Cold Spring Harbor Perspectives in Medicine,
Год журнала:
2023,
Номер
14(5), С. a041384 - a041384
Опубликована: Июль 24, 2023
Francisco
J.
Sánchez
Rivera1,2
and
Lukas
E.
Dow3,4,5
1David
H.
Koch
Institute
for
Integrative
Cancer
Research,
Massachusetts
of
Technology,
Cambridge,
02142,
USA
2Department
Biology,
3Sandra
Edward
Meyer
Center,
Weill
Cornell
Medicine,
New
York,
York
10065,
4Department
Biochemistry,
5Department
Correspondence:
fsr{at}mit.edu;
lud2005{at}med.cornell.edu
Nature Communications,
Год журнала:
2024,
Номер
15(1)
Опубликована: Ноя. 29, 2024
Abstract
Despite
its
broad
application
in
vitro
studies,
the
of
targeted
protein
degradation
(TPD)
to
animal
models
faces
considerable
challenges.
Here,
we
develop
inducible
and
cell-type
specific
TPD
systems
mice
using
two
degron
systems:
Oryza
sativa
TIR1
F74G
(OsTIR1)-auxin-inducible
2
(AID2)
human
cereblon
(hCRBN)-SALL4
(S4D).
Efficient
Satb1
Venus
by
these
recapitulates
phenotypes
observed
Satb1-deficient
mice.
These
are
successfully
applied
both
fetal
neonatal
stages.
The
OsTIR1-AID2
system
proves
be
effective
for
membrane
proteins
such
as
PD-1,
emulating
effects
anti-PD-1
antibody.
Degradation
Bcl11b
reveals
a
role
which
was
not
characterized
Cre-loxP
system.
Collectively,
vivo
technologies
developed
this
study
enable
inducible,
temporal,
cell
type-specific
depletion
target
with
high
efficacy
have
wide
range
applications
diverse
fields
biological
medical
research.
Essays in Biochemistry,
Год журнала:
2022,
Номер
66(2), С. 75 - 85
Опубликована: Авг. 1, 2022
Abstract
The
Green
Revolution
of
the
1960s
accomplished
dramatic
increases
in
crop
yields
through
genetic
improvement,
chemical
fertilisers,
irrigation,
and
mechanisation.
However,
current
trajectory
population
growth,
against
a
backdrop
climate
change
geopolitical
unrest,
predicts
that
agricultural
production
will
be
insufficient
to
ensure
global
food
security
next
three
decades.
Improvements
crops
go
beyond
incremental
gains
are
urgently
needed.
Plant
biology
has
also
undergone
revolution
recent
years,
development
application
powerful
technologies
including
genome
sequencing,
pantheon
‘omics
techniques,
precise
editing,
step
changes
structural
microscopy.
Proteostasis
–
collective
processes
control
protein
complement
cell,
comprising
synthesis,
modification,
localisation,
degradation
is
field
benefitted
from
these
advances.
This
special
issue
presents
selection
latest
research
this
vibrant
field,
with
particular
focus
on
degradation.
In
article,
we
highlight
diverse
widespread
contributions
plant
proteostasis
agronomic
traits,
suggest
opportunities
strategies
manipulate
different
elements
proteostatic
mechanisms
for
discuss
challenges
involved
bringing
ideas
into
practice.
International Journal of Molecular Sciences,
Год журнала:
2023,
Номер
24(7), С. 6526 - 6526
Опубликована: Март 30, 2023
Optogenetic
systems
driven
by
yellow-orange
light
are
required
for
the
simultaneous
regulation
of
several
cellular
processes.
We
have
engineered
red
fluorescent
protein
FusionRed
into
a
26
kDa
monomeric
optogenetic
module,
called
degFusionRed.
Unlike
other
protein-based
domains,
which
exhibit
light-induced
self-inactivation
generating
reactive
oxygen
species,
degFusionRed
undergoes
proteasomal
degradation
upon
illumination
with
567
nm
light.
Similarly
to
parent
protein,
has
minimal
absorbance
at
450
and
above
650
nm,
making
it
spectrally
compatible
blue
near-infrared-light-controlled
tools.
The
autocatalytically
formed
chromophore
provides
an
additional
advantage
over
most
tools
that
require
binding
exogenous
chromophores,
amount
varies
in
different
cells.
efficiently
performed
light-controlled
transcription
factor
targeted
photodegradation
interest,
demonstrating
its
versatility
as
module
choice
spectral
multiplexed
interrogation
various
Cold Spring Harbor Perspectives in Medicine,
Год журнала:
2023,
Номер
14(5), С. a041384 - a041384
Опубликована: Июль 24, 2023
Francisco
J.
Sánchez
Rivera1,2
and
Lukas
E.
Dow3,4,5
1David
H.
Koch
Institute
for
Integrative
Cancer
Research,
Massachusetts
of
Technology,
Cambridge,
02142,
USA
2Department
Biology,
3Sandra
Edward
Meyer
Center,
Weill
Cornell
Medicine,
New
York,
York
10065,
4Department
Biochemistry,
5Department
Correspondence:
fsr{at}mit.edu;
lud2005{at}med.cornell.edu