Chemical glycobiology
Beilstein Journal of Organic Chemistry,
Год журнала:
2025,
Номер
21, С. 8 - 9
Опубликована: Янв. 3, 2025
Язык: Английский
Impact of glycan nature on structure and viscoelastic properties of glycopeptide hydrogels
Journal of Peptide Science,
Год журнала:
2024,
Номер
30(8)
Опубликована: Апрель 3, 2024
Mucus
is
a
complex
biological
hydrogel
that
acts
as
barrier
for
almost
everything
entering
or
exiting
the
body.
It
therefore
of
emerging
interest
biomedical
and
pharmaceutical
applications.
Besides
water,
most
abundant
components
are
large
densely
glycosylated
mucins,
glycoproteins
up
to
20
MDa
carbohydrate
content
80
wt%.
Here,
we
designed
explored
library
peptides
deconstruct
complexity
mucus.
Using
well-characterized
hFF03
coiled-coil
system
hydrogel-forming
peptide
scaffold,
systematically
probed
contribution
single
glycans
secondary
structure
well
formation
viscoelastic
properties
resulting
hydrogels.
We
show
glycan-decoration
does
not
affect
α-helix
while
it
alters
gel
stiffness.
By
using
oscillatory
macrorheology,
dynamic
light
scattering
microrheology,
fluorescence
lifetime-based
nanorheology,
characterized
glycopeptide
materials
over
several
length
scales.
Molecular
simulations
revealed
linker
may
extend
into
solvent,
but
more
frequently
interacts
with
peptide,
thereby
likely
modifying
stability
self-assembled
fibers.
This
systematic
study
highlights
interplay
between
glycan
guide
development
synthetic
mucus
mimetics.
Язык: Английский
Carbohydrate NMR chemical shift prediction by GeqShift employing E(3) equivariant graph neural networks
RSC Advances,
Год журнала:
2024,
Номер
14(36), С. 26585 - 26595
Опубликована: Янв. 1, 2024
Visual
abstract
of
GeqShift,
an
E(3)
equivariant
graph
neural
network
for
predicting
carbohydrate
NMR
shifts.
The
model
excels
in
stereochemical
invariance,
offering
superior
molecular
geometry
understanding
over
traditional
methods.
Язык: Английский
Impact of glycan nature on structure and viscoelastic properties of glycopeptide hydrogels
Опубликована: Янв. 23, 2024
Mucus
is
a
complex
biological
hydrogel
that
acts
as
barrier
for
almost
everything
entering
or
exiting
the
body.
It
therefore
of
emerging
interest
biomedical
and
pharmaceutical
applications.
Besides
water,
most
abundant
components
are
large
densely
glycosylated
mucins,
family
glycoproteins
with
sizes
up
to
20
MDa
carbohydrate
content
80
wt%.
Here,
we
designed
explored
library
peptides
deconstruct
complexity
mucus.
By
using
well
characterised
hFF03
coiled-coil
system
hydrogel-forming
peptide
scaffold,
systematically
probed
contribution
single
glycans
secondary
structure
formation
viscoelastic
properties
resulting
hydrogels.
We
show
glycan-decoration
does
not
affect
α
helix
while
it
alters
gel
stiffness.
oscillatory
macrorheology,
dynamic
light
scattering
microrheology
fluorescence
lifetime-based
nanorheology,
glycopeptide
materials
over
several
length
scales.
Molecular
simulations
revealed
linker
may
extend
into
solvent,
but
more
frequently
interacts
peptide,
thereby
likely
modifying
stability
self-assembled
fibres.
The
results
this
systematic
study
highlight
interplay
between
glycan
guide
development
synthetic
mucus
mimetics.
Язык: Английский