共查询到20条相似文献,搜索用时 15 毫秒
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Andersson ER 《Cellular and molecular life sciences : CMLS》2012,69(11):1755-1771
Endocytosis is increasingly understood to play crucial roles in most signaling pathways, from determining which signaling components are activated, to how the signal is subsequently transduced and/or terminated. Whether a receptor-ligand complex is internalized via a clathrin-dependent or clathrin-independent endocytic route, and the complexes' subsequent trafficking through specific endocytic compartments, to then be recycled or degraded, has profound effects on signaling output. This review discusses the roles of endocytosis in three markedly different signaling pathways: the Wnt, Notch, and Eph/Ephrin pathways. These offer fundamentally different signaling systems: (1) diffusible ligands inducing signaling in one cell, (2) membrane-tethered ligands inducing signaling in a contacting receptor cell, and (3) bi-directional receptor-ligand signaling in two contacting cells. In each of these systems, endocytosis controls signaling in fascinating ways, and comparison of their similarities and dissimilarities will help to expand our understanding of endocytic control of signal transduction across multiple signaling pathways. 相似文献
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Role of Sam68 as an adaptor protein in signal transduction 总被引:3,自引:0,他引:3
Najib S Martín-Romero C González-Yanes C Sánchez-Margalet V 《Cellular and molecular life sciences : CMLS》2005,62(1):36-43
Sam68, the substrate of Src in mitosis, belongs to the family of RNA binding proteins. Sam68 contains consensus sequences to interact with other proteins via specific domains. Thus, Sam68 has various proline-rich sequences to interact with SH3 domain-containing proteins. Moreover, Sam68 also has a C-terminal domain rich in tyrosine residues that is a substrate for tyrosine kinases. Tyrosine phosphorylation of Sam68 promotes its interaction with SH2 containing proteins. The association of Sam68 with SH3 domain-containing proteins, and its tyrosine phosphorylation may negatively regulate its RNA binding activity. The presence of these consensus sequences to interact with different domains allows this protein to participate in signal transduction pathways triggered by tyrosine kinases. Thus, Sam68 participates in the signaling of T cell receptors, leptin and insulin receptors. In these systems Sam68 is tyrosine phosphorylated and recruited to specific signaling complexes. The participation of Sam68 in signaling suggests that it may function as an adaptor molecule, working as a dock to recruit other signaling molecules. Finally, the connection between this role of Sam68 in protein-protein interaction with RNA binding activity may connect signal transduction of tyrosine kinases with the regulation of RNA metabolism.Received 16 July 2004; received after revision 12 August 2004; accepted 18 August 2004 相似文献
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Joerg Fleischer Pablo Pregitzer Heinz Breer Jürgen Krieger 《Cellular and molecular life sciences : CMLS》2018,75(3):485-508
The sense of smell enables insects to recognize and discriminate a broad range of volatile chemicals in their environment originating from prey, host plants and conspecifics. These olfactory cues are received by olfactory sensory neurons (OSNs) that relay information about food sources, oviposition sites and mates to the brain and thus elicit distinct odor-evoked behaviors. Research over the last decades has greatly advanced our knowledge concerning the molecular basis underlying the reception of odorous compounds and the mechanisms of signal transduction in OSNs. The emerging picture clearly indicates that OSNs of insects recognize odorants and pheromones by means of ligand-binding membrane proteins encoded by large and diverse families of receptor genes. In contrast, the mechanisms of the chemo-electrical transduction process are not fully understood; the present status suggests a contribution of ionotropic as well as metabotropic mechanisms. In this review, we will summarize current knowledge on the peripheral mechanisms of odor sensing in insects focusing on olfactory receptors and their specific role in the recognition and transduction of odorant and pheromone signals by OSNs. 相似文献
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Plexins: axon guidance and signal transduction 总被引:6,自引:2,他引:4
Axon guidance represents a key stage in the formation of neuronal network. Axons are guided by a variety of guidance factors, such as semaphorins, ephrins and netrin. Plexins function as receptors for the repulsive axonal guidance molecules semaphorins. Intracellular domains of plexins are responsible for initiating cellular signal transduction inducing axon repulsion. Recent advances have revealed molecular mechanisms for plexin-mediated cytoskeletal reorganization, leading to repulsive responses, and small GTPases play important roles in this signaling. Plexin-B1 activates Rho through Rho-specific guanine nucleotide exchange factors, leading to neurite retraction. Plexin-B1 possesses an intrinsic GTPase-activating protein activity for R-Ras and induces growth cone collapse through R-Ras inactivation. In this review we survey current understanding of the signaling mechanisms of plexins.Received 13 January 2005; received after revision 3 February 2005; accepted 15 February 2005 相似文献
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MAP kinases in plant signal transduction 总被引:10,自引:0,他引:10
Mitogen-activated protein kinase (MAPK) pathways are modules involved in the transduction of extracellular signals to intracellular
targets in all eukaryotes. Distinct MAPK pathways are regulated by different extracellular stimuli and are implicated in a
wide variety of biological processes. In plants there is evidence for MAPKs playing a role in the signaling of abiotic stresses,
pathogens and plant hormones. The large number and divergence of plant MAPKs indicates that this ancient mechanism of bioinformatics
is extensively used in plants and may provide a new molecular handle on old questions. 相似文献
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Nitric oxide stimulates human neural progenitor cell migration via cGMP-mediated signal transduction
Tegenge MA Rockel TD Fritsche E Bicker G 《Cellular and molecular life sciences : CMLS》2011,68(12):2089-2099
Neuronal migration is one of the most critical processes during early brain development. The gaseous messenger nitric oxide
(NO) has been shown to modulate neuronal and glial migration in various experimental models. Here, we analyze a potential
role for NO signaling in the migration of fetal human neural progenitor cells. Cells migrate out of cultured neurospheres
and differentiate into both neuronal and glial cells. The neurosphere cultures express neuronal nitric oxide synthase and
soluble guanylyl cyclase that produces cGMP upon activation with NO. By employing small bioactive enzyme activators and inhibitors
in both gain and loss of function experiments, we show NO/cGMP signaling as a positive regulator of migration in neurosphere
cultures of early developing human brain cells. Since NO signaling regulates cell movements from developing insects to mammalian
nervous systems, this transduction pathway may have evolutionary conserved functions. 相似文献
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Angiogenesis and signal transduction in endothelial cells 总被引:11,自引:0,他引:11
Muñoz-Chápuli R Quesada AR Angel Medina M 《Cellular and molecular life sciences : CMLS》2004,61(17):2224-2243
Endothelial cells receive multiple information from their environment that eventually leads them to progress along all the stages of the process of formation of new vessels. Angiogenic signals promote endothelial cell proliferation, increased resistance to apoptosis, changes in proteolytic balance, cytoskeletal reorganization, migration and, finally, differentiation and formation of a new vascular lumen. We aim to review herein the main signaling cascades that become activated in angiogenic endothelial cells as well as the opportunities of modulating angiogenesis through pharmacological interference with these signaling mechanisms. We will deal mainly with the mitogen-activated protein kinases pathway, which is very important in the transduction of proliferation signals; the phosphatidylinositol-3-kinase/protein kinase B signaling system, particularly essential for the survival of the angiogenic endothelium; the small GTPases involved in cytoskeletal reorganization and migration; and the kinases associated to focal adhesions which contribute to integrate the pathways from the two main sources of angiogenic signals, i.e. growth factors and the extracellular matrix.Received 13 February 2004; received after revision 25 March 2004; accepted 19 April 2004 相似文献
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Engagement of antigen receptors on lymphocytes leads to a myriad of complex signal transduction cascades. Recently, work from several laboratories has led to the identification and characterization of novel adapter molecules, proteins with no intrinsic enzymatic activity but which integrate signal transduction pathways by mediating protein-protein interactions. Interestingly, it appears that many of these adapter proteins play as critical a role as the effector enzymes themselves in both lymphocyte development and activation. This review describes some of the biochemical and molecular features of several of these newly identified hematopoietic cell-specific adapter molecules highlighting their importance in regulating (both positively and negatively) signal transduction mediated by the T cell antigen receptor. 相似文献
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Frings S 《Cellular and molecular life sciences : CMLS》2001,58(4):510-519
When odorants bind to the sensory cilia of olfactory sensory neurons, the cells respond with an electrical output signal,
typically a short train of action potentials. This review describes the present state of knowledge about the olfactory signal
transduction process. In the last decade, a set of transduction molecules has been identified which help to explain many aspects
of the sensory response. Odor-induced second-messenger production, activation of transduction channels, the central role of
the ciliary Ca2+ concentration, as well as mechanisms that mediate adaptation, are all qualitatively understood on the basis of a consistent
scheme for chemoelectrical transduction. This scheme, although necessarily incomplete, can serve as a working model for further
experimentation which may reveal kinetical aspects of signal transduction processes in olfactory sensory neurons. 相似文献
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The role of ras and other low molecular weight guanine nucleotide (GTP)-binding proteins during hematopoietic cell differentiation 总被引:5,自引:0,他引:5
Recent progress in the understanding of signal transduction and gene regulation in hematopoietic cells has shown that many intracellular signalling pathways are modulated by low molecular weight guanine nucleotide (GTP)-binding proteins (LMWGs). LMWGs act as molecular switches for regulating a wide range of signal-transduction pathways in virtually all cells. In hematopoietic cells, LMWGs have been shown to participate in essential functions such as growth control, differentiation, cytoskeletal organization, cytokine and chemoattractant-induced signalling events, reduced nicotinamide adenine dinucleotide phosphate oxidase activity, intracellular vesicle transport and secretion. In human leukemias, myelodysplastic syndromes and myeloproliferative disorders, Ras activation occurs by point mutations, overexpression or by alteration of NF-1 Ras-GTPase activating protein (GAP). These are postinitiation events in leukemia but may modulate growth-factor-dependent and independent leukemic growth. Two animal models of mutated N-ras expression resulting in myelodysplastic and myeloproliferative features are discussed. The role of Ras in organ development is discussed in the context of transgenic knockout mice. More LMWG functions will certainly be identified as we gain a better understanding of regulatory pathways modulating myeloid signal transduction. This review will summarize our current understanding of this rapidly advancing area of research. 相似文献
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Glycine-rich proteins as structural components of plant cell walls 总被引:12,自引:0,他引:12
Glycine-rich proteins (GRPs) have been found in the cell walls of many higher plants and form a third group of structural
protein components of the wall in addition to extensins and proline-rich proteins. The primary sequences of GRPs contain more
than 60% glycine. GRPs are localized mainly in the vascular tissue of the plant, and their coding genes provide an excellent
system to analyze the molecular basis of vascular-specific gene expression. In French bean, the major cell wall GRP has been
localized at the ultrastructural level in the modified primary cell wall of protoxylem. Immunological studies showed that
it forms a major part of these highly extensible and specialized cell walls. Specific digestion of GRP1.8 from bean by collagenase
suggests that it shares structural similarities with collagen. The protein is synthesized by living protoxylem cells as well
as xylem parenchyma cells. After cell death, GRPs are exported from neighboring xylem parenchyma cells to the protoxylem wall,
a rare example of protein transport between cells in plants. We propose that GRPs are part of a repair system of the plant
during the stretching phase of protoxylem. 相似文献
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Introduction: plant cell wall proteins 总被引:4,自引:0,他引:4
A M Showalter 《Cellular and molecular life sciences : CMLS》2001,58(10):1361-1362
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Heat shock proteins and virus replication: hsp70s as mediators of the antiviral effects of prostaglandins 总被引:1,自引:0,他引:1
M. G. Santoro 《Cellular and molecular life sciences : CMLS》1994,50(11-12):1039-1047
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Résumé La mise au point d'un milieu synthétique pour cellules d'insectes a permis de caractériser deux actions complémentaires des protéines du sérum qu'il fallait jusqu'alors ajouter au milieu de culture. La première, revient à une protection des cellules par les antiprotéases du sérum, notamment à l'occasion de leur repiquage. L'autre, objet de ce travail, établit le rôle de certaines protéines-transport, et plus particulièrement de celles servant de support à la vitamine B12. 相似文献
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A. V. Sanin 《Cellular and molecular life sciences : CMLS》1987,43(4):432-433
Summary Utilizing specific rabbit antiserum againstM. arthritidis together with complement, a portion of the marrow 7-day CFUs population of CBA mice infected with live mycoplasma organisms 1 day previously was shown to be inactivated. These cells might therefore be considered as candidate target cells forM. arthritidis. 11-day CFUs were unaffected by similar treatment. 相似文献
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MurNAc etherases cleave the uniqued-lactyl ether bond of the bacterial cell wall sugar N-acetylmuramic acid (MurNAc). Members of this newly discovered family of enzymes are widely distributed among bacteria and
are required to utilize peptidoglycan fragments obtained either from the environment or from the endogenous cell wall (i.e.,
recycling). MurNAc etherases are strictly dependent on the substrate MurNAc possessing a free reducing end and a phosphoryl
group at C6. They carry a single conserved sugar phosphate isomerase/sugar phosphate- binding (SIS) domain to which MurNAc
6-phosphate is bound. Two subunits form an enzymatically active homodimer that structurally resembles the isomerase module
of the double-SIS domain protein GlmS, the glucosamine 6-phosphate synthase. Structural comparison provides insights into
the two-step lyase-type reaction mechanism of MurNAc etherases: β-elimination of the D-lactic acid substituent proceeds through
a 2,3-unsaturated sugar intermediate to which water is subsequently added.
Received 31 August 2007; received after revision 12 October 2007; accepted 1 November 2007 相似文献