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TextbookMolecular
Cell
Biology.
4th
ed.
Lodish
et
al.
2013,7th
edMolecular
Biology
of
the
Cell
4th
Edition,
Bruce
Albertsetal.,
2002(
)、 孝、
.
細胞生物學(xué),高等教育
,2011,第四版課件上傳
:
Teachers:Yuan
LiYe
JunJin
QuanwenYu
XianwenFinal
score:20%Mid-term
exam
40%Final
exam
40%Introduction
of
Molecular
Cell
Biology
(Ye,
2.15)Culturing,Visualizing,and
Perturbing
Cells
(week,Jin,
2.19,
2.22)Biomembrane
Structure
(Ye,
2.29)Transmembrane
transport
ofIons
and
small
Molecules
(Ye,3.4,3.7)Cellular
energetics
(Ye,3.14)Moving
Proteins
into
Membranes
and anelles
(Ye,3.18)Vesicular
Traffic,Secretion,and
Endocytosis
(Ye,3.21)SignalingTransduction
and
G
Protein-Coupled
Receptors(Yu,3.28)Signaling
Pathways
that
Control
Gene
Activity(Yu,4.1)Arrangement
of
this
curriculumCellCellanization
and
MovementI:Microfilament
(Yu,4.4)anization
andMovement
II:Microtubules
and
InternediateFilaments
(Yu,4.11)Half-course
test,
9th
week,4.15)Nucleus
(Ye,
4.19)The
Eukaryotic
Cell
Cycle
(Jin
4.25;4.29)Cell
Senecence
(ye,
5.2)Integrating
Cells
Into
Tissue
(Yuan,5.9;5.13)Stem
Cells,Cell
Asymmetry,andCell
Death
(Yuan,5.16;5.23)Cancer
(Yuan,5.27;5.30)Final
test
(18th
week)Research
objectives
of
the
cell
biologyMicroscope
and finding
of
the
cellCell
theoryElectronic
microscope
and
the
rise
ofcell
biologymodernChronology
of
the
events
in
cell
biologyResearch
of cell
biology
in
ChinaIntroduction
to
Molecular
biology
of
the
cellUnderstanding
of
the
structure
and
functionThe
molecular
mechanisms
of
complex
processes
in
cellsThe
methods
used
in
Molecular
and
CellBiology.Research
objectives
of
the
cell
biologyCell
biology
derived
from
Cytology
whichfocus
on
observation
on
morphology
of
thecell(Especially
for
chromosome).The
researchinghotspot
on
cell
biologyCellular
signal
transductionGene
regulationand
expressionCell
cycle
regulationCell
aging(senescence)
and
ApoptosisThe
invention
of
the
compound
microscope
can
becredited
to
Zacharias
Janssen
in
the
late
sixteenthcentury.Microscope
and finding
of
the
cellRobert
Hooke
(1635-1703)Cork
tissueA.van
LeeuwenhoekMagnification
ranges
at
50-275x.(1632-1723)Leeuwenhoek
described
microscopic
lifeFigure
8-1.
Microscopiclife.
A
sample
of
"diverseanimalcules"
seen
byvanLeeuwenhoek
using
hissimple
microscope.(A)Bacteria
seen
inmaterialhe
excavatedfrombetween
his
teeth.
Thosein
fig.
B
he
describedas"swimming
forwardand
then
backwards"(1692).
(B)
The
eucaryoticgreen
alga
Volvox
(1700).http://w/micro_1.htmThe
21st
century
Microscope1.Matthias
Schleiden
(1804-1881),German
botanist
,publishedhis
results
in
Beitr?ge
zur
Phytogenesis(Contributions
of
Phytogenesis,
1838),conceivedthat
all
plants
were
made
up
of
recognizable
units,or
cells
.Cell
theory2.
Th r
Schwann(1810~1882),German
physiologist
.
In
1839,
heextended
Schleiden's
cell
theory
toanimals,
stating
that
all
living
thingsare
composed
of
cells.Th r
Schwann
:The
cell
is
the
unit
of
structure,
physiology,
andanization in
living
things.The
cell
retains
a
dual
existenceas
a
distinct
entity and
abuilding
block
in
the
construction
of
anisms.Cells
form
by
free-cell
formation,
similar
tothe formation
ofcrystals
(spontaneous
generation).Twenty
years
later
in1855
Rudolf
Virchowproposed
an
importantextension
of
cell
theorythat
"
All
l
iving
cellsarise
from
pre-existingcells"1821-1902The
modern
tenets
of
the
CellTheoryAll
known
living
things
are
made
up
of
cells.The
cell
isstructural
&
functional
unit
of
all
living
things.All
cellscome
from
pre-existing
cellsby
division.(Spontaneous
Generation
does
not
occur).Cells
contains
hereditary
information
whichis
passed
fromcell
to
cellduring
cell
division.All
cells
are
basically
the
same
in
chemical
composition.All
energy
flow
(metabolism
&
biochemistry)of
life
occurswithin
cells.Ernst
Ruska(1906-1988),
Germanelectrical
engineer
who
invented
theelectron
microscope
(50nm)
in
the
world.Won
the
the
nobel
prize
in
physics1986
Electronic
microscope
and
the
rise
ofmodern
cell
biology1925,E.B.
wilson1961,J.BrachetChronology
of
the
events
in
cell
biologyFlemming,Walther
(1843-1905),German
anatomist,named
the
division
of
somatic
cells
mitosis
in
1882.Eduard.Strasburger
(1844~1912)observed
mitosis
inplant
cell。Edouard
van
Beneden
(1846-1910)
the
Belgianzoologist
,
discoved
meiosis
in
Ascaris
megalocephala.Friedrich
.
Miescher
(Swiss)(1844-1895)
discoverednucleic
acids
in
1869.English
bacteriologistF.Griffith
(1881-1941)demonstration
of
bacterialtransformation
withStreptococcusp oniaein
1928.American
O.
Avery,C.Macleod and
M.
McCarthydiscover
DNA
as
thegenetic
materials
in
1944.Frederik.Zernike
(18881966)
,DutchThe
Nobel
Prize
in
Physics
1953"for
his
demonstration
of
the
phase
contrast
method,
especially
for
hisinvention
of
the
phase
contrast
microscope
in
1932"J.
D.
WatsonF.
H.
C.CrickM.H.F.
WilkinsThe
Nobel
Prize
in
Physiologyor
Medicine
1962"for
their
discoveries
concerning
the
molecular
structure
of
nucleic
acidsand
its
significance
for
information
transfer
in
living
material"The
Nobel
Prize
in
Physiology
or
Medicine
1984"for
theories
concerning
the
specificity
in
development
and
control
ofthe
immune
system
and
the
discovery
of
the
principle
for
production
ofmonoclonal
antibodies"Niels
K.
JerneGe es
J.F.K?hlerBasel
Institute
forImmunologyBasel,SwitzerlandCésar
MilsteBasel
Institutefor
ImmunologyBasel,SwitzerlandMRC
Laboratoryof
MolecularBiologyCambridge,United
KingdomAmerican
K.B.Mullis
inventedthe
polymerase
chain
reaction(
PCR)
method
in
1983
andwon
the
The
Nobel
Prize
inChemistry
1993The
Discovery
of
p53(Cho
et
al.,
Science
265(1994)346).Leland
H.HartwellR.
TimothyHuntSir
Paul
M.NurseThe
Nobel
Prize
in
Physiology
or
Medicine
2001"for
their
discoveries
of
key
regulators
of
the
cell
cycle"Fred
HutchinsonCancer
ResearchCenterSeattle,WA,
USAImperial
CancerResearch
FundLondon,
UnitedKingdomImperial
CancerResearch
FundLondon,
UnitedKingdomSydneyBrennerH.
Robert
HorvitzJohn
E.
SulstonThe
Nobel
Prize
in
Physiology
or
Medicine
2002"for
their
discoveries
concerning
'genetic
regulation
of
andevelopment
and
programmed
cell
death'"The
MolecularSciences
InstituteBerkeley,
CA,
USAMassachusettsInstitute
ofTechnology
(MIT)Cambridge,
MA,
USAThe
e
TrustSanger
InstituteCambridge,
UnitedKingdomAmerican
Peter
Agre
and
Roderick
Mackinnon
won
theNobel
Prize
in
Chemistry
2003
"for
discoveries
concerningchannels
incellmembranes"Peter
AgreRoderick
MacKinnon"for
the
discovery
of
waterchannels""for
structural
andmechanisticstudies
of
ion
channels"The
Nobel
Prize
in
Chemistry
2008"for
the
discovery
and
development
of
the
green
fluorescent
protein,
GFP"OsamuShimomuraMarine
BiologicalLaboratory
(MBL)Woods
Hole,
MA,USA;
BostonUniversityMedical
SchoolMassachusetts,MA,
USAMartin
ChalfieRoger
Y.
TsienUniversity
ofCaliforniaSan
Diego,
CA,USA;
HowardHughes
MedicalInstituteColumbiaUniversityNew
York,
NY,USAClony
Dolly
sheep
born
inRoslin
Institute,
Scottland,1997DollyJuly
5,1996
~
February
14,2003Ian
WilmutKeith
cambellStem
cellsThe
Nobel
Prize
in
Physiology
or
Medicine
2007"for
their
discoveries
of
principles
for
introducing
specific
genemodifications
in
mice
by
the
use
of
embryonic
stem
cells"Mario
R.C
cchiUniversity
ofUtahSalt
Lake
City,UT,
USA;Howard
HughesMedical
InstituteSir
Martin
J.EvansOliverSmithiesCardiffUniversityCardiff,
UnitedKingdomUniversity
ofNorth
Carolinaat
Ch l
HillCh l
Hill,
NC,USAThe
Nobel
Prize
in
Physiology
or
Medicine
2009"for
the
discovery
of
how
chromosomes
are
protected
byomeres and
the
enzyme
omerase"Elizabeth
H.BlackburnCarol
W.GreiderJack
W.SzostakInduced
pluripotent
stem
(ips)
cellhtt/nbt/journal/v26/n11/fig_tab/nbt1108-1246_F1.htmlOct3/4、Sox2、Klf4、c-MycThe
Nobel
Prize
in
Physiology
orMedicine
2012"for
the
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