Glycans and neural cell interactions.

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Glycans and neural cell interactions. / Kleene, Ralf; Schachner, Melitta.

in: NAT REV NEUROSCI, Jahrgang 5, Nr. 3, 3, 2004, S. 195-208.

Publikationen: SCORING: Beitrag in Fachzeitschrift/ZeitungSCORING: ZeitschriftenaufsatzForschungBegutachtung

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Kleene R, Schachner M. Glycans and neural cell interactions. NAT REV NEUROSCI. 2004;5(3):195-208. 3.

Bibtex

@article{297451d694b24614a9fe7ec74364458c,
title = "Glycans and neural cell interactions.",
abstract = "Carbohydrate-carrying molecules in the nervous system have important roles during development, regeneration and synaptic plasticity. Carbohydrates mediate interactions between recognition molecules, thereby contributing to the formation of a complex molecular meshwork at the cell surface and in the extracellular matrix. The tremendous structural diversity of glycan chains allows for immense combinatorial possibilities that might underlie the fine-tuning of cell-cell and cell-matrix interactions.",
keywords = "Animals, Humans, Amino Acid Sequence, Molecular Sequence Data, Sequence Alignment, Neuronal Plasticity, Carbohydrate Sequence, Extracellular Matrix/*metabolism, Carbohydrate Conformation, *Cell Communication, Circadian Rhythm/physiology, Nervous System Diseases/metabolism, Neural Cell Adhesion Molecules/genetics/metabolism, Neurons/chemistry/*physiology, Polysaccharides/chemistry/*metabolism, Animals, Humans, Amino Acid Sequence, Molecular Sequence Data, Sequence Alignment, Neuronal Plasticity, Carbohydrate Sequence, Extracellular Matrix/*metabolism, Carbohydrate Conformation, *Cell Communication, Circadian Rhythm/physiology, Nervous System Diseases/metabolism, Neural Cell Adhesion Molecules/genetics/metabolism, Neurons/chemistry/*physiology, Polysaccharides/chemistry/*metabolism",
author = "Ralf Kleene and Melitta Schachner",
year = "2004",
language = "English",
volume = "5",
pages = "195--208",
journal = "NAT REV NEUROSCI",
issn = "1471-003X",
publisher = "NATURE PUBLISHING GROUP",
number = "3",

}

RIS

TY - JOUR

T1 - Glycans and neural cell interactions.

AU - Kleene, Ralf

AU - Schachner, Melitta

PY - 2004

Y1 - 2004

N2 - Carbohydrate-carrying molecules in the nervous system have important roles during development, regeneration and synaptic plasticity. Carbohydrates mediate interactions between recognition molecules, thereby contributing to the formation of a complex molecular meshwork at the cell surface and in the extracellular matrix. The tremendous structural diversity of glycan chains allows for immense combinatorial possibilities that might underlie the fine-tuning of cell-cell and cell-matrix interactions.

AB - Carbohydrate-carrying molecules in the nervous system have important roles during development, regeneration and synaptic plasticity. Carbohydrates mediate interactions between recognition molecules, thereby contributing to the formation of a complex molecular meshwork at the cell surface and in the extracellular matrix. The tremendous structural diversity of glycan chains allows for immense combinatorial possibilities that might underlie the fine-tuning of cell-cell and cell-matrix interactions.

KW - Animals

KW - Humans

KW - Amino Acid Sequence

KW - Molecular Sequence Data

KW - Sequence Alignment

KW - Neuronal Plasticity

KW - Carbohydrate Sequence

KW - Extracellular Matrix/metabolism

KW - Carbohydrate Conformation

KW - Cell Communication

KW - Circadian Rhythm/physiology

KW - Nervous System Diseases/metabolism

KW - Neural Cell Adhesion Molecules/genetics/metabolism

KW - Neurons/chemistry/physiology

KW - Polysaccharides/chemistry/metabolism

KW - Animals

KW - Humans

KW - Amino Acid Sequence

KW - Molecular Sequence Data

KW - Sequence Alignment

KW - Neuronal Plasticity

KW - Carbohydrate Sequence

KW - Extracellular Matrix/metabolism

KW - Carbohydrate Conformation

KW - Cell Communication

KW - Circadian Rhythm/physiology

KW - Nervous System Diseases/metabolism

KW - Neural Cell Adhesion Molecules/genetics/metabolism

KW - Neurons/chemistry/physiology

KW - Polysaccharides/chemistry/metabolism

M3 - SCORING: Journal article

VL - 5

SP - 195

EP - 208

JO - NAT REV NEUROSCI

JF - NAT REV NEUROSCI

SN - 1471-003X

IS - 3

M1 - 3

ER -