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Article title matches
- Category:Cell cycle control (49 bytes)
1: List of pages with the keyword Cell cycle control - Category:Complement control protein module (64 bytes)
1: List of pages with the keyword Complement control protein module - Category:Transcriptional control (54 bytes)
1: List of pages with the keyword Transcriptional control - Category:Oxidative coupling control (57 bytes)
1: List of pages with the keyword Oxidative coupling control - Category:Translational control (52 bytes)
1: List of pages with the keyword Translational control - Category:Cell cycle control factor (56 bytes)
1: List of pages with the keyword Cell cycle control factor - Category:Control (38 bytes)
1: List of pages with the keyword Control - Category:Protein quality control (54 bytes)
1: List of pages with the keyword Protein quality control - Category:Complement control protein (57 bytes)
1: List of pages with the keyword Complement control protein - Category:Birth control (44 bytes)
1: List of pages with the keyword Birth control - Category:Anoxic redox control (51 bytes)
1: List of pages with the keyword Anoxic redox control - Category:Allosteric control (49 bytes)
1: List of pages with the keyword Allosteric control - Category:Feedback control (47 bytes)
1: List of pages with the keyword Feedback control - Category:Control complex (46 bytes)
1: List of pages with the keyword Control complex - Category:Cole1 plasmid copy control (57 bytes)
1: List of pages with the keyword Cole1 plasmid copy control - Category:Catabolite control protein some (62 bytes)
1: List of pages with the keyword Catabolite control protein some - Category:Redox control (44 bytes)
1: List of pages with the keyword Redox control - Category:Stereo-control (45 bytes)
1: List of pages with the keyword Stereo-control - Category:Transcription control (52 bytes)
1: List of pages with the keyword Transcription control - Category:Cell-cycle control (49 bytes)
1: List of pages with the keyword Cell-cycle control
Page text matches
- Matrix metalloproteinases (1,425 bytes)
7: ...ion, zymogen activation and endogenous inhibitors control MMP activity under normal physiological condition... - Hemoglobin (19,234 bytes)
24: ...as cooperativity of oxygen binding and allosteric control by pH and anions. Hemoglobin is definitely not a ...
49: ...tion is how it achieves, uses, and allosterically controls cooperativity between the 4 binding sites in the...
60: ...in the blood, because their concentrations can be controlled to shift the Hb O2-binding curve so that it is... - Ann Taylor/Hemoglobin (7,712 bytes)
15: ...as cooperativity of oxygen binding and allosteric control by pH and anions. - Acetylcholine (3,078 bytes)
8: ...lertness. Acetylcholine is also crucial for motor control, as it transmits signals from motor neurons to mu...
10: ...ransmitter in the parasympathetic division, which controls rest and digest functions. Acetylcholine regulat... - 8gpb (5,904 bytes)
2: ==STRUCTURAL MECHANISM FOR GLYCOGEN PHOSPHORYLASE CONTROL BY PHOSPHORYLATION AND AMP==
26: Structural mechanism for glycogen phosphorylase control by phosphorylation and AMP.,Barford D, Hu SH, Joh... - 2src (9,009 bytes)
13: ...s at the level of the plasma membrane but also in controlling progression through the cell cycle via intera... - Scene authoring tools (23,035 bytes)
30: Creating the 3D scene is mostly done with the controls available via the tabs, while the right side of ...
55: ==Controls below the Jmol window==
56: [[Image:SAT controls outside of tabs.JPG|600px]]
58: These controls are available no matter which tab is open. The f...
59: ...o atoms. To see which atoms are selected, use the controls next to "Show Selected with Halos". If you have... - 1e4o (4,916 bytes)
24: ... provided explanations for almost all features of control and substrate recognition of phosphorylase but on... - 1vyw (7,803 bytes)
11: ...trols the timing of entry into mitosis/meiosis by controlling the subsequent activation of cyclin B/CDK1 by... - 1vyz (7,690 bytes)
11: ...trols the timing of entry into mitosis/meiosis by controlling the subsequent activation of cyclin B/CDK1 by... - 1vyg (4,871 bytes)
24: ... of) ANS. The binding rate constant of ligands is controlled by a slow pH dependent conformational change, ...
26: ... acid binding protein: specificity and functional control as revealed by crystallographic structure.,Angelu... - 1vyf (4,860 bytes)
24: ... of) ANS. The binding rate constant of ligands is controlled by a slow pH dependent conformational change, ...
26: ... acid binding protein: specificity and functional control as revealed by crystallographic structure.,Angelu... - 4b6w (4,091 bytes)
14: ...ng and/or protein degradation associated with the control of microtubule assembly, catastrophe or function.... - 1wcc (6,954 bytes)
11: ...trols the timing of entry into mitosis/meiosis by controlling the subsequent activation of cyclin B/CDK1 by... - 2wc2 (4,802 bytes)
22: ...e of how effector-mediated structural changes can control the activity of regulatory proteins.
24: Structural basis for cAMP-mediated allosteric control of the catabolite activator protein.,Popovych N, ... - 1qr5 (6,407 bytes)
10: ...II/III). P-Ser-HPr interacts with the catabolite control protein A (CcpA), forming a complex that binds to... - 2jav (6,174 bytes)
11: ...K2_HUMAN] Protein kinase which is involved in the control of centrosome separation and bipolar spindle form...
24: ...vity to generate the precise spatial and temporal control required for Nek2 function in centrosomal maturat... - 1tf6 (3,274 bytes)
2: ...OMAIN BOUND TO THE 5S RIBOSOMAL RNA GENE INTERNAL CONTROL REGION==
11: ... RNA gene expression. Interacts with the internal control region (ICR) of approximately 50 bases within the... - 1qku (6,751 bytes)
24: ...port a dynamic view of H12 positioning, where the control of the equilibrium between two stable locations d... - 1qkt (6,392 bytes)
24: ...port a dynamic view of H12 positioning, where the control of the equilibrium between two stable locations d...
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