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Zinc, copper and manganese enhanced keratinocyte migration through a functional modulation of keratinocyte integrins.

The migration of keratinocytes plays an important role in the re-epithelialization of cutaneous wounds. Zinc, copper and manganese are used in vivo for their healing properties and their mechanism of action is still only partially known. Thus, they have been shown both to promote keratinocyte proliferation and to modulate integrins expression. The aim of this study was to determine if trace elements induce an increase of the migration of keratinocytes and if this effect is related to the modulation of integrins. Two independent migration assays were used to study keratinocyte migration: the scratch assay using normal human keratinocytes and the modified Boyden chamber using HaCaT cells. Inhibition studies using function-blocking antibodies directed to alpha3, alpha6, alpha(v) and beta1 subunits were performed to investigate the modulator effect of trace elements on integrin function. In this way, zinc and copper gluconates increased alpha3, alpha(v) and beta1 function whereas manganese gluconate seems mainly able to modulate the function of alpha3 and beta1. The stimulating effect of these trace elements on keratinocyte migration does not appear related to alpha6 subunit. Thus, zinc, copper and manganese enhanced keratinocyte migration and one of the mechanisms was going through a modulation of integrin functions.

3T3 Cells↗

Role of beta1 integrins in adhesion and invasion of hepatocellular carcinoma cells.

To investigate the role of integrins in hepatocellular carcinoma (HCC) invasion, we analyzed the relationship between the expression and activity of beta1 integrins and the invasive ability of multiple HCC cell lines. Human HCC cell lines, PLC/PRF/5, Hep3B, HepG2, HLE, HuH7, and C3A cells, had high expression of beta1 and alpha6 subunits, and various levels of alpha1, alpha2, alpha3, and alpha5 expression as determined by cell surface flow cytometry. Activity of beta1 integrins was evaluated by cell adhesion to collagen, fibronectin, and laminin in the presence or absence of the stimulatory anti-beta1 monoclonal antibody (mAb) TS2/16. Different types of HCC cells showed various levels of constitutive activity of beta1 integrins as assessed by the TS2/16 requirement in cell adhesion. TS2/16 rapidly stimulated constitutively inactive or partially active beta1 integrins to fully active states, and as the result, the levels of cell adhesion to each ligand correlated with the expression levels of corresponding beta1 integrins. Thus, in the presence of TS2/16 stimulation, the levels of cell adhesion to collagen, fibronectin, and laminin correlated predominantly with the expression levels of alpha2, alpha5, and alpha6, respectively. Remarkably, as a result of in vitro chemoinvasion assay, the levels of constitutive activity of beta1 integrins correlated with the invasive ability of HCC cells. The inhibitory anti-beta1 mAb 13 almost completely blocked the invasion of PLC/PRF/5 and Hep3B cells that are the most invasive HCC cell lines. Alternatively, the stimulatory anti-beta1 mAb TS2/16 strongly inhibited the invasion. These results not only show an essential role of beta1 integrins in invasion of HCC cells but also suggest subtle regulatory mechanisms of cell invasion.

Antibodies, Monoclonal↗

Developmental regulation of beta1 integrins during angiogenesis in the central nervous system.

We examined beta1 integrin expression during angiogenesis in the developing mouse CNS. Maturation of blood vessels was accompanied by three main events: (1) marked upregulation of beta1 integrin expression; (2) a switch in beta1 integrin expression, from alpha4 and alpha5 at postnatal day 1 to alpha1 and alpha6 in the adult; and (3) downregulation of fibronectin and upregulation of laminin expression. Thus, blood vessel maturation was associated with a developmental switch, from fibronectin-mediated signaling early in angiogenesis, to laminin-mediated signaling at later stages. To investigate the potential role of alpha4 and alpha5 integrins in angiogenesis, we developed a novel approach to purify endothelial cells from the CNS by selective adhesion to fibronectin. BrdU incorporation showed that fibronectin induced more endothelial cell proliferation than laminin, and antibody-blocking studies revealed that fibronectin mediated its effect via both alpha4 and alpha5 integrins. This work provides the first evidence that there is a developmental switch in the use of beta1 integrins during angiogenesis. Furthermore, it suggests that regulation of beta1 integrin and ECM expression by endothelial cells are important factors influencing vascular development in the CNS.

Aging↗

Altered expression of integrins in RSV-transformed chick epiphyseal chondrocytes.

Chondrocytes have been shown to express both in vivo and in vitro a number of integrins of the beta1-, beta3- and beta5-subfamilies (Biorheology 37 (2000) 109). Normal and v-Src-transformed chick epiphyseal chondrocytes (CEC) display different adhesion properties. While normal CEC with time in culture tends to increase their adhesion to the substrate by organizing focal adhesions and actin stress fibers, v-Src-transformed chondrocytes display a refractile morphology and disorganization of actin cytoskeleton. We wondered whether the reduced adhesion and spreading of v-Src-transformed chondrocytes could be ascribed to changes in integrin expression and/or function. Integrin expression by normal CEC is studied and compared to v-Src-transformed chick chondrocytes, using monoclonal and polyclonal antibodies to integrins alpha- and beta-chains. We show the presence of alpha1-, alpha3-, alphav-, alpha6-, beta1- and beta3-chains on CEC, with very low levels of alpha2- and alpha5-chains. Alphav chain associates with multiple beta subunits in normal and transformed chondrocytes. With the exception of alpha1- and alpha2-chains, the levels of the integrin chains analyzed are higher in transformed chondrocytes as compared with normal chondrocytes. In spite of the increased levels of integrin expression, transformed chondrocytes exhibit loss of focal adhesion and actin stress fibers and low adhesion activity on several extracellular matrix constituents. These observations raise the possibility that, in addition to its effects on global pattern of integrin expression, v-Src can influence integrin function in chondrocytes.

Actin Cytoskeleton↗

Adenomatous transformation of the human anterior pituitary is associated with alterations in integrin expression.

Integrins are heterodimeric transmembrane molecules that mediate cell-cell and cell-substratum adhesion. Because alterations in the adhesive properties of tumor cells influence tumor growth and progression, the distribution of different alpha and beta integrin subunits was studied in both the parenchyma and the connective tissue in 6 normal and 25 adenomatous human anterior pituitaries. All normal parenchymal cells expressed the alpha3beta1 and alpha6beta4 integrins. By contrast, in adenomatous parenchymal cells the expression of alpha3beta1 was down-regulated and that of alpha6beta4 abrogated. Neoexpression of alphavbeta3 Occurred in the parenchyma of a subset of adenomas. All normal connective tissue cells expressed the alpha1 and beta1 subunits, a third subunit (alpha5) being present in the normal endothelium. By comparison, all adenomatous stromal cells expressed many more integrin subunits (alpha1, alpha3, alpha5, alphav, beta1 and beta3), adenomatous endothelial cells bearing additional subunits (alpha6, beta4 and beta5). Vitronectin, absent from the normal connective tissue, was constantly observed in the adenomatous stroma. To conclude, compared with cells of the normal gland, adenomatous anterior pituitary cells display a decreased expression of integrins whereas the adenomatous stroma expresses a rich repertoire of integrins. These changes are not related to the secretory type, grade or invasiveness of the adenoma. The resulting alterations in the adhesive properties of adenomatous cells could facilitate their dissemination. Enrichment of the integrin repertoire expressed by the adenomatous vasculature is indicative of its dual nature, systemic and tumoral.

Adenoma↗

Stimulation of tyrosine phosphorylation after ligation of beta7 and beta1 integrins on human B cells.

B lymphocytes express several members of the integrin family of adhesion molecules that mediate cell-cell and cell-extracellular matrix interactions. In addition to beta1 integrins, predominantly alpha4 beta1, mature B cells also express alpha4 beta7, which is a receptor for vascular cell adhesion molecule-1 and fibronectin, and is also involved in the homing of B cells to mucosal sites through binding to a third ligand, mucosal address in cell adhesion molecule-1. Here we describe that crosslinking of alpha4 beta7 integrins on B cell lines and normal tonsillar B cells, induces tyrosine phosphorylation of multiple substrates of 105-130 kD, indicating that beta7 integrin plays a role as signaling molecule in B cells. This pattern of phosphorylated proteins was very similar to that induced following ligation of alpha4 beta1. Interestingly, ligation of alpha5 beta1 or alpha6 beta1 also stimulated the 105-125 kD group of phosphorylated proteins, whereas ligation of beta2 integrins did not. The focal adhesion tyrosine kinase p125FAK was identified as one of these substrates. Beta1 or beta7 mediated tyrosine phosphorylations were markedly decreased when the microfilament assembly was inhibited by cytochalasin B. These results suggest that intracellular signals initiated by different integrins in B cells may converge, to similar cytoskeleton-dependent tyrosine phosphorylated proteins.

Antibodies, Monoclonal↗

Expression of dominant-negative and chimeric subunits reveals an essential role for beta1 integrin during myelination.

Myelination represents a remarkable example of cell specialization and cell-cell interaction in development. During this process, axons are wrapped by concentric layers of cell membrane derived either from central nervous system (CNS) oligodendrocytes or peripheral nervous system Schwann cells. In the CNS, oligodendrocytes elaborate a membranous extension with an area of more than 1000 times that of the cell body. The mechanisms regulating this change in cell shape remain poorly understood. Signaling mechanisms regulated by cell surface adhesion receptors of the integrin family represent likely candidates. Integrins link the extracellular environment of the cell with both intracellular signaling molecules and the cytoskeleton and have been shown to regulate the activity of GTPases implicated in the control of cell shape. Our previous work has established that oligodendrocytes and their precursors express a limited repertoire of integrins. One of these, the alpha6beta1 laminin receptor, can interact with laminin-2 substrates to enhance oligodendrocyte myelin membrane formation in cell culture. However, these experiments do not address the important question of integrin function during myelination in vivo, nor do they define the respective roles of the alpha and beta subunits in the signaling pathways involved. Here, we use a dominant-negative approach to provide, for the first time, evidence that beta1 integrin function is required for myelination in vivo and use chimeric integrins to dissect apart the roles of the extracellular and cytoplasmic domains of the alpha6 subunit in the signaling pathways of myelination.

Animals↗

PTH-related protein upregulates integrin alpha6beta4 expression and activates Akt in breast cancer cells.

Breast cancer is the most common carcinoma that metastasizes to bone. Tumor-produced parathyroid hormone-related protein (PTHrP), a known stimulator of osteoclastic bone resorption, is a major mediator of the osteolytic process in breast cancer. We have previously shown that PTHrP increases breast cancer cell proliferation, survival, migration, and pro-invasive integrin alpha6beta4 expression. To determine the role of integrin alpha6beta4 in these PTHrP-mediated effects, we utilized two strategies to modulate expression of the alpha6 and beta4 subunits in parental and PTHrP-overexpressing MDA-MB-231 and MCF-7 cells: overexpression of alpha6beta4 by transfection with constructs encoding the alpha6 and beta4 subunits, and suppression of endogenous alpha6beta4 expression by transfection with siRNAs targeting these subunits. We now show that the effects of PTHrP are mediated via upregulation of integrin alpha6beta4 expression. We also show that integrin alpha6beta4 expression is modulated at the mRNA level, indicating a transcriptional and/or post-transcriptional mechanism of action for PTHrP. PTHrP expression also increased the levels of phosphorylated Akt, with a consequent increase in the levels of phosphorylated (inactive) glycogen synthase kinase-3 (GSK-3). The role of PTHrP in breast cancer growth and metastasis may thus be mediated via upregulation of integrin alpha6beta4 expression and Akt activation, with consequent inactivation of GSK-3.

Base Sequence↗

Laminin stimulates spreading of platelets through integrin alpha6beta1-dependent activation of GPVI.

The extracellular matrix protein, laminin, supports platelet adhesion through binding to integrin alpha6beta1 In the present study, we demonstrate that human laminin, purified from placenta, also stimulates formation of filopodia and lamellipodia in human and mouse platelets through a pathway that is dependent on alpha6beta1 and the collagen receptor GPVI. The integrin alpha6beta1 is essential for adhesion to laminin, as demonstrated using an alpha6-blocking antibody, whereas GPVI is dispensable for this response, as shown using "knockout" mouse platelets. On the other hand, lamellipodia formation on laminin is completely inhibited in the absence of GPVI, although filopodia formation remains and is presumably mediated via alpha6beta1 Lamellipodia and filopodia formation are inhibited in Syk-deficient platelets, demonstrating a key role for the kinase in signaling downstream of GPVI and integrin alpha6beta1 GPVI was confirmed as a receptor for laminin using surface plasmon resonance spectroscopy and by demonstration of lamellipodia formation on laminin in the presence of collagenase. These results identify GPVI as a novel receptor for laminin and support a model in which integrin alpha6beta1 brings laminin to GPVI, which in turn mediates lamellipodia formation. We speculate that laminin contributes to platelet spreading in vivo through a direct interaction with GPVI.

Animals↗

Extracellular matrix molecules improve periodontal ligament cell adhesion to anorganic bone matrix.

Bone replacement graft (BRG) materials are used in periodontal therapy to encourage new bone formation. Extracellular matrix proteins may improve periodontal ligament fibroblast (PDLF) attachment to these materials. We demonstrate that PDLFs adhere well to the extracellular matrix (ECM) proteins fibronectin, vitronectin, laminin, and collagen types I and IV. PDLFs express numerous ECM-receptor integrin subunit transcripts (alpha1, alpha2, alpha3, alpha4, alpha5, alpha11, beta1, beta5, and beta8) at high levels, while others (alpha6, alpha9, alphaV, beta3, beta6, and beta7) are expressed at reduced levels. Despite the fact that PDLFs adhere well to fibronectin and collagen type IV bound to plastic, and express integrins that recognize these ECM proteins, they do not attach well to anorganic bovine bone matrix (ABM) coated with these same proteins. However, the addition of vitronectin, laminin, or collagen type I to these same ABMs substantially increased PDL cell attachment. Thus, selective use of ECM proteins may be clinically useful in promoting cell attachment to ABM and bone regrowth.

Adsorption↗

Androgen receptor expression in prostate carcinoma cells suppresses alpha6beta4 integrin-mediated invasive phenotype.

Prostate cancer cells may lose androgen-sensitivity after androgen ablation therapy, becoming highly invasive and metastatic. The biological mechanisms responsible for higher tumurogenicity of androgen-independent prostate carcinomas are not entirely known. We demonstrate that androgen receptor regulation of adhesion and invasion of prostate cancer cells through modulation of alpha6beta4 integrin expression may be one of the molecular mechanisms responsible of this phenomenon. We found that protein and gene expressions of alpha6 and beta4 subunits were strongly reduced in the androgen-sensitive cell line LNCaP respect to the androgen-independent PC3 and that transfection of PC3 cells with a full-length androgen receptor expression vector resulted in a decreased expression of alpha6beta4 integrin, reduced adhesion on laminin, and suppressed Matrigel invasion. Growth in soft agar was also suppressed in androgen receptor-positive PC3 clones. Treatment of androgen receptor positive clones with the synthetic androgen R1881 further reduced alpha6 and beta4 messenger RNA expression as well as adhesion on laminin and Matrigel invasion. Our results indicate that androgens regulate cell-extracellular matrix adhesion and invasion by modulation of integrin expression and function, thus keeping a low invasive phenotype of prostate cancer cells.

Antigens, Surface↗

Modulation of integrin expression on rat bone marrow cells by substrates with different surface characteristics.

Biomaterials have been shown to be able to influence the growth and differentiation of osteogenic cells cultured on the surface. Although the precise mechanisms by which the materials influence osteogenic cells are unclear, it is possible that the materials manipulate the expression of integrins by the cells. We therefore studied the expression of a number of integrins by rat bone marrow (RBM) cells, after culture on culture polystyrene, on machined and grit-blasted titanium, and on calcium phosphate-coated titanium. Integrin expression was studied by FACS analysis. We found a large variation in the expression of integrins by cells in replicate experiments. After culture on polystyrene for 7 days, cells expressed alpha1, alpha2, alpha3, alpha5, alpha6, beta1, and beta3, although some of the subunits were expressed only occasionally. The cells did not express the alpha4 subunit. After culture of RBM cells for 8 days on coated and noncoated titanium substrates, cells always expressed alpha3, alpha5, alpha6, and beta1. The alpha1 and beta3 subunits were only expressed in some of the experiments. Frequently, the expression of alpha5, alpha6, and beta1 was higher on the coated than on the noncoated titanium substrates. Based on our results, we conclude that the studied materials are capable of influencing the expression of integrins by RBM cells cultured on relevant implant materials.

Animals↗

Integrin expression and survival in human breast cancer.

BACKGROUND: Integrin cell adhesion molecules are fundamental to numerous cellular functions including anchorage, differentiation and proliferation. Reduced expression of certain alpha and beta integrin subunits in primary breast cancer cells has been correlated with increased invasion and metastasis. Conversely, over-expression of the alpha6 subunit has been linked to poorer survival. The objective of this study was to measure the survival of a cohort with breast carcinoma in relation to integrin expression and to evaluate their potential as prognostic indicators. METHOD: Integrin expression on samples from 99 consecutive patients with breast cancer was assayed using monoclonal antibodies to the subunits alpha(1,2,3,6,V) and beta(1,3,4,5). This cohort has now been followed prospectively for almost five years allowing for early assessment of survival in relation to integrin expression. RESULTS: Whilst analysis of the data confirmed the relation of survival to proven predictors of tumour grade, tumour size and vascular invasion, statistical significance was not demonstrated with regard to both lymph node status and all integrin subunits studied. CONCLUSION: Previous research correlating certain integrin subunits with survival has not been confirmed in this study. Despite proven molecular importance in tumour cell adhesion, invasion and metastasis, integrin expression would appear not to translate clinically as independent indicators of prognosis, at least in the short-term.

Adult↗

Initial interaction of U2OS cells with noncoated and calcium phosphate coated titanium substrates.

From previous studies, we know that calcium phosphate (CaP) coated implants stimulate bone formation compared to uncoated implants. Nevertheless, the mechanism by which substrate surface characteristics affect cell function is unclear. In this study, we examined the initial interaction (30 min to 24 h) of U2OS cells with titanium substrates with or without a CaP coating. The effect of substrate roughness was also studied. When cell attachment was studied, we found that cells attached more readily to rough than to smooth surfaces. Also, more cells attached to the uncoated than to the CaP coated surface. After 24 h, cell numbers were similar for all substrate surfaces. Further, cells spread to a larger area on noncoated titanium than on the CaP coated substrates. At 24 h, the sequence of cell size was smooth titanium > rough titanium > CaP coated titanium. Shape measurements showed differences in cell shape between the cells on the different materials only at 7 h, not at different culture times. Cells expressed alpha2, alpha3, alpha5, alpha6, alphav, and beta1 subunits. Expression of alpha1, alpha4, alphavbeta3, beta3, beta4, and beta7 was extremely low or was not found. The beta1 integrin expression was higher on the coated than on the noncoated titanium at 3 h, but not on the other studied times. Expression of alpha2, alpha5, alpha6, and alphav expression was found to be upregulated at 24 h compared to earlier culture times on coated titanium, but not on uncoated titanium substrates. From this we conclude that the surface characteristics of a material (roughness and composition) can affect the initial interaction of cells with the material.

Calcium Phosphates↗

Urokinase-type plasminogen activator receptors associate with beta1 and beta3 integrins of fibrosarcoma cells: dependence on extracellular matrix components.

We have shown previously that the urokinase-type plasminogen activator receptor (uPAR) physically associates with beta2 integrins on human leukocyte membranes. We now report that uPAR associates with certain members of the beta1 and beta3 integrin families expressed by a nonhematopoietic fibrosarcoma cell line (HT1080) when adherent to certain extracellular matrix molecules. Flow cytometry studies indicated that HT1080 cells expressed uPAR and beta1 and beta3 integrins. Double staining immunofluorescence was used to label uPAR and beta1 and beta3 integrins. The staining patterns of uPAR and beta1 integrins were strikingly similar when attached to fibronectin, laminin, or vitronectin but not polylysine-coated substrates. Resonance energy transfer (RET) between uPAR and beta1 integrins was observed, especially at focal adhesion plaques; this indicates that these molecules are within about 7 nm of each other on these cell membranes. uPAR and beta3 integrin coclustering and RET were also observed on tumor cells adherent to vitronectin but not to fibronectin, laminin, or polylysine-coated surfaces. Because N-acetyl-D-glucosamine was found previously to inhibit beta2 integrin-uPAR association, we tested the effect of saccharides on the beta1-uPAR and beta3-uPAR colocalization and RET. Colocalization and RET between uPAR and beta1 or beta3 integrins were effectively inhibited by N-acetyl-D-glucosamine on extracellular matrix-coated surfaces. To better define which members of beta1 and beta3 integrin families associate with uPAR, we studied the association of several alpha subunits with uPAR on tumor cells. We found that: (a) alpha5 colocalizes with uPAR on cells attached to fibronectin-coated surfaces; (b) alpha5 and alpha(v) colocalize with uPAR on cells adherent to vitronectin; and (c) alpha3 and alpha6 associate with uPAR on cells attached to laminin. In further support of physical associations between integrins and uPAR on tumor cells, uPAR was found to coimmunoprecipitate with beta1 integrins in Brij-58 lysates of HT1080 cells (as detected by anti-uPAR Western blotting of material isolated from an anti-beta1 integrin immunoaffinity column). Thus, uPAR may laterally associate with integrins of tumor cells when attached to specific extracellular matrix elements to enable directional proteolysis for tumor cell migration and invasion.

Antibodies, Monoclonal↗

alpha6beta1-Integrin, a major cell surface carrier of beta1-6-branched oligosaccharides, mediates migration of EJ-ras-transformed fibroblasts on laminin-1 independently of its glycosylation state.

EJ-ras oncogene-induced malignant transformation is characterized by a series of changes in cell surface carbohydrates and cell-cell and cell-matrix interactions. Here, we show that EJ-ras-transformed NIH-3T3 fibroblasts acquired a migratory phenotype on laminin-1 surfaces. Such a phenotype was accompanied by overexpression of: (a) functional alpha6beta1, but not other laminin binding beta1-integrins; and (b) glycoconjugates on the cell surface bearing large oligosaccharides recognized by leukoagglutinin from Phaseolus vulgaris (L-PHA). The internal pool of pre-beta1-integrins was differently regulated in EJ-ras-transformed cells compared with nontransfected fibroblasts. Conversion of pre-beta1- into mature beta1-integrins was faster in EJ-ras-transformed cells, a process associated with the overexpression of the alpha6-chain. Overexpression of L-PHA-reactive oligosaccharides is dependent on the activity of N-acetylglucosaminyltransferase V, which is increased in transformed cells [J. W. Dennis et al., Science (Washington DC), 236: 582-585, 1987]. We show that beta1-integrins were the major carriers of L-PHA-reactive oligosaccharides on the cell surface. This glycosylation pattern, however, was not necessary for either the cell surface expression of beta1-integrins or their functional activity in the migratory response to laminin-1. Moreover, EJ-ras-transformed fibroblasts aggregated spontaneously. These effects were not observed in c-jun-transfected fibroblasts, which were unable to migrate on laminin, did not overexpress either beta1-integrins or L-PHA-reactive oligosaccharides, and did not self-aggregate.

3T3 Cells↗

Beta1 integrins play an essential role in adhesion and invasion of pancreatic carcinoma cells.

To investigate the role of beta1 integrins in pancreatic carcinoma invasion, we analyzed the relationship between the activity of beta1 integrins and the invasive ability of human pancreatic carcinoma cell lines. AsPC1, BxPC3, PANC1, SU8686, KP1NL, KP2, and H48N cells had high expression of beta1 and alpha6 subunits, and various levels of alpha2, alpha3, and alpha5 expression as determined by flow cytometry. Cell adhesion assay revealed that alpha2beta1, alpha5beta1, and alpha6beta1 integrins were the predominant adhesion receptors for collagen, fibronectin, and laminin, respectively. Beta1 integrins on different cell types showed a wide range of constitutive activity. Anti-beta1 monoclonal antibody (MAB) TS2/16 rapidly activated beta1 integrins, and thus TS2/16 requirement in cell adhesion represented the levels of constitutive activity of beta1 integrins. Notably, as the result of in vitro chemoinvasion assay, the levels of constitutive activity of beta1 integrins correlated with the invasive ability of pancreatic carcinoma cells. The inhibitory anti-beta1 MAB 13 completely blocked the invasion of these cell lines. Alternatively, the stimulatory anti-beta1 MAB TS2/16 strongly inhibited the invasion. These results show an essential role of beta1 integrins in invasion of pancreatic carcinoma cells and also suggest subtle regulatory mechanisms of cell invasion.

Antibodies, Monoclonal↗

alpha6beta1 integrin directs migration of neuronal precursors in adult mouse forebrain.

New neuroblasts are constantly generated in the adult mammalian subventricular zone (SVZ) and migrate via the very-restricted rostral migratory stream (RMS) to the olfactory bulb, where they differentiate into functional neurons. Several facilitating and repulsive molecules for this migration have been identified, but little is known about chemoattractive molecules involved in the directed nature of this migration in vivo. Here, we investigated the role of the alpha6beta1 integrin, and its ligand, laminin, in controlling guidance of the migrating neuroblasts in adult mice. Immunostaining for the alpha6beta1 integrin was present in neuroblasts and their processes in the anterior/rostral SVZ and the RMS. Inhibition of the endogenous alpha6 or beta1 subunit with locally injected antibodies disrupted the cohesive nature of the RMS, but did not kill the neuroblasts. Infusion of a 15 a.a. peptide, representing the E8 domain of the laminin alpha chains that bind alpha6beta1 integrin, into the neostriatum redirected the neuroblasts away from the RMS towards the site of infusion. Injection of a narrow tract of intact laminin also drew the neuroblasts away from the RMS, but in a more restricted localization. These results suggest a critical role for integrins and laminins in adult SVZ-derived neuroblast migration. They also suggest that integrin-based strategies could be used to direct or restrict neuroblasts to CNS regions where they are needed for cell replacement therapies in the nervous system.

Animals↗