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Evidence for the involvement of CD44 in endothelial cell injury and induction of vascular leak syndrome by IL-2.

At sites of chronic inflammation seen during infections, autoimmunity, graft-vs-host response, and cytokine therapy, endothelial cell injury is known to occur, the exact mechanism of which is unknown. In the current study we used IL-2-induced vascular leak syndrome (VLS) as a model to investigate whether cytotoxic lymphocytes use CD44 in mediating endothelial cell injury. Administration of IL-2 to wild-type mice triggered significant VLS in the lungs and liver. In contrast, in CD44 knockout (KO) mice, IL-2-induced VLS was markedly reduced in the lungs and liver. IL-2-treated wild-type and CD44 KO mice had similar levels of perivascular infiltration with lymphocytes in the lungs and liver. This suggested that the decrease in VLS seen in CD44 KO mice was not due to the inability of lymphocytes to migrate to these organs. Ultrastructural studies demonstrated extensive endothelial cell damage in the lungs and liver of IL-2-treated wild-type, but not CD44 KO, mice. Moreover, CD44-KO mice exhibited a marked decrease in IL-2-induced lymphokine-activated killer cell activity. The induction of VLS was dependent on the expression of CD44 on immune cells rather than endothelial cells because adoptive transfer of CD44+, but not CD44- spleen cells along with IL-2 into CD44 KO mice triggered VLS. The IL-2-induced VLS was blocked by administration of F(ab')2 of Abs against CD44. The current study demonstrates that CD44 plays a key role in endothelial cell injury. Blocking CD44 in vivo may offer a novel therapeutic approach to prevent endothelial cell injury by cytotoxic lymphocytes in a variety of clinical disease models.

Adoptive Transfer↗

Prognostic value of CD44 expression in colorectal carcinomas.

BACKGROUND: CD44 has diverse functions in cell-cell and cell-matrix interactions and its expression appears to be an indicator of invasive and metastatic behaviour in carcinomas. However, contradictory data have been reported about the correlation between CD44 expression and prognosis in colorectal carcinomas. We aimed (i) to establish whether immunohistochemically detectable CD44 expression is related to tumor aggressiveness, (ii) to correlate CD44 expression with the degree of tumor differentiation and (iii) to determine the relationship between CD44 expression and patient survival and other conventional clinicopathological features. PATIENTS AND METHODS: The immunohistochemical expression of CD44 in a series of 111 colorectal carcinomas was examined using the monoclonal mouse anti-human phagocytic glycoprotein-1, CD44 (clone DF 1485) in correlation with clinicopathological variables. To achieve a reliable semi-quantitative evaluation, not only the staining intensity but also the distribution of positive tumor cells were analyzed. RESULTS: CD44 staining was high-grade positive in 42 and low-grade positive/negative in 69 tumor tissues. There was no association between CD44 expression and tumor size, histological differentiation, depth of invasion, lymph node involvement, clinical stage of the disease, or the radicality of surgical resection. CD44 expression was not correlated significantly with recurrence and distant metastases. Multivariate analysis showed that only the modified Astler-Coller (MAC) staging system was an independent prognostic factor of recurrence (HR=15.267; 15.267-6.808, 95% CI; p=0.001) and survival (HR=37.064; 13.309-103.220, 95% CI; p=0.001). Kaplan-Meier curves showed that there was no significant association between CD44 expression and recurrence and overall survival in either MAC B or C colorectal cancer. CONCLUSION: Expression of CD44 was not associated with any conventional clinicopathological features. CD44 cannot be considered as a prognostic predictor of recurrence, metastasis and overall survival.

Adult↗

Differentiation-associated changes in CD44 isoform expression during normal hematopoiesis and their alteration in chronic myeloid leukemia.

CD44 is a widely expressed, multifunctional, cell-surface glycoprotein that has been implicated in the regulation of normal hematopoiesis. In addition, expression of particular isoforms of CD44 has been associated with malignant transformation and/or the acquisition of metastatic potential. In this study, we used two recently developed monoclonal anti-CD44 antibodies, one reactive with an epitope shared by many CD44 isoforms and the other with an epitope unique to CD44 isoforms containing amino acids encoded by the alternatively spliced exon v10, to compare the expression of CD44 on primitive hematopoietic cells from the marrow of normal individuals and their neoplastic counterparts present in the peripheral blood of patients with chronic myeloid leukemia (CML). Multiparameter fluorescence-activated cell sorter (FACS) analysis and cell sorting studies showed that CD44 is normally expressed at high to very high levels on both long-term culture-initiating cells (LTC-IC) and granulopoietic colony-forming cells (granulocyte-macrophage colony-forming units [CFU-GM]). In contrast, primitive erythropoietic progenitors (burst-forming units-erythroid [BFU-E]) in normal marrow were more homogeneous in their expression of CD44, and very few (less than 5%) showed the very high levels of CD44 seen on 20% to 25% of LTC-IC and CFU-GM. Antibody staining showed the expression of exon v10-containing CD44 isoforms to be restricted to a small subpopulation (4% to 8%) of morphologically recognizable mature (CD34-) myeloid cells within the light-density fraction of normal marrow cells. Reverse transcription-polymerase chain reaction (RT-PCR) analysis showed the presence of two exon v10-containing mRNA species. In CML, a significantly greater proportion of the circulating neoplastic CFU-GM expressed very high levels of CD44, and these CFU-GM were accompanied by an increased number of light density v10+ cells, including some that coexpressed CD34. Nonmalignant hematopoietic progenitors mobilized by prior chemotherapy and growth factor treatment of patients with Hodgkin's disease or acute myeloid leukemia in remission showed no changes in CD44 expression relative to normal marrow progenitors. These results provide evidence of early differentiation-associated changes in CD44 expression during normal hematopoiesis in vivo that may be deregulated in the neoplastic clone of patients with CML.

Base Sequence↗

Expression of CD44 isoforms in renal cell tumors. Positive correlation to tumor differentiation.

CD44 isoforms have been implicated in tumor progression and embryogenesis. Primary renal cell tumors (n = 100) of various histopathological differentiation and grading stages were analyzed for expression of CD44 isoforms in comparison with nonmalignant adult and fetal renal tissues. Evaluations were performed by immunohistochemistry using CD44 isoform-specific monoclonal antibodies and by reverse transcriptase polymerase chain reactions (RT-PCR). In the nonmalignant kidney no CD44 variant isoforms were detected. There was a significant increase in expression of CD44 standard (CD44s) and several variant isoforms (CD44v) in the course of tumor differentiation in clear cell carcinomas (n = 68) from stages G1 to G3 (P < 0.0001 for CD44s and isoforms containing CD44-6v, and P < 0.007 for those containing CD44-9v). Also, in chromophilic cell carcinomas (n = 13), CD44 isoform expression correlated with grading; ie, no CD44 expression was detected in G1 tumors, whereas in approximately 50% of the G2 tumors, CD44s, CD44-6v, and CD44-9v isoforms were present. Oncocytomas (n = 8), which are benign renal cell tumors, did not express CD44 isoforms, whereas invasive chromophobe cell carcinomas (n = 11) were positive for CD44s and CD44v isoforms. Transcript analyses by RT-PCR revealed that the upregulated isoforms in the carcinoma cells contained exons 8 to 10 and 3, 8 to 10 in combination from the variant region. In conclusion, expression of variant CD44 isoforms was strongly correlated with grading and appears to mediate a more aggressive phenotype to renal cell tumors.

Adenocarcinoma, Clear Cell↗

CD44 is a cytotoxic triggering molecule on human polymorphonuclear cells.

In this study, we present evidence that CD44 is a cytotoxic triggering molecule on freshly isolated polymorphonuclear cells (PMN). PMN constitutively express high levels of CD44 as determined by FACS analysis, and immunoprecipitation studies using PMN lysates and an anti-CD44 mAb show a band of 80 to 90 kDa that migrates slightly faster than CD44 from PBL. A bispecific Ab consisting of anti-CD44 Fab cross-linked to anti-DNP Fab (anti-CD44(Fab) x anti-DNP(Fab)) induces PMN to lyse DNP-coated tumor cells in an 18-h assay, and this lysis is specifically inhibited by a polyclonal anti-CD44 F(ab')2. A second bispecific Ab, anti-CD16(Fab) x anti-DNP(Fab), that binds to Fc(gamma)RIIIb on PMN does not induce lysis, indicating that the bridging of target cells to PMN per se is not sufficient for killing. Moreover, CD44-directed killing by PMN results in the lysis of bystander cells, suggesting that the mechanisms of tumor cytolysis by CD44-targeted PMN does not require cell-cell contact. Lastly, PMN lyse target cells coated with hyaluronic acid (HA), the principal ligand for CD44, and this cytolytic activity is specifically blocked by the polyclonal anti-CD44 F(ab')2 and by an anti-CD44 mAb. We suggest that the interaction of HA with CD44 on neutrophils might initiate cytotoxic or inflammatory responses in vivo when neutrophils encounter high amounts of HA, for example on tumor cells, or in the extracellular matrix.

Animals↗

Expression and distribution of adhesion molecule CD44 in healing corneal epithelia.

PURPOSE: To study isoform expression and cellular distribution of CD44, a cell surface glycoprotein thought to be an adhesion molecule in cell-cell and cell-substratum interactions, during corneal epithelial wound healing. METHODS: Reverse transcription-polymerase chain reaction was performed to determine alternatively spliced rat CD44 isoforms. In situ hybridization was carried out on frozen sections of the rat corneas obtained at different time points after epithelial debridement. 35S-Labeled sense and antisense cRNA that recognizes rat CD44 standard form was used as a probe. Immunofluorescence was used to assess expression and localization of CD44 in the rat corneas during reepithelialization. RESULTS: Corneal epithelia contained several alternatively spliced CD44 variants. Four large CD44 variants with inserts V1 through V10, V2 through V10, V3 through V10, and V4 through V10 were differentially expressed in migratory epithelia. The silver grains, indicating CD44 transcripts, started to increase in the epithelial cells surrounding the wound margin 3 hours after wounding and peaked at 18 hours in the basal epithelial cell layers, at which time the epithelia were actively migrating. As the cells began proliferation after wounding, the density of CD44 mRNA label declined but was still significantly higher than that in control specimens. The label returned to basal level as epithelial cells reverted to their normal phenotype. The location of CD44 on cell surfaces during corneal reepithelialization was consistent with the pattern of mRNA production. In the corneas at 18 hours after wounding, CD44 immunoreactivity was elevated in the entire epithelium, from the leading edge to the limbal-corneal border. As happened for the mRNA, the cell surface CD44 declined as cells differentiated to reestablish the multilayered epithelium. CONCLUSIONS: The expression of CD44 correlates with corneal reepithelialization, suggesting that CD44 may be involved in cell-cell interactions that provide adhesive strength for the much-stressed epithelial sheet and in the cell-substratum interactions that mediate cell migration during reepithelialization.

Alternative Splicing↗

CD44 gene rs9666607 polymorphism is associated with papillary thyroid carcinoma and interacts with CREB3L1.

BACKGROUND: The incidence of papillary thyroid carcinoma (PTC) has been rising. CD44 is involved in cell adhesion and migration, but the role of its genetic variation in PTC remains unclear. METHODS: This study aimed to investigate the association of CD44 gene polymorphisms with PTC and to examine the interaction between CD44 and CREB3L1. This study enrolled 354 patients with PTC, and the genotype distribution of the CD44 polymorphism (rs9666607) was analyzed. Key PTC genes were screened using the Gene Expression Omnibus (GEO) database (GSE33630). Gene Ontology (GO) functional enrichment and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analyses were performed on these key genes. CD44 expression was validated using TCGA database, ELISA, qRTPCR, Western blot, and IHC in patient tissues, PTC mouse model, and human cell lines. The direct interactive molecules were screened through a bioinformatics method. RESULTS: The GSE33630 dataset identified a total of 124 upregulated and 85 downregulated differentially expressed genes. Enrichment analysis revealed 12 key PTC genes, including CD44. TCGA database validation revealed that CD44 was significantly overexpressed in PTC patients. The rs9666607&#x2011;A allele was associated with an increased risk of PTC and lymph node metastasis under a dominant model. CD44 mRNA and protein levels were significantly higher in PTC tissues versus adjacent tissue and further elevated in metastatic cases. Bioinformatic analysis predicted CD44 interaction with the transcription factor CREB3L1, and this was confirmed by molecular docking. CREB3L1 expression was synchronously upregulated with CD44 in PTC. CONCLUSION: CD44 polymorphisms, particularly the rs9666607-A allele, are significantly associated with PTC risk and metastasis in the studied population. CD44 is overexpressed in PTC, and its interaction with CREB3L1 suggests a potential novel interaction in PTC pathogenesis.

Hyaluronan Receptors↗

Down-regulation of CD44 expression in human prostatic carcinoma cell lines is correlated with DNA hypermethylation.

Down-regulation of the cell-surface adhesion molecule CD44 has been suggested to play an important role in tumor progression and metastasis of prostate cancer. CD44 is encoded by a gene that contains a CpG-rich region (CpG island) in its 5' regulatory sequence. We tried to assess whether hypermethylation of this region is the mechanism responsible for CD44 transcriptional inactivation. A panel of prostatic-carcinoma cell lines, Du145, LNCaP, PC3, PC346C and TSU, was analyzed for CD44 mRNA and protein expression. Du145, PC3 and TSU were positive for CD44, whereas in LNCaP and PC346C both CD44 mRNA and protein expression was suppressed. Methylation-sensitive restriction-enzyme analysis of genomic DNA showed that, in contrast to the CD44-positive cell lines, the CD44-negative lines were hypermethylated in the CD44 promoter CpG island. Furthermore, treatment of a PC346C culture with the demethylating agent 5-azacytidine resulted in re-expression of CD44 mRNA. It is concluded that hypermethylation of the CD44 5' promoter region is one of the mechanisms by which CD44 expression is down-regulated in prostatic-carcinoma cell lines.

Antimetabolites, Antineoplastic↗

Chimeric CD4/CD44 molecules associate with CD44 via the transmembrane region and reduce hyaluronan binding in T cell lines.

Cells of the immune system tightly regulate the binding ability of cell adhesion molecules. The binding of the extracellular matrix component hyaluronan to CD44 is no exception, yet the mechanisms that regulate its binding are poorly understood. In this study a chimeric CD4/CD44 molecule, containing the extracellular domain of CD4 and the transmembrane and cytoplasmic domains of CD44, was expressed in two CD44+ mouse T lymphoma cell lines, BW5147 and T28. This resulted in the reduced ability of endogenous CD44 to constitutively bind hyaluronan. Immunoprecipitation of the chimeric protein in 1 % Brij-96 indicated an association between the chimera and endogenous CD44. Using various chimeric CD4/CD44 molecules, the transmembrane region of CD44 was found to mediate this association. In addition, the association of chimeric CD4/CD44 molecules with endogenous CD44 correlated with reduced hyaluronan binding. Thus, the transmembrane region of CD44 is required for the association with CD44 molecules in the cell membrane and we propose that the self-association of CD44 molecules occurs on the T cell surface to promote hyaluronan binding. Cellular events altering the interactions of the transmembrane region of CD44 thus have the potential to regulate the hyaluronan binding ability of CD44.

3T3 Cells↗

The role of the CD44 cytoplasmic and transmembrane domains in constitutive and inducible hyaluronan binding.

The role of the CD44 cytoplasmic domain in cells displaying constitutive or inducible hyalu ronan (HA) binding mediated by wild-type CD44 was investigated using mutant CD44 constructs with the cytoplasmic domain truncated or replaced by foreign sequences. In cell lines in which wild-type CD44 bound HA constitutively, chimeric constructs consisting of the CD44 external domain and the transmembrane plus cytoplasmic domains of beta5 integrin bound as well as wild-type CD44, arguing that the specific sequence of the cytoplasmic and transmembrane domains was not critical for HA binding by the external domain. The cytoplasmic domain sequence did not contribute to the 'inducible' phenotype in cell lines which did not bind HA constitutively, but which could be induced to bind by CD44-specific mAb. Tailless CD44 was inducible in these cells, as was chimeric CD44 with the integrin beta5 cytoplasmic domain. Dimer- or oligomerization of CD44 by addition of AP1510 to cells containing CD44 / FKBP chimeric constructs caused a modest enhancement of HA binding in cells that bound constitutively, but did not alter the inducible phenotype. This result suggests that clustering of CD44 from inside the cell is not a sufficient 'inside-out' signal to activate HA binding in inducible cells.

Amino Acid Sequence↗

Modulation of hyaluronan receptor (CD44) function in vivo in a murine model of rheumatoid arthritis.

OBJECTIVE: To determine how in vivo modulation of CD44 function by antibodies influences disease severity in a murine model of rheumatoid arthritis. METHODS: Mice with proteoglycan (PG)-induced arthritis were subjected to systemic treatment with 3 different monoclonal antibodies against CD44. Joint swelling and serum levels of hyaluronan (HA) and soluble CD44 (sCD44) were monitored. Inflammatory leukocyte infiltration in the joints, cell surface CD44 expression, and leukocyte adhesion to HA were compared. The effects of anti-CD44 treatment on the immune status of arthritic animals were also determined. RESULTS: Antibody IRAWB14, which enhances HA binding, aggravated the inflammatory symptoms, while KM201, which blocks ligand binding, reduced the severity of arthritis. The most effective suppression of inflammation was noted upon treatment with antibody IM7, whose epitope lies outside the HA binding domain of CD44. Serum levels of sCD44 increased, and HA levels decreased, in response to IM7. KM201 and IM7 treatment reduced, but IRAWB14 treatment enhanced, the adhesion of leukocytes to HA. However, these antibodies had little effect on PG-specific immune responses. CONCLUSION: Each antibody acted in vivo by virtue of its combined effects on CD44-HA binding and CD44 shedding. The dramatic reduction in arthritis severity effected by IM7 treatment was associated with extensive shedding of cell surface CD44 molecules. Loss of CD44 appears to be a major factor in preventing CD44- and HA-dependent cell-matrix interactions at the inflammatory site. Our study indicates a critical role for CD44 in the pathology of joint inflammation and reveals a unique mechanism of receptor down-regulation, which can be used therapeutically.

Animals↗

Measurement of an adhesion molecule as an indicator of inflammatory disease activity. Up-regulation of the receptor for hyaluronate (CD44) in rheumatoid arthritis.

The hyaluronate receptor (CD44) molecule is a multifunctional cell surface protein involved in T cell activation, monocyte cytokine release, fibroblast locomotion, and lymphocyte binding to high endothelial venules. To study the roles CD44 molecules play in inflammatory synovitis, we measured expression of CD44 in inflamed and noninflamed synovial fluid and tissue, using indirect immunofluorescence assays on tissue sections and quantitative Western blot analysis. The ability of purified CD44 protein to modulate T cell responses was tested in T cell activation assays in which CD44-containing liposomes were added in vitro. CD44 was widely expressed on many synovial cell types, and synovial tissue from rheumatoid arthritis (RA) patients contained 3.5 times more CD44 than tissue from osteoarthritis patients and 10.7 times more than tissue from patients with joint trauma. The level of soluble CD44 in RA synovial fluid was elevated only in fluids with low cell counts (less than or equal to 7,000/mm3), and not in RA synovial fluid with higher cell counts. Soluble purified CD44 protein in liposomes partially suppressed T cell activation in vitro. These data demonstrate that CD44 is up-regulated on many synovial cell types in patients with RA, and that the level of CD44 present in synovial tissue is related to the degree of synovial inflammation. Determination of ways to inhibit the proinflammatory functions of immune cell membrane CD44 molecules may provide new therapeutic modalities for RA.

Adult↗

Activation of CD44 induces ICAM-1/LFA-1-independent, Ca2+, Mg(2+)-independent adhesion pathway in lymphocyte-endothelial cell interaction.

We have established an endothelial cell line KOP2.16 from pooled mouse lymph nodes. Resting lymphocytes avidly bound to KOP2.16 and migrated underneath the cytoplasm. The binding was partly mediated by VLA-4 and VCAM-1, but apparently independent of CD44 since anti-CD44 antibody examined failed to inhibit the binding. However, pretreatment of lymphocytes with anti-CD44 resulted in the rapid appearance of Ca(2+)-, Mg(2+)-independent, LFA-1/ICAM-1-, CD2/LFA-3, VLA-4/VCAM-1-independent lymphocyte binding, indicating that a novel adhesion pathway was induced by the anti-CD44 treatment. Interestingly, the elicited adhesion was observed only when anti-CD44 that block hyaluronate recognition of CD44 were used for lymphocyte pretreatment. Neither hyaluronate itself nor non-blocking anti-CD44 up-regulated the adhesion. Fab fragment of the blocking anti-CD44 did not induce the up-regulation unless cross-linked with a second antibody, indicating that cross-linking of surface CD44 is necessary for induction of a novel adhesion pathway. We propose that the agonistic anti-CD44 antibodies induce a novel adhesion pathway by mimicking ligand binding to CD44 on the lymphocyte surface and that non-hyaluronate ligand(s) is involved in regulation of adhesive function of CD44. Potential involvement of such a regulatory mechanism in lymphocyte homing is discussed.

Animals↗

Interaction of CD44 variant isoforms with hyaluronic acid and the cytoskeleton in human prostate cancer cells.

CD44 is a glycosylated adhesion molecule which may undergo alternative splicing of 10 possible exons to generate variant isoforms. A number of CD44 variant isoforms expressed by tumor cells have been correlated with metastatic and proliferative behavior. In this study, we have characterized CD44 isoform expression on three prostate cancer cell lines: ALVA-31, PPC-1, and LNCaP. Using reverse transcriptase-polymerase chain reaction, we have found that ALVA-31 and PPC-1 cells express multiple CD44 isoforms, including CD44s (standard form), CD44E (epithelial form), and an exon 14-containing form. In addition, two smaller forms have been detected: one using an alternative donor splice site within exon 5, and a novel form omitting exon 5 entirely. The CD44 isoforms expressed by ALVA-31 and PPC-1 cells appear to be preferentially located on the cell surface. By contrast, LNCaP cells do not express any of the CD44 forms at the RNA or protein level. Both PPC-1 and ALVA-31 cells display tumorigenesis and invasiveness in nude mice, whereas LNCap cells exhibit a less malignant phenotype, suggesting a correlation between CD44 variant (CD44v) expression and aggressive prostate tumor behavior. Functional characterization reveals that CD44 mediates prostate cell adhesion to extracellular hyaluronic acid (HA). In addition, the CD44 cytoplasmic domain binds specifically to ankyrin, a membrane cytoskeletal protein. Double immunofluorescence labeling and confocal microscopic analyses indicate that HA binding induces the HA receptor (i.e., CD44) to form capped structures. Importantly, intracellular ankyrin is preferentially accumulated underneath HA receptor-capped structures. These results suggest that cytoskeletal proteins such as ankyrin are closely associated with CD44-mediated signaling events induced by HA. Finally, HA-mediated transmembrane interactions between CD44 isoforms and cytoskeletal proteins (i.e. ankyrin) may play a pivotal role in regulating tumor cell behavior during human prostate cancer development.

Ankyrins↗

Changes in CD44 expression during carcinogenesis of the mouse colon.

CD44 glycoprotein is the main extracellular receptor for hyaluronic acid. The CD44 gene is composed of 20 exons and encodes a variety of isoforms generated by alternative splicing of 10 variant exons. Overexpression of discrete CD44 isoforms containing products of variant exons have been implicated in the progression of cancer, including human colon carcinoma. The pattern of CD44 transcripts changes during early colorectal carcinogenesis, and their relation to CD44 protein expression remains to be defined under experimental conditions. In the current study we investigated CD44 expression in a murine model of human colon adenoma/carcinoma. Colon tumors were induced in 19 ICR/Ha mice by 1,2-dimethylhydrazine injections and CD44 expression was studied by RT-PCR/ Southern blot analysis as well as immunohistochemistry. CD44 transcripts were strongly overexpressed in tumors compared to normal colon. Both neoplastic and normal colon samples exhibited the same species of CD44 transcript representing standard and variant isoforms. Seventy-five percent of neoplasms contained foci of CD44-positive tumor cells, whereas in normal colon the epithelial immunoreactivity was confined to the crypt base. Immunostaining of neoplastic cells was heterogeneous and there was a significant tendency toward the progressive loss of CD44 immunoreactivity in large invading tumors. It is concluded that early events in murine colorectal carcinogenesis are characterized by a marked global overexpression of standard and variant CD44 transcripts.

1,2-Dimethylhydrazine↗

CD44 mediates constitutive type I receptor signaling in cervical carcinoma cells.

OBJECTIVE: The CD44 transmembrane glycoprotein family has been implicated in the growth and metastasis of numerous human cancers. CD44 may function in some cells through interactions with type I receptor tyrosine kinases, including erbB2. Here, we tested whether CD44 interacts with erbB2 and another type I receptor, the epidermal growth factor receptor (EGFR), in human cervical carcinoma tissues and cell lines and whether these interactions influence erbB2 signaling. METHODS: CD44, EGFR, and erbB2 colocalization were examined in 36 pT1b-pT2b cervical cancer cases and in the CaSki and SiHa cervical carcinoma cell lines by immunohistochemistry and laser scanning confocal microscopy. The role of CD44-EGFR-erbB2 interactions in erbB2 signaling was examined by immunoprecipitation and using antisense CD44 oligonucleotides. RESULTS: CD44, erbB2, and EGFR coexpression and colocalization were observed in 42% (15/36) of cervical carcinoma cases and in both cervical carcinoma cell lines. Colocalization occurred to an equivalent extent in all tumor grades examined. CD44 coimmunoprecipitated with erbB2 and EGFR in cervical carcinoma cell lysates, indicating that these proteins interact with each other. Reduction of CD44 expression inhibited constitutive erbB2 activity. High CD44 expression was linked to EGFR activity using dominant negative EGFR, suggesting that type I receptors may autoregulate their activity in these cells. CONCLUSIONS: Our data indicate that CD44 can mediate type I receptor function in cervical carcinoma cells that overexpress both CD44 and either erbB2 or EGFR and suggest a novel mechanism by which these proteins may contribute to cervical carcinoma tumor growth and metastasis.

Cell Division↗

CD44 involvement in experimental collagen-induced arthritis (CIA).

CD44 is a pro-inflammatory cell surface molecule that supports cell migration and cell lodgment in target organs. Therefore, CD44 targeting with specific monoclonal antibodies (mAbs) should be useful for the inhibition of collagen-induced arthritis (CIA) as well as other autoimmune diseases that are dependent on inflammatory cells. In the present paper, we confirm and expand previous reports showing the anti-arthritogenic effect of anti-CD44 mAbs directed against constant epitopes of the CD44 receptor. We demonstrate that such anti-CD44 mAbs can induce resistance to CIA after disease onset. Even accelerated disease developed after two injections of type II collagen was markedly inhibited by IM7.8.1 anti-CD44 mAb. Although KM81 anti-CD44 mAb is a less efficient anti-arthritogenic reagent than IM7.8.1, its Fab' fragments partially inhibit CIA. This finding implies that the antibody blocks CD44 function rather than modulating CD44 cell surface expression or mediating Fc-dependent activities. Histopathological analysis revealed that the anti-CD44 mAb markedly reduces the synovial inflammatory cellular response and the consequent damage to the joint. As CD44 is an alternatively spliced multistructural molecule, similar anti-arthritogenic effects may be achieved by mAbs directed against CD44 isoforms expressed on the pathological cells in question, but not on normal cells, thus leaving the physiological functions intact.

Animals↗

Menstrual cycle dependent expression of CD44 in normal human endometrium.

CD44 is a cell surface glycoprotein known to be a hyaluronate receptor, which functions in lymphocyte homing and cancer metastasis. We have previously shown that CD44 molecules are expressed in normal endometrial tissue. In this study we immunohistochemically examined expression of CD44 glycoproteins in normal human endometrial tissue to gain insight into roles of CD44 molecules. No expression of the CD44 standard form was observed with 11 endometria in the proliferative phase. On the contrary, 13 of 19 secretory phase endometria were stained intensely by anti-CD44 standard form anti-body; all CD44-positive cases were in the mid and late secretory phases. Among the 13 CD44-positive endometria, four also were positive for the CD44 variant with exon v6. CD44 molecules were present at all but the luminal cell surfaces. These results indicate that expression of CD44 depends on menstrual cycle, suggesting that CD44 molecules might be involved in implantation of fertilized ovum in endometrium.

Antibodies, Monoclonal↗