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Biomedical subjects

M Caligiuri

Publications and source records attributed to M Caligiuri.

At least 19 recordsLinked to original sources

Better detection of FLT3 internal tandem duplication using peripheral blood plasma DNA.

Somatic mutation of the FLT3 gene as an internal tandem duplication (ITD) of the juxtamembrane domain-coding sequence causes constitutive tyrosine phosphorylation and activation. Tumor-specific DNA has been documented in the sera of patients with solid tumors even when it is in an early stage. We compared the detection of FLT3 ITD in DNA extracted from cells of bone marrow (BM) aspirations with DNA extracted from peripheral blood (PB) plasma in patients newly diagnosed with acute myeloid leukemia (AML; 85 patients), myelodysplastic syndrome (MDS; 16 patients), and acute lymphocytic leukemia (ALL; 16 patients). FLT3 ITD was detected in 18 (21%) AML samples and in one (6%) MDS sample in both cellular and plasma DNA but in none of the ALL samples. Hemizygous/homozygous FLT3 ITD was detected in five (28%) of the FLT3 ITD-positive AML using plasma DNA, whereas only four of these cases showed hemizygous/homozygous FLT3 ITD using cellular DNA. The presence of FLT3 ITD was associated with significantly shorter survival (P = 0.02) when only patients younger than 50 years of age (48 AML+MDS patients) were considered. This finding was independent of cytogenetics in this age group. However, patients with the FLT3 ITD hemizygous/homozygous phenotype had even shorter survival (P = <0.001). As expected, the presence of FLT3 ITD correlated with higher white blood cell (WBC) counts. These data demonstrate that plasma DNA is a reliable alternative resource for detecting FLT3ITD, especially the hemizygous/homozygous genotype. Furthermore, the data derived from this study support the notion that the presence of FLT3 ITD in conjunction with the absence of the wild-type FLT3 allele predicts an especially poor prognosis for patients with AML.

Acute Disease↗

Social stress increases the susceptibility to endotoxic shock.

The influence of social disruption stress (SDR) on the susceptibility to endotoxic shock was investigated. SDR was found to increase the mortality of mice when they were challenged with the bacterial endotoxin lipopolysaccharide (LPS). Histological examination of SDR animals after LPS injection revealed widespread disseminated intravascular coagulation in the brain and lung, extensive meningitis in the brain, severe hemorrhage in the lung, necrosis in the liver, and lymphoid hyperplasia in the spleen, indicating inflammatory organ damage. In situ hybridization histochemical analysis showed that the expression of the glucocorticoid receptor mRNA was down-regulated in the brain and spleen of SDR animals while the ratio of expression of AVP/CRH-the two adrenocorticotropic hormone secretagogue, increased. After LPS injection, the expression of pro-inflammatory cytokines, IL-1beta and TNF-alpha, was found significantly higher in the lung, liver, spleen, and brain of the SDR mice as compared with the LPS-injected home cage control animals. Taken together, these results show that SDR stress increases the susceptibility to endotoxic shock and suggest that the development of glucocorticoid resistance and increased production of pro-inflammatory cytokines are the mechanisms for this behavior-induced susceptibility to endotoxic shock.

Animals↗

Influence of oligomer chain length on the antioxidant activity of procyanidins.

The antioxidant activity of catechin monomers and procyanidin (dimers to hexamers) fractions purified from cocoa was studied in two in vitro systems: liposomes and human LDL. Liposome oxidation (evaluated as formation of 2-thiobarbituric acid reactive substances) was initiated with 2,2'-azobis (2-amidinopropane) hydrochloride (AAPH), 2,2'-azobis (2,4-dimethylvaleronitrile) (AMVN), iron/ascorbate, or UV-C; LDL oxidation (evaluated as formation of conjugated dienes) was initiated with Cu(2+) or AAPH. Catechin monomers and procyanidin fractions inhibited both liposome and LDL oxidation. Monomers, dimers, and trimers fractions were the most effective antioxidants when liposome oxidation was initiated in the aqueous phase. When oxidation was initiated in the lipid domains, higher molecular weight procyanidins were the most effective. All fractions significantly inhibited Cu-mediated LDL oxidation; no significant effect of procyanidin molecular weight was observed. The hexamer fraction was the least effective with respect to preventing AAPH initiated LDL oxidation. Results reported herein give further evidence on the influence of the oligomer chain length on the antioxidant protection by procyanidins.

Amidines↗

SCF(beta-TRCP) and phosphorylation dependent ubiquitinationof I kappa B alpha catalyzed by Ubc3 and Ubc4.

NF kappa B is an important transcriptional regulator of multiple pro-inflammatory genes. In non-stimulated cells NF kappa B is anchored in the cytoplasm via the inhibitory protein I kappa B alpha. Following exposure to diverse pro-inflammatory signals (e.g. TNF alpha, IL1, LPS) various signal transduction cascades are initiated converging on the I kappa B kinase (IKK). IKK phosphorylates I kappa B alpha on serines 32 and 36 signaling the inhibitory protein for ubiquitin-mediated degradation. The SCF beta-TRCP complex is the ubiquitin ligase responsible for mediating phosphorylation dependent ubiquitination of I kappa B alpha. Here we reconstitute phosphorylation dependent ubiquitination of I kappa B alpha using recombinant components. Our results suggest that the cullin specificity of the SCF complex may reflect its ability to associate with Rbx1. We demonstrate specific ubiquitination of I kappa B alpha by Ubc3 and Ubc4 in a phosphorylation and SCF beta-TRCP dependent manner and that both are capable of associating with the SCF beta-TRCP complex isolated from human cells. Finally, we show that Ubc4 is in excess to Ubc3 in THP.1 cells and 19 times more efficient in catalyzing the reaction, suggesting that Ubc4 is the preferentially used Ubc in this reaction in vivo. Our results also suggest that ubiquitin is transferred directly from the Ubc to phospho-I kappa B alpha in a SCF beta-TRCP dependent reaction. Oncogene (2000) 19, 3529 - 3536

Amino Acid Sequence↗

Better cognitive and psychopathologic response to donepezil in patients prospectively diagnosed as dementia with Lewy bodies: a preliminary study.

In several retrospective post-mortem studies, patients meeting clinical criteria for Alzheimer's disease (AD) who gained the greatest cognitive benefit from treatment with an acetylcholinesterase (AChE) inhibitor were found to have neocortical Lewy bodies accompanying classical AD neuropathology. This 'dementia with Lewy bodies' (DLB) subtype manifests both parkinsonian and psychopathologic features that set it apart from 'pure' AD (hereafter called AD). In the present preliminary study, 16 dementia patients were prospectively categorized as having DLB versus AD. Subjects were also categorized according to their profile on surface electromyographic (EMG) measures demonstrated in prior work to be analogues of clinically observed parkinsonian extrapyramidal signs (EPS). All patients were prescribed the AChE inhibitor donepezil (5 mg per day). At baseline and at 6 months, patients underwent cognitive testing with the Mini-Mental State Examination (MMSE) while caregivers assessed their psychopathologic status using the Behavioral Symptoms in Alzheimer's Disease (BEHAVE-AD) scale. The tester was blinded to the AD versus DLB classification of the patients. AD cases (N=12) had only a slight increase in cognitive scores, while DLB patients' (N=4) mean MMSE scores increased to a significantly greater degree. Furthermore, patients categorized by EMG as EPS positive (N=8) attained an increase in their mean MMSE score from baseline to 6 months that differed significantly from a decline in MMSE observed among their EPS negative (N=4) counterparts. For all subjects, an increase in MMSE scores across 6 months of treatment correlated with a decline in BEHAVE-AD scores.

Aged↗

Methylation of the estrogen receptor-alpha gene promoter is selectively increased in proliferating human aortic smooth muscle cells.

OBJECTIVE: Atherosclerosis is a multigenic process leading to the progressive occlusion of arteries of mid to large caliber. A key step of the atherogenic process is the proliferation and migration of vascular smooth muscle cells into the intimal layer of the arterial conduit. The phenotype of smooth muscle cells, once within the intima, is known to switch from contractile to de-differentiated, yet the regulation of this switch at the genomic level is unknown. Estrogen has been shown to regulate cell proliferation both for cancer cells and for vascular cells. However, methylation of the estrogen receptor-alpha gene (ERalpha) promoter blocks the expression of ERalpha, and thereby can antagonize the regulatory effect of estrogen on cell proliferation. We sought to determine whether methylation of the ERalpha is differentially and selectively regulated in contractile versus de-differentiated arterial smooth muscle cells. METHODS: We used Southern blot assay, combined bisulfite restriction analysis (Cobra) and restriction landmark genome scanning (RLGS-M) to determine the methylation status of ERalpha in human aortic smooth muscle cells, either in situ (normal aortic tissue, contractile phenotype), or the same cells explanted from the aorta and cultured in vitro (de-differentiated phenotype). RESULTS: We provide evidence that methylation of the ERalpha in smooth muscle cells that display a proliferative phenotype is altered relative to the same cells studied within the media of non-atherosclerotic aortas. Thus, the ERalpha promoter does not appear to be methylated in situ (normal aorta), but becomes methylated in proliferating aortic smooth muscle cells. Using a screening technique, RLGS-M, we show that alteration in methylation associated with the smooth muscle cell phenotypic switch does not seem to require heightened activity of the methyltransferase enzyme, and appears to be selective for the ERalpha and a limited pool of genes whose CpG island becomes either demethylated or de novo methylated. CONCLUSIONS: Our data support the concept that the genome of aortic smooth muscle cells is responsive to environmental conditions, and that DNA methylation, in particular methylation of the ERalpha, could contribute to the switch in phenotype observed in these cells.

Aorta↗

Dose-dependent increase of oxidative damage in the testes of rats subjected to acute iron overload.

This study describes the in vivo response of rat testes to acute iron overload. Male Wistar rats (250-300 g) were injected ip with iron dextran at doses of 250 (Fe250), 500 (Fe500), or 1000 mg/kg body wt (Fe1000) or with saline (C). Parameters of oxidative stress and iron toxicity were measured 20 h after injection. Total iron content was 3.5-, 5.3-, and 10.4-fold higher in the Fe250, Fe500, and Fe1000 groups, respectively, compared to controls (320 +/- 22 nmol/g tissue). Histological studies showed that: (a) iron accumulated in the sperm and other testes cells, and (b) spermatogenesis was markedly lower in the Fe1000 group. The concentration of alpha-tocopherol, ubiquinol-9, and ubiquinol-10 in the testes was inversely correlated with the extent of oxidation. Testes chemiluminescence was 45% higher in the Fe1000 group compared to controls (41 cps/cm(2)). Endogenous levels of lipid oxidation, evaluated as 2-thiobarbituric acid-reactive substances, were 46, 73, and 82% higher in the groups Fe250, Fe500, and Fe1000, respectively, than in controls (33.6 +/- 1.4 nmol/g tissue). Oxidative damage to DNA evaluated by the presence of 8-oxo-2'-deoxyguanosine (oxo(8)dG), was 26, 39, and 74% higher in the Fe250, Fe500, and Fe1000 groups, respectively, than in the C group (2.3 +/- 0.1 oxo(8)dG/10(5)dG). Protein oxidation was measured as protein thiols and carbonyl content in proteins and glutamine synthase activity. Protein thiols content and glutamine synthase activity were similar in all the groups, while the protein-associated carbonyls content was 96% higher in the Fe1000 group than in the C group (2.1 +/- 0.4 nmol/mg protein). No changes in the activities of superoxide dismutase, catalase, and glutathione peroxidase were observed. The results showed that in vivo iron overload induced oxidative stress and the impairment of spermatogenesis in rat testes that were dependent on the amount of iron supplemented and its accumulation in the tissue.

8-Hydroxy-2'-Deoxyguanosine↗

Sleep-disordered breathing and periodic limb movements in sleep in older patients with schizophrenia.

BACKGROUND: Since the prevalence of both sleep-disordered breathing (SDB) and periodic limb movements in sleep (PLMS) increase with age, we explored whether older schizophrenia patients would have a high incidence of SDB and PLMS. Correlations between sleep and clinical variables were also examined. METHODS: Fifty-two patients (mean age = 59.6 years, SD = 8.9) had their sleep/wake, respiration, and leg movements recorded using a modified Medilog/Respitrace portable recording system plus oximetry. A battery of clinical, psychosocial, and motor disturbance variables were collected by research center staff. RESULTS: Forty-eight percent of these patients had at least 10 respiratory events per hour of sleep. These patients reported more symptoms of daytime sleepiness than patients with fewer than 10 events per hour. The relatively high prevalence of SDB in this group may contribute to overall sleep disturbances, and does not appear to be a result of high body mass index. Only 14% of the patients had at least five limb movements per hour of sleep, suggesting the prevalence of PLMS is much lower than expected in this age group. The number of leg jerks was inversely related to symptoms of tardive dyskinesia. CONCLUSIONS: The disturbance of sleep in these patients may be due, in part, to SDB, but is unlikely due to PLMS.

Age Factors↗

Vitamin E treatment for tardive dyskinesia. Veterans Affairs Cooperative Study #394 Study Group.

BACKGROUND: Several short-term, controlled trials have documented the efficacy of vitamin E in treating tardive dyskinesia. However, the persistent nature of the disease prompted us to perform a multicenter, longer-term trial of vitamin E. METHODS: The study was a prospective, randomized, 9-site trial of up to 2 years of treatment with d-vitamin E (1600 IU/d) vs matching placebo. One hundred fifty-eight subjects with tardive dyskinesia who were receiving neuroleptic medications were enrolled. The blinded assessments performed were clinical (Abnormal Involuntary Movements Scale, Barnes Akathisia Scale, and Modified Simpson-Angus [for Extrapyramidal Symptoms] Scale) and electromechanical assessments of movement disorders, psychiatric status (Brief Psychiatric Rating Scale), and functioning (Global Assessment of Functioning). There were no significant differences in baseline demographic characteristics or in study assessments between the group that received vitamin E and the group that received placebo. RESULTS: Vitamin E was well tolerated and subject compliance with medication was good and similar between treatment groups. One hundred seven subjects (70% of those receiving vitamin E and 66% of subjects receiving placebo) completed at least 1 year of treatment. There were no significant effects of vitamin E on total scores or subscale scores for the AIMS, electromechanical measures of dyskinesia, or scores from the other 4 scales. CONCLUSION: This long-term, randomized trial of vitamin E vs placebo found no evidence for efficacy of vitamin E in the treatment of tardive dyskinesia.

Antipsychotic Agents↗

Parallel phase I studies of daunorubicin given with cytarabine and etoposide with or without the multidrug resistance modulator PSC-833 in previously untreated patients 60 years of age or older with acute myeloid leukemia: results of cancer and leukemia group B study 9420.

PURPOSE: The Cancer and Leukemia Group B conducted parallel phase I trials of cytarabine, daunorubicin, and etoposide (ADE) with or without PSC-833 (P), a modulator of p-glycoprotein-mediated multidrug resistance. PATIENTS AND METHODS: One hundred ten newly diagnosed patients > or = 60 years of age with de novo acute myeloid leukemia (AML) were treated. All patients received cytarabine by continuous infusion for 7 days at 100 mg/m(2)/d. The starting dose of daunorubicin was 30 mg/m(2)/d for 3 days. Etoposide was administered at a dose of 100 mg/m(2)/d for 3 days, except in the last cohort administered ADEP, who received 60 mg/m(2). PSC-833 was given intravenously with a loading dose of 1.5 mg/kg over 2 hours and a simultaneous continuous infusion of 10 mg/kg/d continued until 24 hours after the last dose of daunorubicin or etoposide. RESULTS: There was no toxicity attributed to the PSC-833. Dose-limiting toxicity was primarily gastrointestinal (diarrhea, mucositis in the ADEP group). The estimated maximum-tolerated doses, calculated using a logistic regression model, were daunorubicin 40 mg/m(2)/d for 3 days with etoposide 60 mg/m(2) for 3 days in the ADEP group and daunorubicin 60 mg/m(2)/d for 3 days and etoposide 100 mg/m(2)/d for 3 days in the ADE group. Twenty-one (48%) of 44 patients achieved complete remission with ADE, compared with 29 (44%) of 66 patients treated with ADEP. CONCLUSION: It is necessary to decrease the doses of daunorubicin and etoposide when they are administered with PSC-833, presumably because of the effect of the modulator on the pharmacokinetics of these agents. A phase III trial comparing the regimens derived from this phase I trial has recently begun.

Acute Disease↗

The Cdc2 protein kinase controls Cdc10/Sct1 complex formation.

In the fission yeast Schizosaccharomyces pombe, the execution of Start requires the activity of the Cdc2 protein kinase and the Cdc10/Sct1 transcription complex. The loss of any of these genes leads to G1 arrest and activation of the mating pathway under appropriate conditions. We have undertaken a genetic and biochemical analysis of these genes and their protein products to elucidate the molecular mechanism that governs the regulation of Start. We demonstrate that serine-196 of Cdc10 is phosphorylated in vivo and provide evidence that suggests that phosphorylation of this residue is required for Cdc10 function. Substitution of serine-196 of Cdc10 with alanine (Cdc10 S196A) leads to inactivation of Cdc10. We show that Cdc10 S196A is incapable of associating with Sct1 to form a heteromeric complex, whereas substitution of this serine with aspartic acid (S196D) restores DNA-binding activity by allowing Cdc10 to associate with Sct1. Furthermore, we demonstrate that Cdc2 activity is required for the formation of the heteromeric Sct1/Cdc10 transcription complex and that the Cdc10 S196D mutation alleviates this requirement. We thus provide biochemical evidence to demonstrate one mechanism by which the Cdc2 protein kinase may regulate Start in the fission yeast cell cycle.

CDC2 Protein Kinase↗

Ran1 functions to control the Cdc10/Sct1 complex through Puc1.

We have undertaken a biochemical analysis of the regulation of the G1/S-phase transition and commitment to the cell cycle in the fission yeast Schizosaccharomyces pombe. The execution of Start requires the activity of the Cdc2 protein kinase and the Sct1/Cdc10 transcription complex. Progression through G1 also requires the Ran1 protein kinase whose inactivation leads to activation of the meiotic pathway under conditions normally inhibitory to this process. We have found that in addition to Cdc2, Sct1/Cdc10 complex formation requires Ran1. We demonstrate that the Puc1 cyclin associates with Ran1 and Cdc10 in vivo and that the Ran1 protein kinase functions to control the association between Puc1 and Cdc10. In addition, we present evidence that the phosphorylation state of Cdc10 is altered upon inactivation of Ran1. These results provide biochemical evidence that demonstrate one mechanism by which the Ran1 protein kinase serves to control cell fate through Cdc10 and Puc1.

Cell Cycle↗

Natural Killer Cell Subsets and Development

NK cells are large granular lymphocytes that are an important component of the innate immune system. Surface density expression of CD16 and CD56 can be used to classify functionally and developmentally distinct NK cell subsets. This notion has more recently been confirmed by the identification of unique cytokine receptor expression patterns within each NK cell subset. There are substantial data to suggest that NK cells are derived from proliferating bone marrow precursors. Murine studies have also shown that an intact marrow environment is necessary for the development of NK cells from their progenitor populations. Culture of bone marrow cells in IL-2-containing medium gives rise to effectors that are essentially indistinguishable from mature NK cells, and it has also been shown that NK cells can be generated in vitro by culture of CD34(+) bone marrow cells with IL-2. Several lines of evidence suggest that NK cells and T cells may share a common precursor. T cells and NK cells can both be generated from immature thymocytes in vitro, and both CD3(+) lymphocytes with functional TCR and CD3(-)CD16(+) NK cells can be generated from fetal liver cells under the appropriate culture conditions. One might therefore postulate the existence of a common NK/T-cell progenitor within the fetal liver that possesses the ability to differentiate into T lymphocytes under thymic influences. Alternatively, in the absence of these signals, or perhaps in response to other stimuli (i.e., IL-2), the NK/T-cell progenitor differentiates into cytolytic NK effectors. Although IL-2 has been found to be critical to the development of NK cells in vitro, it is important to note that NK cells are present in IL-2 knockout mice. Therefore, other cytokines that bind to components of the IL-2R may be important to the development of NK cells in vivo.

Journal Article↗

Extrapyramidal motor signs in clinically diagnosed Alzheimer disease.

We reviewed clinical case series published over a 10-year period addressing the cross-sectional frequency, incidence, and diagnostic and prognostic significance of extrapyramidal signs (EPS) in Alzheimer disease (AD). The review was prompted by recent reports of Lewy body (LB) pathology in the brains of many AD patients and the association of LB pathology with clinical parkinsonism in AD. In the clinical case series reviewed, we evaluated several possible determinants of prevalent EPS, including neuroleptic use, EPS assessment technique, and dementia severity. Neuroleptics were a well recognized cause of parkinsonism in these reports, though some failed to document the frequency of neuroleptic use. Assessment methods were also important: Studies using structured clinical research scales to rate EPS reported higher frequencies than studies employing routine neurological examination. The relationship between parkinsonism and dementia severity was complex. Some studies found bradykinesia, facial masking, and parkinsonian postural changes even in mildly demented, neuroleptic-naive AD patients. Rigidity, on the other hand, became increasingly common as dementia progressed. AD patients with EPS showed faster cognitive and functional decline and earlier death than those without EPS, even after consideration of differences in initial dementia severity. In the differential diagnosis of dementia with parkinsonism, LB disease in its various forms, including AD with LB, is the principal diagnostic consideration. Future studies of parkinsonism in AD should employ standardized clinical rating scales and should exclude patients on neuroleptics or analyze their results separately. Investigators should report frequencies for individual parkinsonian signs in addition to the overall prevalence of EPS to facilitate meaningful comparisons across studies.

Alzheimer Disease↗

Early course of new-onset tardive dyskinesia in older patients.

The risk of neuroleptic-induced tardive dyskinesia (TD) in older patients is known to be high, yet the course of TD in older patients has not been systematically studied. We followed 69 middle-aged and elderly outpatients newly diagnosed with TD in a naturalistic, longitudinal, prospective fashion. Standardized assessment instruments were administered to measure psychopathology, cognitive impairment, and abnormal movements. We observed a highly fluctuating early course of TD. Although the cumulative proportion of patients whose TD partially remitted was quite high (56% at 3 months, and 80% at 6 months), the cumulative proportion of patients whose TD relapsed (post-remission) was also high (33% at 3 months and 54% at 6 months). These findings may have clinical as well as theoretical implications for TD in older subjects.

Aged↗

Sct1 functions in partnership with Cdc10 in a transcription complex that activates cell cycle START and inhibits differentiation.

A fission yeast cell cycle START gene has been identified, sct1. Loss of sct1 function results in cell cycle arrest at START and simultaneously in derepression of the mating pathway. sct1 therefore functions both as an essential activator of the mitotic cell cycle and as a repressor of differentiation. p72sct1 shares 36% sequence similarity with p85cdc10. p72sct1 is shown to act in partnership with p85cdc10 in a cell cycle regulatory transcription complex. A single dominant mutation within the putative DNA-binding domain of p72sct1 renders the cell independent of cdc10 function for the execution of START.

Amino Acid Sequence↗

A chronic "postinfectious" fatigue syndrome associated with benign lymphoproliferation, B-cell proliferation, and active replication of human herpesvirus-6.

A 17-year-old, previously healthy woman developed an acute "mononucleosis-like" illness with an associated "atypical" pneumonitis, followed by years of debilitating chronic fatigue, fevers, a 10-kg weight loss, night sweats, and neurocognitive symptoms. Thereafter, her sister developed a similar but less severe illness. The patient developed marked, chronic lymphadenopathy and splenomegaly, with associated persistent relative lymphocytosis and atypical lymphocytosis and with thrombocytopenia. After 3 years of illness, a splenectomy was performed, which resulted in some symptomatic improvement, prompt weight gain, and resolution of all hematologic abnormalities. Serial immunologic studies revealed a strikingly elevated number of activated B lymphocytes and a T lymphopenia, which improved but did not return to normal postsplenectomy. No causal association was found with any of several infectious agents that could produce such a lymphoproliferative illness. However, both the patient and her sister had evidence of active infection with the recently discovered human herpesvirus-6. Seven years after the onset of the illness, the patient and her sister remain chronically ill.

Adolescent↗

Fc gamma receptor type III (CD16) is included in the zeta NK receptor complex expressed by human natural killer cells.

We recently reported that CD3- natural killer (NK) cells express the zeta chain of the T-cell receptor complex (zeta NK) in association with higher molecular weight structures whose expression differs between individual NK cell clones. Because NK cell cytolytic activity is known to be triggered by perturbation of the type III Fc gamma receptor (CD16), we sought to determine whether this activating molecule is included in the zeta NK molecular complex. Biochemical evidence for a physical association between CD16 and zeta NK was obtained by comparing immunoprecipitates formed using monoclonal antibodies reactive with each of these molecules by SDS/polyacrylamide gel electrophoresis, immunoblotting, and peptide mapping. In both clonal and polyclonal populations of CD3- NK cells, CD16 and zeta NK specifically associated with one another. Functional evidence for a specific association between CD16 and zeta NK in intact cells was obtained by demonstrating a coordinate down-modulation of both of these molecules induced by either phorbol 12-myristate 13-acetate or monoclonal antibodies reactive with CD16. Our results suggest that Fc gamma receptor type III (CD16) is included in the zeta NK complex and that this complex is likely to play an important role in NK cell activation.

Antibodies, Monoclonal↗