The semaphorin proteins are among the best-studied families of guidance cues, contributing to morphogenesis and homeostasis in a wide range of tissue types. The major semaphorin receptors are plexins and neuropilins, however other receptors and co-receptors are capable to mediate signaling by semaphorins. These guidance proteins were originally identified as growth cone collapsing factors or as inhibitory signals, crucial for nervous system development. Since those seminal discoveries, the list of functions of semaphorins has rapidly grown. Over the past few years, a growing body of data indicates that semaphorins are involved in the regulation of the immune and vascular systems, in tumor growth/cancer cell metastasis and in neural circuit ...
Semaphorins constitute a large family of membrane-bound and secreted proteins that provide guidance ...
In the developing nervous system, extending axons are directed towards their appropriate targets by ...
During development, the brain develops from a few cells to a highly connected and complex organ cont...
In mammals, fertility critically depends on the pulsatile secretion of gonadotropin-releasing hormon...
In mammals fertility depends on timely onset and cyclic secretion of gonadotropin-releasing hormone ...
International audienceSemaphorin proteins are among the best-studied families of guidance cues. Init...
Cell-cell signaling mechanisms of multicellular organisms regulate human development during embryoge...
Semaphorins are a large family of secreted or cell-bound signals, known to guide axons in developing...
In mammals, reproduction is dependent on specific neurons secreting the neuropeptide gonadotropin ho...
Reproduction in mammals is dependent on the function of specific neurons that secrete gonadotropin-r...
The semaphorin family is a large group of proteins controlling cell migration and axonal growth cone...
Semaphorins are a large family of secreted and membrane-bound molecules initially implicated in the ...
Semaphorins, the plexin family of semaphorin receptors, and scatter factor receptors share evolution...
Funder: Nederlandse Organisatie voor Wetenschappelijk Onderzoek (Netherlands Organisation for Scient...
Glioblastoma (GBM) is the most malignant tumor type affecting the adult central nervous system. Desp...
Semaphorins constitute a large family of membrane-bound and secreted proteins that provide guidance ...
In the developing nervous system, extending axons are directed towards their appropriate targets by ...
During development, the brain develops from a few cells to a highly connected and complex organ cont...
In mammals, fertility critically depends on the pulsatile secretion of gonadotropin-releasing hormon...
In mammals fertility depends on timely onset and cyclic secretion of gonadotropin-releasing hormone ...
International audienceSemaphorin proteins are among the best-studied families of guidance cues. Init...
Cell-cell signaling mechanisms of multicellular organisms regulate human development during embryoge...
Semaphorins are a large family of secreted or cell-bound signals, known to guide axons in developing...
In mammals, reproduction is dependent on specific neurons secreting the neuropeptide gonadotropin ho...
Reproduction in mammals is dependent on the function of specific neurons that secrete gonadotropin-r...
The semaphorin family is a large group of proteins controlling cell migration and axonal growth cone...
Semaphorins are a large family of secreted and membrane-bound molecules initially implicated in the ...
Semaphorins, the plexin family of semaphorin receptors, and scatter factor receptors share evolution...
Funder: Nederlandse Organisatie voor Wetenschappelijk Onderzoek (Netherlands Organisation for Scient...
Glioblastoma (GBM) is the most malignant tumor type affecting the adult central nervous system. Desp...
Semaphorins constitute a large family of membrane-bound and secreted proteins that provide guidance ...
In the developing nervous system, extending axons are directed towards their appropriate targets by ...
During development, the brain develops from a few cells to a highly connected and complex organ cont...