the eukaryotic cytoskeleton oct 9 and 11
DESCRIPTION
The Eukaryotic Cytoskeleton Oct 9 and 11. Organizing compartments, and a whole lot more!. Typical animal cell. Lodish et al, Fig 5-42. Endoplasmic Reticulum. Lodish et al, Fig 5-47. Golgi’s Apparatus. Lodish et al, Fig 5-49. The Secretory Pathway. Lodish et al, Fig 5-48. - PowerPoint PPT PresentationTRANSCRIPT
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The EukaryoticCytoskeletonOct 9 and 11
Organizing compartments, and a whole lot more!
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Lodish et al,Fig 5-42
Typical animal
cell
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Endoplasmic Reticulum
Lodish et al,Fig 5-47
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Golgi’s Apparatus
Lodish et al,Fig 5-49
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The Secretory Pathway
Lodish et al,Fig 5-48
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Lysosomal Degradation
Lodish et al,Fig 5-44
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Protein Transport: Overview
Lodish et al, 17-50
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Budding Fusion Transport
Lodish et al,Fig 17-51, 17-59
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The eukaryotic cytoskeleton
Lodish et al, Fig 19-50
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Microtubules
Lodish et al Fig 19-1, 19-2
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The MTOC
Lodish et alFig 19-5
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Microtubule assembly
Lodish et al, Fig 19-7
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Dynamic Instability
Lodish et alFig 19-14
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Treadmilling
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Endomembrane organization
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Melanophore Motility
Lodish et alFig 19-21
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Kinesin
Lodish et al,Fig 19-23
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Kinesin Vesicle Transport
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Dynein Vesicle Transport
Lodish et alFig 19-25
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Flagellar Dyneins
Lodish et alFig 19-30, 19-31
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The 9+2 Eukaryotic Flagellum
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Flagellar Beating
Lodish et al, Fig 19-27
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The Flagellar Machine
Lodish et al, Fig 19-29
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Flagellar Assembly
Lodish et al Fig 19-33
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Microfilaments
Lodish et al, Fig 18-2
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Polarity (S1 decoration)
Lodish et al fig 18-3, 18-13
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Localization
Lodish et al, Fig 18-1
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Myosin
Lodish et al Fig 18-24
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Myosin also moves vesicles
Lodish et al Fig 18-40
Bundle ofmicrofilaments
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Muscle
Lodish et al Fig 18-24
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The Sliding Filament Hypothesis
Lodish et alFig 18-29
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Controlling Contractions
Via Troponin/Tropomyosin
(in vivo)
Lodish et alFig 18-32, 18-33a
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Intermediate filaments
Lodish et alFig 19-51
Keratin
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Connecting it all:
The Macrotrabecular
Lattice
Lodish et alFig 19-54
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After Break: MITOSIS
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