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G N Gill

Publications and source records attributed to G N Gill.

At least 19 recordsLinked to original sources

Ligand-induced endocytosis of epidermal growth factor receptors that are defective in binding adaptor proteins.

Ligand-activated epidermal growth factor receptors (EGFRs) associate with coated pit adaptor proteins (AP2) in vivo, implying a mechanism for receptor retention in coated pits during internalization. Using an in vitro binding assay, we localized the adaptor binding determinant to residues 970-991 of EGFRs and confirmed specificity by competition with a synthetic peptide corresponding to this sequence. A mutant EGFR lacking this AP2 binding determinant did not associate with AP2 in vivo but demonstrated internalization and down-regulation kinetics indistinguishable from its wild-type counterpart. Immunocytochemistry confirmed ligand-induced internalization of the mutant EGFR. These data suggest that endocytic determinants are distinct from AP2 binding determinants and that processes other than association with AP2 regulate endocytosis of EGFRs.

Adaptor Protein Complex 2

Association of epidermal growth factor receptors with coated pit adaptins via a tyrosine phosphorylation-regulated mechanism.

We investigated the mechanism by which ligand-activated epidermal growth factor receptors (EGFR) associate with coated pit adaptor protein (AP) complexes. In vivo association, assayed by coimmunoprecipitation of AP with mutant EGFR, required tyrosine kinase activity, intact autophosphorylation sites, and the regulatory carboxyl terminus of EGFR. The role of autophosphorylation of EGFR in interaction with AP was examined in vitro using a BIAcore instrument. Purified active EGFR, immobilized on the biosensor surface, was reversibly autophosphorylated or dephosphorylated by treatment with ATP or phosphatase. Autophosphorylation of EGFR significantly increased AP binding. Once formed, EGFR AP complexes were resistant to disassembly by dephosphorylation of EGFR or competition with phosphotyrosine, indicating that phosphorylated tyrosine residues do not directly participate in AP binding. Induction of conformational changes in EGFR by treatment with urea increased AP binding up to 10-fold in the absence of EGFR autophosphorylation. A recombinant EGFR carboxyl terminus specifically bound the AP complex and each of the isolated alpha- and beta-subunits of AP2. We conclude that tyrosine autophosphorylation of EGFR exposes structural motif(s) in the carboxyl terminus of EGFR that interact specifically with AP2.

Amino Acid Sequence

Endocytosis and lysosomal targeting of epidermal growth factor receptors are mediated by distinct sequences independent of the tyrosine kinase domain.

Ligand-induced internalization of the epidermal growth factor receptor (EGFR) leads to accelerated receptor degradation. Two models have been proposed to explain this. In the first model, induced internalization expands the intracellular pool of receptors, leading to enhanced lysosomal targeting. The second model proposes that activation of intrinsic receptor kinase activity induces inward vesiculation of endosomes, thus interrupting receptor recycling. To test these models, we created EGFR mutants that lack the conserved tyrosine kinase domain, but retain different parts of the distal carboxyl terminus regulatory region. Mutants lacking all distal regulatory sequences underwent slow internalization (0.02 min-1) and turnover (t1/2 approximately 24 h), similar to unoccupied, holo-EGFR. Mutant receptors that lacked the kinase domain, but retained the entire distal regulatory domain, were constitutively internalized and targeted to lysosomes, even in the absence of EGF. The turnover of these receptors (t1/2 approximately 11 h) was similar to that of occupied, kinase-active holo-EGFR (t1/2 approximately 9.5 h). These results show that receptor tyrosine kinase activity is not required for the targeting of EGFR to lysosomes. Receptor mutants which expressed previously identified endocytic sequences underwent rapid internalization. Unexpectedly, enhanced turnover of EGFR mutants required additional sequences located between residues 945 and 991 in the holo-EGFR. Thus, internalization and lysosomal targeting of EGFR are separate processes mediated by distinct sequences. Our results indicate that induced internalization is necessary, but not sufficient, for enhanced EGFR degradation. Instead, down-regulation requires exposure of previously cryptic internalization and lysosomal targeting sequences. Occupied EGFR thus appear to be handled by the endocytic machinery in the same fashion as other constitutively internalized or lysosomally targeted receptors.

Animals

Hyperthyroidism.

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Graves Disease

Direct binding of eps8 to the juxtamembrane domain of EGFR is phosphotyrosine- and SH2-independent.

Several signal transducers bind through their SH2 domains to phosphotyrosine-containing motifs present in receptor tyrosine kinases (RTKs). However, the juxtamembrane regions of the epidermal growth factor receptor (EGFR) and of the related erbB-2 protein, while important in mitogenic signaling, lack demonstrable tyrosine phosphorylation sites, suggesting that other modalities of receptor-transducer interactions exist. A candidate for investigating this type of association is p97eps8, a recently described substrate for RTKs. p97eps8 is phosphorylated by several RTKs, associates with EGFR in vivo and, upon overexpression, enhances the transduction of EGFR-mediated mitogenic signals. Here we report that eps8 binds directly to the juxtamembrane region of EGFR through a domain that does not bear resemblance to SH2 domains and by a mechanism that does not require the presence of phosphotyrosine residues. Thus, the physical association between EGFR and eps8 represents a novel interaction between RTKs and their substrates.

3T3 Cells

Analysis of substrate recognition determinants in a synthetic peptide containing the Tyr 1173 autophosphorylation site of the epidermal growth factor receptor.

The epidermal growth factor receptor contains five autophosphorylation sites in its C-terminal region. Synthetic peptides based on the major autophosphorylation site at Tyr 1173 were tested as substrates of the intracellular domain of the epidermal growth factor receptor. A peptide containing acidic residues N-terminal to the substrate Tyr as well as the Tyr-Met-Xaa-Met motif of the insulin receptor substrate 1 had a Km value of 15 microM, the lowest value for a synthetic peptide reported to date. Another important residue contributing to substrate binding is the Tyr itself, or more specifically, the hydroxyl group of the Tyr. Substituting Phe for Tyr results in a peptide that is ineffective as an inhibitor of kinase phosphorylation. However, substitution of a Ser residue does not restore a functional substrate, indicating specificity for the Tyr hydroxyl. Secondary structure algorithms predicted that the peptide substrate based on the native sequence at Tyr 1173 would have a propensity to adopt a helical conformation in solution. Circular dichroism spectroscopy confirmed this prediction. The secondary structure of the peptide substrate is significant in its consistency with the idea that secondary structure is an important determinant in substrate recognition by protein tyrosine kinases.

Amino Acid Sequence

Purification and properties of thyroid hormone receptor beta 1 expressed in Escherichia coli as a fusion protein.

Thyroid hormone receptor binds to specific DNA sequences and acts as a hormone-dependent transcriptional regulator. The protein can form homodimers, or heterodimers with the related 9-cis-retinoic acid receptor (RXR) or retinoic acid receptor (RAR) receptor families, leading to complex patterns of regulation. To obtain relatively large quantities of the receptor for biochemical studies, we have inserted the cDNA for human thyroid receptor beta into a variant of the pGEX vector (pGEX-KG) and produced the protein in Escherichia coli as a fusion with glutathione-S-transferase. Conditions for protein production, isolation on glutathione agarose, and thrombin cleavage to generate active receptor were developed. Final yields were approximately 1 mg/liter of culture. Scatchard plots of 125I-triiodothyronine binding data revealed a single class of sites with a Kd of 0.1 nM. An overlay assay was established to measure protein-protein binding and used to show a direct interaction with bacterially expressed RXR receptor. Binding of the purified receptor to DNA response elements measured in a DNA binding assay was increased by RXR to different extents, depending on the DNA sequence. This preparation will be useful in exploring the mechanisms of receptor activity.

Base Sequence

LIM domain recognition of a tyrosine-containing tight turn.

Endocytosis of cell surface receptors requires sequence "codes" consisting of tight turn structures with an essential Tyr or Phe residue. To determine mechanisms through which cells recognize this information, we utilized exon 16 of the human insulin receptor in the two-hybrid system to isolate a novel 455-amino acid cytoplasmic protein that contains two LIM domains within its carboxyl terminus. Mutational analyses indicate that one of the Cys-rich Zn2+ binding LIM domains specifically recognizes active but not inactive endocytic codes contained in exon 16. These findings suggest that LIM domain structures in proteins provide molecular recognition of Tyr-containing tight turn structures.

Amino Acid Sequence

A mutant epidermal growth factor receptor common in human glioma confers enhanced tumorigenicity.

The development and neoplastic progression of human astrocytic tumors appears to result through an accumulation of genetic alterations occurring in a relatively defined order. One such alteration is amplification of the epidermal growth factor receptor (EGFR) gene. This episomal amplification occurs in 40-50% of glioblastomas, which also normally express endogenous receptors. Moreover, a significant fraction of amplified genes are rearranged to specifically eliminate a DNA fragment containing exons 2-7 of the gene, resulting in an in-frame deletion of 801 bp of the coding sequence of the extracellular domain. Here we used retroviral transfer of such a mutant receptor (de 2-7 EGFR) into glioblastoma cells expressing normal endogenous receptors to test whether the mutant receptor was able to augment their growth and malignancy. Western blotting analysis showed that these cells expressed endogenous EGFR of 170 kDa as well as the exogenous de 2-7 EGFR of 140-155 kDa. Although holo-EGFRs were phosphorylated on tyrosine residues only after exposure of the cells to ligand, de 2-7 EGFRs were constitutively phosphorylated. In tissue culture neither addition of EGF nor expression of the mutant EGFR affected the rate of cell growth. However, when cells expressing mutant EGFR were implanted into nude mice subcutaneously or intracerebrally, tumorigenic capacity was greatly enhanced. These results suggest that a tumor-specific alteration of the EGFR plays a significant role in tumor progression perhaps by influencing interactions of tumor cells with their microenvironment in ways not easily assayed in vitro.

Animals

Specific factors are required for kinase-dependent endocytosis of insulin receptors.

Mouse B82 cells that support high affinity saturable endocytosis of epidermal growth factor receptors (EGFR) exhibited only low rates of nonsaturable internalization of insulin receptors (InsR). To investigate the defect in endocytosis of InsR in B82 cells, we examined the role of sequence motifs and tyrosine kinase, the two receptor components shown to be required for efficient saturable endocytosis of InsR in Rat 1 cells. Placement of residues encoded by exon 16 of the InsR onto an EGFR truncated to residue 958 restored EGF-induced internalization of this mutant receptor indicating that the sequence codes in exon 16 are recognized by B82 cells. To determine whether the kinase function could be provided in trans, a B82 cell expressing both receptors was established. EGF-activated EGFR kinase was not able to restore insulin-dependent rapid endocytosis to InsR. However, fusion of untransfected Rat1 cells with InsR-expressing B82 cells enabled rapid endocytosis of InsR, indicating that the internalization defect can be complemented. These results indicate that, although internalization codes can function in the context of other receptors, activation of tyrosine kinase receptors requires an additional specific component.

Animals

Positive and negative regulatory elements in the human erbB-2 gene promoter.

Analysis of the proximal promoter of the human erbB-2 gene identified a 100 bp region that enhanced activity of the proximal TATA box 200-fold. DNase I footprinting mapped three Sp1 binding sites within this 100 bp region but only one of these sites was of high affinity and strongly correlated to Sp1-dependent activity in vivo. This Sp1 site overlapped the distal of two similar palindromic sequences. The proximal palindrome did not bind Sp1 but overlaps the CAAT box. When placed in the context of a heterologous promoter, the palindrome functioned as a positive response element. However, removal of the 5' half of the proximal palindrome increased promoter activity indicating that it functions as an inhibitory element within the erbB-2 context. Using electrophoretic mobility shift assays, a nuclear protein was detected that bound to either the 5' or 3' half of the palindrome but not to both. Analysis of the function of mutant sequences revealed maximal activity when both halves of the palindrome were intact with decreased but significant activity persisting when the 3' half of the palindrome was disrupted. Disruption of the 5' half of the palindrome impaired activity to a greater extent. These studies indicate erbB-2 promoter activity is positively regulated by Sp1 and negatively regulated in a position-dependent context by a protein that binds to a palindromic sequence.

Base Sequence

Structural features of the 5' region of the human erbB-2 gene.

The human erbB-2 gene encodes a receptor protein tyrosine kinase which has strong growth-promoting properties. Overexpression of erbB-2 is directly associated with tumor cell growth in vivo and in vitro. To investigate structural features which may contribute to expression, we isolated and sequenced a 3.65-kb 5' promoter fragment of the human erbB-2 gene. This 5' fragment contains an exceptionally high density of four Alu sequences. Other structural features include an A + T-rich region that causes DNA bending, as measured by anomalously slow migration in polyacrylamide gels. These structural features of the 5' region of erbB-2 may contribute to expression of the gene in different growth states.

DNA

Effect of carboxyl terminal truncation on the tyrosine kinase activity of the epidermal growth factor receptor.

The carboxyl terminal domain of the epidermal growth factor receptor (EGFR) is an important regulatory region in mediating the tyrosine kinase-dependent biological effects of EGF. The effect of a 164-amino-acid carboxyl deletion of the EGFR or the EGFR cytoplasmic kinase domain on in vitro tyrosine kinase activity was assessed. C'-terminal truncation of the EGFR resulted in dependence on Mn2+ for full activity. The EGFR kinase domain (kd EGFR) and the C'-terminally truncated kinase domain (kd c'1022 EGFR) also exhibited a strong preference for Mn2+ compared to Mg2+, with kd c'1022 EGFR being completely inactive in the presence of Mg2+ alone. Sphingosine or ammonium sulfate specifically activated both kd EGFR and kd c'1022 EGFR. EGFR and c'1022 EGFR displayed similar EGF-stimulated in vitro tyrosine kinase activities; however, kd EGFR was 5- to 10-fold more active in vitro than kd c'1022 EGFR. Thus, the regulatory contribution of the C'-terminus is most evident when the EGFR ligand binding domain is removed. These results indicate that an intact EGFR C'-terminus is necessary for the protein to assume a fully active conformation.

Amino Acid Sequence

Receptor tyrosine kinases.

A major process through which environmental information is transmitted into cells is via activation of protein tyrosine kinases. Receptor tyrosine kinases contain extracellular ligand recognition, single membrane spanning, and cytoplasmic protein tyrosine kinase domains. The cytoplasmic kinase core is flanked by regulatory segments, which in some family members are also inserted into the core kinase domain. Ligand binding initiates receptor signaling from the cell surface. Activated receptors autophosphorylate to remove alternate substrate/inhibitory constraints and to provide loci for assembly of proteins that contain SRC homology regions. Information is transmitted and diffused by tyrosine phosphorylation of the assembled proteins and of cellular substrates that include protein kinases with specificity for serine/threonine residues. Signaling, which is strictly ligand-dependent, is attenuated by down-regulation of receptors and by feed-back inhibitory loops that involve receptor phosphorylation by cellular kinases. The tyrosine kinase receptors are essential for normal growth, development, and reparative processes. Mutations that remove normal regulatory constraints on the approximately 290 amino acid kinase core of these large proteins result in constitutive function and cell transformation.

Gene Expression Regulation, Neoplastic

A site of tyrosine phosphorylation in the C terminus of the epidermal growth factor receptor is required to activate phospholipase C.

Cells expressing mutant epidermal growth factor (EGF) receptors have been used to study mechanisms through which EGF increases phospholipase C (PLC) activity. C-terminal truncation mutant EGF receptors are markedly impaired in their ability to increase inositol phosphate formation compared with wild-type EGF receptors. Mutation of the single tyrosine self-phosphorylation site at residue 992 to phenylalanine in an EGF receptor truncated at residue 1000 abolished the ability of EGF to increase inositol phosphate formation. C-terminal deletion mutant receptors that are impaired in their ability to increase inositol phosphate formation effectively phosphorylate PLC-gamma at the same tyrosine residues as do wild-type EGF receptors. EGF enhances PLC-gamma association with wild-type EGF receptors but not with mutant receptors lacking sites of tyrosine phosphorylation. These results indicate that formation of a complex between self-phosphorylated EGF receptors and PLC-gamma is necessary for enzyme activation in vivo. We propose that both binding of PLC-gamma to activated EGF receptors and tyrosine phosphorylation of the enzyme are necessary to elicit biological responses. Kinase-active EGF receptors lacking sites of tyrosine phosphorylation are unable to signal increased inositol phosphate formation and increases in cytosolic Ca2+ concentration.

Animals

A nuclear protein is required for thyroid hormone receptor binding to an inhibitory half-site in the epidermal growth factor receptor promoter.

The epidermal growth factor (EGF) receptor (EGFR) promoter is negatively regulated by thyroid hormone and retinoic acid. This regulation can be mapped to a 36-basepair GC-rich region of the promoter (EGFR P/E) that functions autonomously as a promoter and an enhancer when placed in front of the thymidine kinase gene TATA element. Direct high affinity binding of the thyroid hormone receptor (T3R) to this element requires a nuclear protein. Through ion exchange chromatography and gel filtration of HeLa nuclear extract, this activity was identified as a protein of approximately 67 kilodaltons. This protein did not bind to DNA alone, but greatly augmented T3R binding to the EGFR P/E sequence in gel mobility shift and DNA precipitation assays. When combined with the T3R auxillary protein (TRAP), the T3R migrated as a larger complex on the DNA. Chemical cross-linking identified this complex as a heterodimer between T3R and TRAP. T3R-TRAP binds to a 7-basepair site in the EGFR P/E (GGGACTC) that has weak homology to a consensus thyroid response element half-site. Thus, on this element, T3R-TRAP heterodimers contact the DNA primarily on a single site that comprises an inhibitory thyroid response element.

Base Sequence

Surgical management of the thyroid nodule: patient selection based on the results of fine-needle aspiration cytology.

To determine whether the routine use of fine-needle aspiration (FNA) cytology reduces the rate of unnecessary surgery, the surgical pathology of 54 thyroidectomy patients who had preoperative FNA was compared to the results obtained with 24 thyroidectomy patients who did not have preoperative FNA. Twenty-nine (85.3%) of the 34 patients who had a positive FNA were confirmed by histology to have a thyroid neoplasm; in 24 patients, the neoplasm was malignant. Two of the 17 patients who had a negative FNA but underwent thyroidectomy based on other factors were found to have thyroid cancer. Only 8 (33.3%) of the 24 surgical specimens of patients who did not have an FNA were found to be malignant. FNA had a sensitivity of 93.5% and a specificity of 75.0%. The results indicate that the routine use of FNA for patients with thyroid nodules reduces the incidence of unnecessary surgery. Furthermore, FNA alone is sufficient to identify most patients at risk and is, therefore, cost-effective. However, the presence of other findings suspicious of malignancy should preclude clinical decision making based on FNA alone.

Adolescent

Ligand-induced internalization and increased cell calcium are mediated via distinct structural elements in the carboxyl terminus of the epidermal growth factor receptor.

Signals that can mediate ligand-induced receptor internalization and calcium regulation are present in a 48-amino acid "calcium-internalization" domain in the C' terminus of the epidermal growth factor (EGF) receptor. The basis of calcium and internalization regulation signalled by this 48-amino acid sequence was analyzed using deletion and substitution mutant receptors. Cells expressing truncated receptors containing either the NH2- or COOH-terminal portion of the 48-residue domain displayed high affinity EGF-dependent endocytosis and receptor down-regulation. These endocytosis-competent EGF receptor mutants that lacked any autophosphorylation site were unable to increase the concentration of intracellular calcium. To investigate the role of self-phosphorylation in EGF-induced calcium mobilization, phenylalanine was substituted for the single autophosphorylated tyrosine residue in this region of an internalization-competent truncated receptor. The receptor-mediated calcium response was abolished, while ligand-dependent receptor internalization was unimpaired. These results demonstrate that EGF-dependent receptor endocytosis and calcium mobilization are separate events. Tyrosine self-phosphorylation is required for increased [Ca2+]i, while structural features distinct from autophosphorylation are required for receptor internalization.

Animals