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Biomedical subjects

C L Carpenter

Publications and source records attributed to C L Carpenter.

At least 37 records · Page 2Linked to original sources

Characterization of a Rac1- and RhoGDI-associated lipid kinase signaling complex.

Rho family GTPases regulate a number of cellular processes, including actin cytoskeletal organization, cellular proliferation, and NADPH oxidase activation. The mechanisms by which these G proteins mediate their effects are unclear, although a number of downstream targets have been identified. The interaction of most of these target proteins with Rho GTPases is GTP dependent and requires the effector domain. The activation of the NADPH oxidase also depends on the C terminus of Rac, but no effector molecules that bind to this region have yet been identified. We previously showed that Rac interacts with a type I phosphatidylinositol-4-phosphate (PtdInsP) 5-kinase, independent of GTP. Here we report the identification of a diacylglycerol kinase (DGK) which also associates with both GTP- and GDP-bound Rac1. In vitro binding analysis using chimeric proteins, peptides, and a truncation mutant demonstrated that the C terminus of Rac is necessary and sufficient for binding to both lipid kinases. The Rac-associated PtdInsP 5-kinase and DGK copurify by liquid chromatography, suggesting that they bind as a complex to Rac. RhoGDI also associates with this lipid kinase complex both in vivo and in vitro, primarily via its interaction with Rac. The interaction between Rac and the lipid kinases was enhanced by specific phospholipids, indicating a possible mechanism of regulation in vivo. Given that the products of the PtdInsP 5-kinase and the DGK have been implicated in several Rac-regulated processes, and they bind to the Rac C terminus, these lipid kinases may play important roles in Rac activation of the NADPH oxidase, actin polymerization, and other signaling pathways.

Amino Acid Sequence↗

A novel link between integrins, transmembrane-4 superfamily proteins (CD63 and CD81), and phosphatidylinositol 4-kinase.

Enzymatic and immunochemical assays show a phosphatidylinositol 4-kinase in novel and specific complexes with proteins (CD63 and CD81) of the transmembrane 4 superfamily (TM4SF) and an integrin (alpha3beta1). The size (55 kDa) and other properties of the phosphatidylinositol 4-kinase (PI 4-K) (stimulated by nonionic detergent, inhibited by adenosine, inhibited by monoclonal antibody 4CG5) are consistent with PI 4-K type II. Not only was PI 4-K associated with alpha3beta1-CD63 complexes in alpha3-transfected K562 cells, but also it could be co-purified from CD63 in untransfected K562 cells lacking alpha3beta1. Thus, TM4SF proteins may link PI 4-K activity to the alpha3beta1 integrin. The alpha5beta1 integrin, which does not associate with TM4SF proteins, was not associated with PI 4-K. Notably, alpha3beta1-CD63-CD81-PI 4-K complexes are located in focal complexes at the cell periphery rather than in focal adhesions. The novel linkage between integrins, transmembrane 4 proteins, and phosphoinositide signaling at the cell periphery may play a key role in cell motility and provides a signaling pathway distinct from conventional integrin signaling through focal adhesion kinase.

1-Phosphatidylinositol 4-Kinase↗

Is cryosurgical ablation appropriate for treating hepatocellular cancer?

OBJECTIVE: To examine the feasibility and efficacy of cryosurgical ablation as treatment for patients with cirrhosis with unresectable hepatocellular carcinoma. DESIGN: Retrospective case series. SETTING: A tertiary public hospital and a cancer center. PATIENTS: Twelve patients with cirrhosis with hepatocellular carcinoma (stage II, 2; stage III, 1; stage IVA, 7; stage IVB, 2). INTERVENTIONS: Cryosurgical ablation of all identifiable tumors. Nine patients treated with curative intent were included in the survival analysis, and 3 were treated for palliation. Five patients were treated with preoperative intra-arterial chemoembolization. MAIN OUTCOME MEASURES: Perioperative complications and the effects of tumor stage and chemoembolization were examined. Patient survival and disease-free interval were calculated by life-table analysis. RESULTS: No perioperative deaths occurred and 1 patient had 2 postoperative complications: pneumonia and biloma. The mean survival has been 19 months after cryosurgical ablation and 29 months after diagnosis. Three of the 9 patients treated with curative intent died with recurrence at a mean of 17 months after cryosurgical ablation. Four patients are alive with recurrence at a mean of 19 months after cryosurgical ablation and 38 months after diagnosis. Two patients with stage II disease have no evidence of recurrence 10 and 32 months after cryosurgical ablation. CONCLUSIONS: Cryosurgical ablation is feasible and safe for treatment of hepatocellular carcinoma in patients with cirrhosis. The technique is primarily palliative but may provide a possibility of cure in patients with lower-stage disease.

Adult↗

Analysis of gene-smoking interaction in lung cancer.

The Louisiana Lung Cancer Dataset, consisting of 337 extended pedigrees, is analyzed to determine whether a major Mendelian gene interacts with cumulative tobacco smoking (pack-years). The proportional hazards model is utilized, as it is a natural framework for estimating relative risks while adjusting for variability in age of disease onset. Segregation analyses show evidence that a Mendelian gene is segregating in these families, with the most parsimonious model, including sex, pack-years, pack-years squared, and a dominant major gene. The estimated frequency of the high-risk allele is 2% and carriers are estimated to have relative risk of 17.3 for developing lung cancer, compared to noncarriers. The addition of a gene x pack-years interaction does not significantly improve the fit of the model, indicating that on a multiplicative scale, these two factors independently influence lung cancer risk. Smoking history is missing for 23% of the study subjects and degree of "missingness" depends on disease status, age, and birth-year. To account for the nonrandomness of the missing data, a Markov chain Monte Carlo method for covariate imputation is proposed and implemented. Results from this analysis also support a nonsignificant gene-smoking interaction and an allele frequency of 2%, but a lower genetic relative risk (9.0) compared to the "complete case" analysis.

Age of Onset↗

Joint segregation and linkage analysis of a quantitative trait compared to separate analyses.

Our goal was to determine the degree to which joint segregation and linkage analysis leads to increased efficiency for estimating the recombination fraction and to greater power for detecting linkage, compared to separate analyses. We concentrated on the quantitative phenotype Q2 and analyzed linkage with a tightly linked marker, a loosely linked marker, and eight unlinked markers, the latter chosen to evaluate false positive rates. We considered both nuclear-family and extended-pedigree data, using the 200 replicates of each provided to GAW participants. We found joint analysis to be consistently more efficient, with relative efficiencies for the tightly linked marker of 1.16 and 1.06 in extended pedigrees and nuclear families, respectively. These relative efficiencies translated into modest but consistent gains in power to detect linkage. Both methods appear to produce unbiased parameter estimates and similar false positive rates.

Computer Simulation↗

Environmental assessment of the alkanolamines.

This review provides a summary of current information available on the environmental fate and aquatic toxicology of the alkanolamines. Because these materials are widely used, there is a need to understand their fate and effects in the environment. This assessment was confined to information regarding selected physical properties of the alkanolamines as well as their potential for degradation in the atmosphere, soil, surface water, and groundwater. In addition, their relevant aquatic toxicological information and bioconcentration potential were evaluated. In general, the alkanolamines have high water solubilities and low to moderate vapor pressures. Some are solids whereas others are liquids at room temperature. Aqueous solutions of the alkanolamines are basic, with the pKas decreasing with increased alkyl substitution. Predictions of the environmental distribution of these compounds, based on a unit world model of Mackay and Paterson, suggested that alkanolamines would partition primarily into the aqueous compartment at equilibrium, with the remainder distributed to the atmosphere. Only a very small fraction of these materials is expected to sorb to soil or sediments. However, adsorption mechanisms other than partitioning into the soil organic layer were not considered in this model. Since polar compounds may sorb to soil by alternate mechanisms, this model may underestimate the true adsorption potential and subsequent environmental distribution of the alkanolamines. Future work with these compounds should focus on other types of adsorption mechanisms that could impact the environmental distribution of the alkanolamines. Although only small amount of the alkanolamines are expected to partition to the atmosphere, they are expected to be removed by reactions with photochemically generated hydroxyl radicals. They may also be removed from the atmosphere by precipitation, due to their high water solubility. Because of the relatively low levels expected to be present in the atmosphere and the relatively short half-lives, the alkanolamines are not expected to adversely impact air quality. Alkanolamines have also been shown to be highly susceptible to biodegradation and are not expected to persist in the environment. Results from numerous studies have shown that these materials undergo rapid biodegradation in soil, surface waters, and wastewater treatment plants. Degradation rates for these compounds may vary, with half-lives routinely in the range of 1 d to 2 wk, depending on the length of acclimation period and other environmental factors. The relatively low bioconcentration factor (BCF) values reported for the alkanolamines indicate that they would not be expected to bioconcentrate in aquatic organisms. Available data on the toxicity of the alkanolamines to aquatic organisms suggest low toxicity to the majority of the species studied. Based on the facts that alkanolamines exhibit low aquatic toxicity, are shown to biodegrade in a wide range of environments, and exhibit no tendency to bioaccumulate, the routine manufacturing, use, and disposal of these materials are not expected to adversely impact the environment. With increased emphasis by consumers and regulatory agencies for industry to develop products that are "environmentally friendly," these properties of the alkanolamines make them an attractive choice for a wide range of applications.

Amino Alcohols↗

Signal transduction pathways involving the small G proteins rac and Cdc42 and phosphoinositide kinases.

We found that rac specifically binds to a type I PtdIns-4-P 5-kinase and that both rac and Cdc42 in the activated forms associate with PI 3-kinase. The association of PI 3-kinase with rac was stimulated by PDGF in vivo. Rac is constitutively associated with a PtdIns-4-P 5-kinase and stimulates PtdIns-4,5-P2 production in permeabilized platelets. These data suggest a model in which the initial step in the activation of rac is release from rho GDI (Fig. 7). Rac in the GDP bound form can associate with the PtdIns-4-P 5-kinase and also interact with an exchange factor. GTP bound rac may then localize to sites of actin reorganization, bringing the PtdIns-4-P 5-kinase with it. Locally synthesized PtdIns-4,5-P2 binds to actin capping proteins, leading to their release and the production of actin free ends. Actin polymerization can then occur from the free ends. Many other factors must be involved to regulate the type and extent of actin polymerization that is necessary in such complex processes as cell movement and membrane ruffling. The rac-associated PtdIns-4-P 5-kinase and its product PtdIns-4,5-P2 may act at a crucial regulatory point that permits polymerization to begin.

1-Phosphatidylinositol 4-Kinase↗

Structural organization and alternative splicing of the murine phosphoinositide 3-kinase p85 alpha gene.

Phosphoinositide 3-kinase is a lipid and protein kinase composed of a 110-kDa catalytic subunit and an 85-kDa (p85) or 55-kDa (p55) regulatory subunit. In mammals, at least two genes encode catalytic subunits, and at least three genes encode regulatory subunits. Here we report the cloning and structural analysis of the mouse p85 alpha gene. The translated portion of mouse p85 alpha is encoded by 15 exons that span at least 40 kb. We have cloned an alternatively spliced form of p85 alpha from both mouse and rat cDNA libraries. This splice variant encodes a unique 5'-untranslated region, start codon, and 6-amino-acid aminoterminus followed by the carboxyterminal 418 amino acids of p85 alpha. A corresponding exon is present within the p85 alpha genomic locus. In vitro transcription and translation of the splice variant cDNA generate a protein of approximately 45 kDa that is reactive with an anti-p85 alpha antiserum. Northern blot analysis of mouse tissues reveals differential expression of full-length and alternatively spliced p85 alpha, with the splice variant most abundant in the liver.

Alternative Splicing↗

Direct interaction of the Wiskott-Aldrich syndrome protein with the GTPase Cdc42.

Wiskott-Aldrich syndrome (WAS) is an X-linked immunodeficiency disorder with the most severe pathology in the T lymphocytes and platelets. The disease arises from mutations in the gene encoding the WAS protein. T lymphocytes of affected males with WAS exhibit a severe disturbance of the actin cytoskeleton, suggesting that the WAS protein could regulate its organization. We show here that WAS protein interacts with a member of the Rho family of GTPases, Cdc42. This interaction, which is guanosine 5'-triphosphate (GTP)-dependent, was detected in cell lysates, in transient transfections and with purified recombinant proteins. A weaker interaction was also detected with Rac1 using WAS protein from cell lysates. It was also found that different mutant WAS proteins from three affected males retained their ability to interact with Cdc42 and that the level of expression of the WAS protein in these mutants was only 2-5% of normal. Taken together these data suggest that the WAS protein might function as a signal transduction adaptor downstream of Cdc42, and in affected males, the cytoskeletal abnormalities may result from a defect in Cdc42 signaling.

Amino Acid Sequence↗

Assessment of resectability of pancreatic head and periampullary tumors by color flow Doppler sonography.

OBJECTIVE: To examine the sensitivity of color flow Doppler ultrasonography in assessing resectability of pancreatic head and periampullary tumors. DESIGN: Validation cohort study. SETTING: Tertiary care public hospital. PATIENTS: Thirty-seven patients with pancreatic head or periampullary cancer were studied by color flow Doppler examination of the relevant blood vessels. MAIN OUTCOME MEASURE: A pancreatic Doppler score (PDS) was defined as the closest circumferential contact of the tumor to the superior mesenteric vein, superior mesenteric artery, or portal vein. A PDS of 1 indicated no contact (n = 9); PDS 2, less than 50% contact (n = 10); PDS 3, 50% to 99% contact (n = 7); and PDS 4, encasement (n = 11). The PDS was compared with operative and histologic resection margins. RESULTS: The lack of vascular invasion was confirmed operatively in 7 of 7 patients with a PDS of 1, and 6 patients who underwent resection had clear histologic margins. Nine (90%) of 10 patients with a PDS of 2 were confirmed to have no vascular invasion, and 3 (43%) of 7 patients who underwent resection had clear margins. Five (83%) of 6 patients with a PDS of 3 had correct operative findings, and both patients who underwent resection had positive margins. Operative confirmation of encasement was found in all 7 patients with a PDS of 4 who had operative exploration, and none underwent resection. CONCLUSIONS: Color flow Doppler sonography and PDS predicted resectability and the histologic margin status (positive predictive value, 97%). Patients with a PDS of 1 are predicted to have clear histologic margins after resection. Patients with a PDS of 4 have unresectable tumors, and nonoperative palliation should be considered. Patients with a PDS of 2 or 3 have a high likelihood of positive histologic margins after resection and may be candidates for neoadjuvant chemotherapy.

Adult↗

Phosphoinositide kinases.

Recently, a number of cDNA clones with homology to the catalytic subunit of phosphoinositide 3-kinase have been identified, and the sequence of the first cDNA clone encoding a phosphatidylinositol 4-phosphate 5-kinase has been published. Use of both dominant-negative mutants of phosphoinositide 3-kinase and the inhibitors wortmannin and LY294002 has identified a number of processes in which phosphoinositide 3-kinase participates, including cell motility, the Ras pathway, vesicle trafficking and secretion, and apoptosis. Several possible biochemical targets of phosphoinositides have been found.

Animals↗

Lung cancer risk in relation to the CYP2E1 Rsa I genetic polymorphism among African-Americans and Caucasians in Los Angeles County.

Genetic polymorphisms in the activation or detoxication of carcinogens, such as those in tobacco smoke, may produce differences in individual susceptibility to lung cancer. The cytochrome P450 CYP2E1 is an enzyme involved in the metabolism of nitrosamines in tobacco smoke. A polymorphism of CYP2E1 detectable by the restriction enzyme Rsa I may be functionally important because it is located in a putative binding site for the transcription factor HNF-1 and has been associated with higher levels of CYP2E1 transcription. It is conceivable that this CYP2E1 Rsa I polymorphism might contribute to differences in susceptibility to lung cancer. We conducted a case-control study of patients with incident lung cancer and population controls in Los Angeles County to examine the association between the CYP2E1 Rsa I polymorphism and lung cancer risk among African-Americans and Caucasians. Samples of white blood cell DNA sufficient for determination of the CYP2E1 Rsa I genotype by a polymerase chain reaction-based assay were obtained from 341 cases and 706 controls with data on lifetime smoking history. No subjects were homozygous for the CYP2E1 Rsa I rare c2 allele. The rare c2 allele was not associated with an increased risk of lung cancer (adjusted odds ratio, OR 0.72; 95% confidence interval, CI = 0.35-1.46). Among the population controls the percentage of subjects carrying the rare c2 allele was lower (p = 0.002) among African-Americans (2%) compared with Caucasians (8%). However, the association between the CYP2E1 Rsa I genotype and lung cancer risk did not differ between ethnic groups. There was no important association between the CYP2E1 Rsa I genotype and lung cancer risk in analyses stratified by cell-type, smoking history, gender, occupational asbestos exposure, and dietary intake of antioxidants vitamin C, vitamin E or beta carotene. Due to the low frequency of the c2 allele in these populations, larger studies would be necessary to rule out a modest association between the CYP2E1 Rsa I polymorphism and lung cancer risk.

Adult↗

Lung cancer risk in African-Americans in relation to a race-specific CYP1A1 polymorphism.

The possible association between lung cancer and a polymorphism of the CYP1A1 gene specific to African-Americans was examined using peripheral blood DNA from 144 incident cases of lung cancer and 230 population controls with detailed data on smoking and other risk factors for the disease. The CYP1A1 variant allele was present in 15.2% of controls and 16.7% of cases. The smoking-adjusted odds ratio for the presence of the variant allele in relation to lung cancer risk overall was 1.3 (95% confidence interval, 0.7-2.4). According to histological type, the strongest association was observed for squamous cell carcinoma (odds ratio, 2.1), but this result was compatible with chance (95% confidence interval, 0.8-5.9). Adenocarcinoma was not materially associated with the presence of the variant allele (odds ratio, 1.3; 95% confidence interval, 0.5-3.2). No important associations were observed upon stratification by several risk factors for lung cancer, including smoking history, occupational exposures to asbestos and motor vehicle exhaust, or low intake of the micronutrient antioxidants beta-carotene, vitamin E, or vitamin C. These results do not confirm an earlier report that this CYP1A1 polymorphism may be an important risk factor for adenocarcinoma of the lung in African-Americans.

Aged↗

Phosphoinositide 3-kinase binds constitutively to alpha/beta-tubulin and binds to gamma-tubulin in response to insulin.

Recently we reported the localization of phosphoinositide 3-kinase (PI 3-kinase) by immunofluorescence to microtubule bundles and the centrosome (Kapeller, R., Chakrabarti, R., Cantley, L., Fay, F., and Corvera, S. (1993) Mol. Cell. Biol. 13, 6052-6063). In complementary experiments we used the recombinant p85 subunit of PI 3-kinase to identify proteins that associate with phosphoinositide 3-kinase and found that phosphoinositide 3-kinase associates with alpha/beta-tubulin. The association occurs in vivo but was not significantly affected by growth factor stimulation. We localized the region of p85 that interacts with alpha/beta-tubulin to the inter-SH2 domain. These results support the immunofluorescence data and show that p85 directly associates with alpha/beta-tubulin. We then determined whether phosphoinositide 3-kinase associates with gamma-tubulin. We found a dramatic growth factor-dependent association of phosphoinositide 3-kinase with gamma-tubulin. Phosphoinositide 3-kinase associates with gamma-tubulin in response to insulin and, to a lesser extent, in response to platelet-derived growth factor. Neither epidermal growth factor nor nerve growth factor treatment of cells results in association of phosphoinositide 3-kinase and gamma-tubulin. Phosphoinositide 3-kinase is also immunoprecipitated with antibodies to pericentrin in response to insulin, indicating that phosphoinositide 3-kinase is recruited to the centrosome. Neither phosphoinositide 3-kinase activity, nor intact microtubules are necessary for the association. Treatment of cells with 0.5 M NaCl dissociates gamma-tubulin from the centrosome and disrupts the association of phosphoinositide 3-kinase with pericentrin, but not gamma-tubulin. Recombinant p85 binds to gamma-tubulin from both insulin stimulated and quiescent cells. These results suggest that the association of phosphoinositide 3-kinase with gamma-tubulin is direct. These data suggest that phosphoinositide 3-kinase may be involved in regulating microtubule responses to insulin and platelet-derived growth factor.

3T3 Cells↗

Thrombin receptor ligation and activated Rac uncap actin filament barbed ends through phosphoinositide synthesis in permeabilized human platelets.

Cells respond to diverse external stimuli by polymerizing cytoplasmic actin, and recent evidence indicates that GTPases can specify where this polymerization takes place. Actin assembly in stimulated blood platelets occurs where sequestered monomers add onto the fast-growing (barbed) ends of actin filaments (F-actin), which are capped in the resting cells. We report that D3 and D4 polyphosphoinositides, Pl(4)P, Pl(4,5)P2, Pl(3,4)P2, and Pl(3,4,5)P3, uncap F-actin in resting permeabilized platelets. The thrombin receptor-activating peptide (TRAP), GTP, and GTP gamma S, but not GDP beta S, also uncap F-actin in permeabilized platelets. GDP beta S inhibits TRAP-induced F-actin uncapping, and Pl(4,5)P2 overcomes this inhibition. Constitutively active mutant Rac, but not Rho, activates uncapping of F-actin. Pl(4,5)P2-binding peptides derived from gelsolin inhibit F-actin uncapping by TRAP, Rac, and GTP gamma S. TRAP and Rac induce rapid Pl(4,5)P2 synthesis in permeabilized platelets. The findings establish a signaling pathway for actin assembly involving Rac in which the final message is phosphoinositide-mediated F-actin uncapping.

Actins↗

Polymorphism of glutathione S-transferase M1 and lung cancer risk among African-Americans and Caucasians in Los Angeles County, California.

BACKGROUND: Glutathione S-transferase M1 (GSTM1) is active in the detoxication of a number of carcinogens, including polyaromatic hydrocarbons, such as those present in cigarette smoke. In about 30%-55% of individuals, depending on the ethnic group, there is a virtual absence of GSTM1 enzyme activity due to deletion of both copies of the GSTM1 gene (GSTM1 null genotype). This genetic polymorphism of the GSTM1 gene locus has been proposed as a risk factor for lung cancer. However, results across studies are inconsistent. PURPOSE: We conducted a case-control study of patients with incident lung cancer and population control subjects to examine the association between homozygous deletion of the GSTM1 gene and lung cancer risk among African-Americans and Caucasians. METHODS: At 35 hospitals in Los Angeles County, California, we identified patients with a first diagnosis of lung cancer between September 1, 1990, and January 6, 1994. Of the 859 potentially eligible case patients, 207 had died by the time their physicians had received our request for permission to contact them. We enrolled 356 eligible case patients (167 African-Americans and 189 Caucasians) and 731 eligible control subjects (258 African-Americans and 473 Caucasians, all residents of Los Angeles County). Samples of white blood cell DNA sufficient for determination of the GSTM1 genotype by a polymerase chain reaction-based assay were obtained from 342 case patients and 716 control subjects. The odds ratios (ORs) and 95% confidence intervals (CIs) for lung cancer associated with homozygous deletion of the GSTM1 gene, in total and after stratification by a number of relevant characteristics, were estimated by logistic regression analysis. RESULTS: For patients with all lung cancers combined, the GSTM1 null genotype was associated with an OR of 1.29 (95% CI = 0.94-1.77). The OR was similar among African-Americans (OR = 1.20; 95% CI = 0.72-2.00) and Caucasians (OR = 1.37; 95% CI = 0.91-2.06). The association was strongest for squamous cell carcinoma (OR = 1.57; 95% CI = 0.93-2.63). We observed an OR of 1.77 (95% CI = 1.11-2.82) for the GSTM1 null genotype in relation to lung cancer risk among smokers of less than 40 pack-years, but no association among heavier smokers (OR = 0.90; 95% CI = 0.56-1.44). CONCLUSIONS: Our data do not support a substantial association between homozygous deletion of the GSTM1 gene and the risk of lung cancer overall in this population. However, our data do suggest an elevated risk for lighter smokers with this genotype. IMPLICATIONS: Because the power of our analyses within strata of lifetime smoking history was limited, larger studies will be needed to confirm these findings.

Aged↗

Rho family GTPases bind to phosphoinositide kinases.

Rho family GTPases appear to play an important role in the regulation of the actin cytoskeleton, but the mechanism of regulation is unknown. Since phosphoinositide 3-kinase and phosphatidylinositol 4,5-bisphosphate have also been implicated in actin reorganization, we investigated the possibility that Rho family members interact with phosphoinositide kinases. We found that both GTP- and GDP-bound Rac1 associate with phosphatidylinositol-4-phosphate 5-kinase in vitro and in vivo. Phosphoinositide 3-kinase also bound to Rac1 and Cdc42Hs, and these interactions were GTP-dependent. Stimulation of Swiss 3T3 cells with platelet-derived growth factor induced the association of PI 3-kinase with Rac in immunoprecipitates. PI 3-kinase activity was also detected in Cdc42 immunoprecipitates from COS7 cells. These results suggest that phosphoinositide kinases are involved in Rho family signal transduction pathways and raise the possibility that the effects of Rho family members on the actin cytoskeleton are mediated in part by phosphoinositide kinases.

1-Phosphatidylinositol 4-Kinase↗