 reductase deficiency and hereditary methemoglobinemia
Published 2007Subjects: Get full text
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646
Structure and mechanism of the tyrosine kinase domain of the insulin receptor
Published 2007Table of Contents: “…Contents: Introduction to receptor tyrosine kinases (RTKs) -- general mechanisms of protein recruitment to RTKs -- Structure of the insulin receptor tyrosine kinase domain (IRK) -- Autoinhibitory mechanisms in RTKs -- Structure of the Src homology-2 (SH2) domain of APS -- Structure of the APS SH2 domain bound to IRK -- Inhibition of IRK activity by Grb14 -- Structure of the Grb14 BPS region bound to IRK -- Structure of the Grb14 SH2 domain -- Model of the interaction between Grb14 and the insulin receptor.…”
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647
Fabry disease [alpha]-galactosidase A deficiency and enzyme replacement therapy /
Published 2007Subjects: Get full text
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648
Multiple acyl-CoA dehydrogenation deficiency defects of electron transfer flavoproteins /
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649
Structure and mechanism of the tyrosine kinase domain of the insulin receptor
Published 2007Table of Contents: “…Contents: Introduction to receptor tyrosine kinases (RTKs) -- general mechanisms of protein recruitment to RTKs -- Structure of the insulin receptor tyrosine kinase domain (IRK) -- Autoinhibitory mechanisms in RTKs -- Structure of the Src homology-2 (SH2) domain of APS -- Structure of the APS SH2 domain bound to IRK -- Inhibition of IRK activity by Grb14 -- Structure of the Grb14 BPS region bound to IRK -- Structure of the Grb14 SH2 domain -- Model of the interaction between Grb14 and the insulin receptor.…”
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650
Fabry disease [alpha]-galactosidase A deficiency and enzyme replacement therapy /
Published 2007Subjects: Get full text
Series
Electronic Video -
651
Multiple acyl-CoA dehydrogenation deficiency defects of electron transfer flavoproteins /
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652
Biogenesis of the eukaryotic proteasome
Published 2022Subjects: “…Proteins Metabolism. 83622…”
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653
Biogenesis of the eukaryotic proteasome
Published 2022Subjects: “…Proteins Metabolism. 83622…”
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654
Iron metabolism
Published 1977Subjects: An electronic book accessible through the World Wide Web; click to view
Electronic Conference Proceeding eBook -
655
Mouse models to investigate cell cycle and cancer
Published 2009Table of Contents: “…Contents: Cell cycle regulation during mouse development and adulthood -- Cyclin-dependent kinases (Cdks) -- The genetic pathways for cell cycle regulation -- Cdk1, Cdk2, Cdk4, and Cdk6 -- The in vivo functions of Cdk2 -- Compensation between different Cdk/cyclin complexes -- Genetic interaction between Cdk2 and Cdk4 -- Control of the G1/S phase transition by the Retinoblastoma protein (Rb) -- DNA damage response in the absence of Cdk2 -- p27Kip1 inhibits Cdk1 in vivo -- Cdk1/cyclin E complexes promote S phase -- Cdks and tumors.…”
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658
The endoplasmic reticulum the unfolded protein response /
Published 2007Table of Contents: “…Contents: The secretory pathway -- Factor VIII expression induces ER stress -- Protein folding: the ultimate and most error prone step in gene expression -- The "unfolded protein response" (UPR) ensures fidelity of protein folding -- UPR signaling response -- Activation of the UPR -- Stress signaling from the ER -- Role of eIF2 in translation initiation -- Translation initiation response to external stimuli -- eIF2a phosphorylation is required for UPR -- Wolcott-Rallison syndrome -- Plasma cell differentiation requires ER expansion -- Roles of IRE1a/XBP1 in lymphocyte development -- ER-stress-induced transcription through regulated intramembrane proteolysis (RIP) -- CREBH and ATF6 -- ER-stress-induced apoptosis -- ER stress and oxidative stress -- UPR-induced alterations in gene expression.…”
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659
The endoplasmic reticulum the unfolded protein response /
Published 2007Table of Contents: “…Contents: The secretory pathway -- Factor VIII expression induces ER stress -- Protein folding: the ultimate and most error prone step in gene expression -- The "unfolded protein response" (UPR) ensures fidelity of protein folding -- UPR signaling response -- Activation of the UPR -- Stress signaling from the ER -- Role of eIF2 in translation initiation -- Translation initiation response to external stimuli -- eIF2a phosphorylation is required for UPR -- Wolcott-Rallison syndrome -- Plasma cell differentiation requires ER expansion -- Roles of IRE1a/XBP1 in lymphocyte development -- ER-stress-induced transcription through regulated intramembrane proteolysis (RIP) -- CREBH and ATF6 -- ER-stress-induced apoptosis -- ER stress and oxidative stress -- UPR-induced alterations in gene expression.…”
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660
The endoplasmic reticulum the unfolded protein response /
Published 2007Table of Contents: “…Contents: The secretory pathway -- Factor VIII expression induces ER stress -- Protein folding: the ultimate and most error prone step in gene expression -- The "unfolded protein response" (UPR) ensures fidelity of protein folding -- UPR signaling response -- Activation of the UPR -- Stress signaling from the ER -- Role of eIF2 in translation initiation -- Translation initiation response to external stimuli -- eIF2a phosphorylation is required for UPR -- Wolcott-Rallison syndrome -- Plasma cell differentiation requires ER expansion -- Roles of IRE1a/XBP1 in lymphocyte development -- ER-stress-induced transcription through regulated intramembrane proteolysis (RIP) -- CREBH and ATF6 -- ER-stress-induced apoptosis -- ER stress and oxidative stress -- UPR-induced alterations in gene expression.…”
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