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Biomedical subjects

K C Robbins

Publications and source records attributed to K C Robbins.

At least 19 recordsLinked to original sources

Tyrosine phosphorylation of the vav proto-oncogene product links FcepsilonRI to the Rac1-JNK pathway.

Stimulation of high affinity IgE Fc receptors (FcepsilonRI) in basophils and mast cells activates the tyrosine kinases Lyn and Syk and causes the tyrosine phosphorylation of phospholipase C-gamma, resulting in the Ca2+- and protein kinase C-dependent secretion of inflammatory mediators. Concomitantly, FcepsilonRI stimulation initiates a number of signaling events resulting in the activation of mitogen-activated protein kinase (MAPK) and c-Jun NH2-terminal kinase (JNK), which, in turn, regulate nuclear responses, including cytokine gene expression. To dissect the signaling pathway(s) linking FcepsilonRI to MAPK and JNK, we reconstructed their respective biochemical routes by expression of a chimeric interleukin-2 receptor alpha subunit (Tac)-FcepsilonRI gamma chain (Tacgamma) in COS-7 cells. Cross-linking of Tacgamma did not affect MAPK in COS-7 cells, but when coexpressed with the tyrosine kinase Syk, Tacgamma stimulation potently induced Syk and Shc tyrosine phosphorylation and MAPK activation. In contrast, Tacgamma did not signal JNK activation, even when coexpressed with Syk. Ectopic expression of a hematopoietic-specific guanine nucleotide exchange factor (GEF), Vav, reconstituted the Tacgamma-induced, Syk- and Rac1-dependent JNK activation; and tyrosine-phosphorylation of Vav by Syk stimulated its GEF activity for Rac1. Thus, these data strongly suggest that Vav plays a critical role linking FcepsilonRI and Syk to the Rac1-JNK pathway. Furthermore, these findings define a novel signal transduction pathway involving a multimeric cell surface receptor acting on a cytosolic tyrosine kinase, which, in turn, phosphorylates a GEF, thereby regulating its activity toward a small GTP-binding protein and promoting the activation of a kinase cascade.

Animals

Functional characterization in vivo of mutant p53 molecules derived from squamous cell carcinomas of the head and neck.

Loss of wild-type p53, either through deletion or mutation, has been demonstrated in most squamous cell carcinomas of the head and neck (HNSCC). Whether these mutant molecules contribute to tumor progression purely through loss of wild-type functions or by growth-promoting mechanisms, however, remains unclear. To begin to address these issues, we isolated a series of p53 cDNAs from HNSCC cell lines that contain missense or nonsense point mutations, insertions, or deletions. The ability of each of these molecules to transform NIH/3T3 cells to a malignant phenotype was assessed by stable transfection and expression under the control of a strong heterologous promoter. NIH/3T3 cells transfected with pLTR6p53, which harbors an H179L missense mutation, formed large tumors rapidly (in less than 4 wk) when transplanted to athymic mice, as did cells expressing pLTR13p53, which had undergone a V173F missense mutation and an in-frame deletion of 48 bp between codons 208 and 223. Cells transfected with pLTR17p53, predicted from the nucleotide sequence to encode a severely truncated p53 corresponding to the N-terminal 56 amino acids, also formed tumors. Cells transfected with pLTR15p53, which was predicted to encode a less severely truncated molecule, formed much smaller tumors and at lower frequencies. NIH/3T3 cells transfected with pLTR12p53 (exon 7 splice donor mutant), pLTRwtp53 (wild-type p53), or vector alone failed to form tumors for up to 2 mo after transplantation. pLTR6p53-transfected cells exhibited a highly malignant phenotype with invasion of regional lymph nodes, mediastinal and lung metastases, invasion of the abdominal wall, and dissemination throughout the peritoneal cavity. Histological assessment of the tumors revealed intensely vascularized fibrosarcomas with numerous cellular atypia, including frequent and aberrant mitoses. Tumor explants were recultured, and northern blot analysis of cellular RNA confirmed that the expression of exogenous p53 was maintained in each case. These data indicate that different p53 mutants contribute to tumorigenesis by specific mechanisms. Furthermore, the results obtained by using the pLTR17p53 transfectants imply that some truncated molecules may overcome the effects of wild-type p53 to contribute to malignancy.

3T3 Cells

Functional characterization of p53 molecules expressed in human squamous cell carcinomas of the head and neck.

Mutation of the p53 tumor suppressor gene has been demonstrated in a large proportion of human head and neck squamous cell carcinomas (HNSCCs) and has been assumed to play a role in the pathogenesis of these tumors, although no formal evidence of functional aberration has been demonstrated. In this study, we isolated cDNA clones encoding the entire p53 coding region from six human HNSCC cell lines that showed aberrant patterns of p53 expression in the parental cells, analyzed their nucleotide sequences, and characterized their function in vivo. cDNAs cloned from four cell lines harbored alterations within the p53 coding sequence (one missense mutation, one missense mutation plus in-frame deletion, one splice donor mutation, and a 1-nt insertion). HN30 cells, which contained wild-type p53 nucleotide sequences, showed a high constitutive level of protein expression. HN26 cells contained wild-type coding sequences but did not express the 53-kDa protein, although the mRNA was transcribed and a molecule of increased molecular mass (70 kDa) was observed by western blotting. Functional studies revealed that none of the four proteins encoded by mutant cDNAs were able to transactivate expression of a reporter plasmid containing a wild-type p53 consensus binding site when cotransfected into p53-null cells, whereas molecules encoded by wild-type p53 cDNAs increased reporter gene expression about a hundredfold over uninduced levels. Co-expression of each mutant cDNA with wild-type p53 cDNA and a wild-type p53-responsive reporter gene demonstrated that each of the proteins encoded by mutant cDNAs harbored some degree of inhibitory activity that varied depending on the mutation present. Thus, aberrant p53 function as a result of mutation or altered expression characterizes oral squamous cell carcinomas. The inhibitory activity of these molecules may be a mechanism for deregulation of the function of co-expressed wild-type p53 that may be of importance during the early stages of tumor development.

Blotting, Western

Iron management in ESRD and the role of the nephrology nurse.

Iron deficiency is common in patients with end stage renal disease (ESRD) receiving recombinant human erythropoietin (rHuEPO). Consequently, such patients require routine iron monitoring by measurement of serum ferritin and transferrin saturation, with interpretation of these values in light of the response to rHuEPO. This article will review issues related to iron metabolism, the causes and diagnosis of absolute and functional iron deficiency, and treatment options for iron deficiency. In addition, the role of the nurse in iron management will be identified.

Anemia, Iron-Deficiency

RN-tre identifies a family of tre-related proteins displaying a novel potential protein binding domain.

Eps8 is a recently identified SH3-containing substrate for tyrosine kinase receptors. To understand the role of eps8 in receptor-mediated signaling, we cloned cDNAs encoding proteins that bind to its SH3 domain. One of these cDNAs predicts the synthesis of an 828 amino acid protein with homology to the N-terminal region of the tre oncogene. We designated this protein RN-tre for Related to the N-terminus of tre. RN-tre is ubiquitously expressed and maps to 10p13, a region known to be involved in translocations in various leukemias. In addition, a 10p13 monosomy syndrome, characterized by developmental alterations, has been reported. The regional homology between RN-tre and tre, which is limited to their N-terminal portion, prompted us to investigate the origin of the tre oncogene transcriptional unit. We were able to show that tre is the fusion product of a 5' genetic element, homologous to RN-tre and a 3' element, encoding a de-ubiquinating enzyme. Moreover, we identified, within the N-terminus of RN-tre and tre, a domain (named TrH, for Tre Homology), which is conserved within several proteins from yeast to mammals and has protein-binding properties in vitro.

3T3 Cells

RN-tre specifically binds to the SH3 domain of eps8 with high affinity and confers growth advantage to NIH3T3 upon carboxy-terminal truncation.

We isolated a cDNA encoding a protein, RN-tre, which shows homology to the N-terminus of the tre oncogene product and has SH3-binding ability as well as an evolutionarily conserved domain, termed TrH, with protein-binding ability in vitro. In the present study, we identify the product of the RN-tre gene as a 97-100 kDa protein. We demonstrate stable association in vivo and in vitro between RN-tre and eps8, mediated by the SH3 domain of the latter. In vitro, RN-tre displayed remarkable preference for binding to the eps8-SH3, as compared to eight other SH3s. The Kd for the in vitro interaction between RN-tre and eps8-SH3 was between 10(-8) and 10(-7) M. A role for RN-tre in cell proliferation was suggested by the finding that a C-terminal truncated mutant was able to confer proliferative advantage and reduced serum-requirement to NIH3T3 fibroblasts. Finally, comparison of the structure and biological activities of RN-tre and of the tre oncogene product, provided insight into the mechanism of oncogenic activation of tre.

3T3 Cells

CHESS: comprehensive health enhancement support system for women with breast cancer.

The Comprehensive Health Enhancement Support System (CHESS) was developed to assist people dealing with health crises. Needs assessments with patients were conducted in its development and validation studies performed. CHESS provides information, social support, and decision-making assistance via a personal computer and modem that are placed in patients' homes. Women of all ages and varied socioeconomic backgrounds have successfully used this program to empower them to become active participants in their care following a diagnosis of breast cancer.

Breast Neoplasms

Mutations in the non-catalytic domains of Fyn and Fgr tyrosine kinases reveal differences in mechanisms of their regulation.

Non-catalytic domains of tyrosine kinases from the Src family are believed to be regulated intra- and intermolecularly through protein-protein interactions. We have deleted the SH2 and SH3 domains from Fyn and Fgr and have generated two point mutations in residues completely conserved in all members of the Src family. The dramatically different biological effects of these mutations suggest that non-catalytic domains regulate Src family kinase activities through distinctly different mechanisms.

3T3 Cells

Painful realities.

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Health Policy

Cloning and characterization of cbl-b: a SH3 binding protein with homology to the c-cbl proto-oncogene.

We have cloned a new gene, cbl-b, with homology to the c-cbl proto-oncogene. A large protein is predicted (approx. MW 108,000) that has a proline rich domain, a nuclear localization signal, a C3HC4 zinc finger and a putative leucine zipper. There is striking nucleotide and amino acid homology to the c-cbl proto-oncogene most notably in the structural motifs described above. Cbl-b is expressed in normal and malignant mammary epithelial cells, in a variety of normal tissues, and in hematopoietic tissue and cell lines. Cbl-b expressions is up-regulated with macrophage/monocyte differentiation of the HL60 and U937 cell lines. There is direct association of the cbl-b protein with the Src Homology 3 domains of several proteins including signaling, cytoskeletal and adaptor proteins. Our data suggest that cbl-b encodes a protein which can interact with signal transduction proteins to regulate their function or to be regulated by them. Together, cbl-b and c-cbl are members of a novel family of proto-oncogenes involved in signal transduction.

Animals

Identification of the major tyrosine kinase substrate in signaling complexes formed after engagement of Fc gamma receptors.

We have recently identified the protein product of the c-cbl proto-oncogene as an SH3 binding protein expressed in macrophages. To investigate the possibility that p120c-cbl is involved in signaling pathways initiated by cell surface receptors for IgG (Fc gamma R), lysates of HL60 cells were examined for tyrosine phosphorylation of p120c-cbl upon Fc gamma R engagement. Our findings demonstrate that p120c-cbl is tyrosine-phosphorylated upon Fc gamma R engagement and that this molecule represents the major tyrosine kinase substrate in this signaling pathway. Protein complexes containing p120c-cbl, p72syk, and p56lyn were observed either in resting or activated cells. In vitro studies showed that the direct association between p120c-cbl and p56lyn was mediated by the SH3 domain of p56lyn.

Enzyme Precursors

Tyrosine phosphorylation as a marker for aberrantly regulated growth-promoting pathways in cell lines derived from head and neck malignancies.

We have utilized a broad approach to address whether tyrosine kinases and the growth pathways they regulate might be functionally aberrant in squamous cell carcinomas (SCC) of the upper aerodigestive tract. This strategy involved assaying for evidence of tyrosine kinase action in lysates of cell lines representing SCC. Our findings revealed a spectrum of elevated tyrosine phosphorylation in SCC lines ranging from less than 2-fold to more than 10-fold above that of control human epidermal keratinocytes. Thus the ability to regulate growth and other pathways controlled by tyrosine phosphorylation was impaired in all the 19 lines examined. Assessment of the receptor for epidermal growth factor (EGF) revealed that its activity was elevated above normal in 14 of the 19 cell lines examined, suggesting that at least a portion of the increased tyrosine phosphorylation observed could be attributed to excessive EGF receptor activity. Our findings provide functional evidence that growth pathways are aberrantly regulated in cell lines representing SCC of the upper aerodigestive tract.

Biomarkers, Tumor

Wiskott-Aldrich syndrome protein physically associates with Nck through Src homology 3 domains.

In the second of a series of experiments designed to identify p47nck-Src homology 3 (SH3)-binding molecules, we report the cloning of SAKAP II (Src A box Nck-associated protein II) from an HL60 cDNA expression library. This molecule has been identified as a cDNA encoding the protein product of WASP, which is mutated in Wiskott-Aldrich syndrome patients. Studies in vivo and in vitro demonstrated a highly specific interaction between the SH3 domains of p47nck and Wiskott-Aldrich syndrome protein. Furthermore, anti-Wiskott-Aldrich syndrome protein antibodies recognized a protein of 66 kDa by Western blot (immunoblot) analysis. In vitro translation studies identified the 66-kDa protein as the protein product of WASP, and subcellular fractionation experiments showed that p66WASP is mainly present in the cytosol fraction, although significant amounts are also present in membrane and nuclear fractions. The main p47nck region implicated in the association with p66WASP was found to be the carboxy-terminal SH3 domain.

Adaptor Proteins, Signal Transducing

Physical association between Src homology 3 elements and the protein product of the c-cbl proto-oncogene.

To investigate the nature of proteins recognized by Src homology 3 (SH3) domains, a cDNA expression library was prepared from macrophages and screened with a probe representing the three SH3 domains of p47nck. Two clones were isolated, and one, designated SAKAP I (for Src A box Nck-associated protein I), contained the carboxyl-terminal half of the cbl proto-oncogene product. Studies in vitro demonstrated reactivity between SAKAP I and SH3 domains derived from a variety of molecules. Wide variations in this assay suggested a high degree of specificity inherent in SAKAP I binding. Moreover, it was possible to demonstrate an in vivo association between p47nck and p120c-cbl in HL60 cells. These findings suggest that proteins containing SH3 elements regulate Cbl function.

Adaptor Proteins, Signal Transducing

Specificity of protein interactions with highly related SRC homology (SH) domains of FGR and FYN protein-tyrosine kinases.

As an approach toward identification and isolation of cellular proteins that may act as substrates or effectors of the SRC-family of protein-tyrosine kinases, fusion proteins containing noncatalytic elements of two highly related SRC-family members were tested for their ability to recognize distinct molecules present in lysates of cells known to normally express both enzymes. Our results demonstrate differences of protein binding between the SH2 elements of FYN and FGR kinases, but do not discriminate proteins binding to their SH3 domains.

3T3 Cells

MTS1/CDK4I is altered in cell lines derived from primary and metastatic oral squamous cell carcinoma.

The MTS1/CDK4I gene encodes a 16 kDa cyclin kinase inhibitor and maps to chromosome 9p21. Previous studies have suggested the presence of a major tumour suppressor gene at this locus which may be inactivated in head and neck squamous cell carcinoma (HNSCC). To determine the status of this gene in human primary and metastatic HNSCC, we examined the locus and its transcript for abnormalities by polymerase chain reaction (PCR). Out of 14 cell lines studied, four had lost only exon 1, one had lost only exon 2, three had lost both exons 1 and 2, and none of the remaining six lines expressed a normal p16 mRNA. These latter six cell lines expressed p16 transcripts that had suffered deletions ranging in size from 2-16 base pairs. In each case, deletions led to a change of reading frame. Furthermore, in two cases abnormalities in the MTS1/CDK4I gene were identical in cells derived from metastatic tumours as compared to cells derived independently from the corresponding primary tumour. The identical nature of mutations observed in primary tumours and metastases derived from the same patient provides strong evidence that inactivation of p16 function was an in vivo event.

Base Sequence