D Metes, C Galatiuc, I Moldovan, P A Morel, W H Chambers, A B DeLeo, H Rabinowich, R Schall, T L Whiteside, A Sulica
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CD32 transcripts were identified from highly purified NK cells using reverse transcription-polymerase chain reaction with CD32-specific primers, followed by Southern blotting. Enhanced chemiluminescence-Western blot (ECL-WB) analysis of lysates of purified NK cells indicated that mAb IV.3 recognized a molecule of approximately 40 kD. The Fc gamma RII on NK cells was able to transduce intracellular signals in several types of assay. Cross-linking of anti-CD32 resulted in a mobilization of intracellular Ca2+, although to a lesser extent than that induced by cross-linking CD16. Both mAbs IV.3 and 41H16 were found to be capable of inducing reverse antibody-dependent cellular cytotoxicity against FcR+ target cells (e.g. P815). These data represent the first direct description of the expression and function of Fc gamma RII on human NK cells.</p>","PeriodicalId":77279,"journal":{"name":"Natural immunity","volume":"13 6","pages":"289-300"},"PeriodicalIF":0.0000,"publicationDate":"1994-11-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Expression and function of Fc gamma RII on human natural killer cells.\",\"authors\":\"D Metes, C Galatiuc, I Moldovan, P A Morel, W H Chambers, A B DeLeo, H Rabinowich, R Schall, T L Whiteside, A Sulica\",\"doi\":\"\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>In this report, we present data on the expression and function of Fc gamma RII (CD32) by natural killer (NK) cells. Highly enriched NK cell populations were isolated from peripheral blood lymphocytes by negative selection and consisted of > or = 95% CD3-/CD56+ cells. Flow cytometric analyses with anti-CD32 monoclonal antibodies (mAbs) demonstrated that a small proportion of NK cells were recognized by mAbs IV.3 and 41H16. Two-color flow cytometric analysis indicated coexpression of the epitope on NK cells recognized by both these mAbs. Verification of expression of CD32 on NK cells was obtained by demonstrating coexpression of CD32 on either CD16+ or CD56+ cells. The CD32+/CD16+ and CD32+/CD56+ cells represented approximately 7 and 3% of the total, respectively. CD32 transcripts were identified from highly purified NK cells using reverse transcription-polymerase chain reaction with CD32-specific primers, followed by Southern blotting. Enhanced chemiluminescence-Western blot (ECL-WB) analysis of lysates of purified NK cells indicated that mAb IV.3 recognized a molecule of approximately 40 kD. The Fc gamma RII on NK cells was able to transduce intracellular signals in several types of assay. Cross-linking of anti-CD32 resulted in a mobilization of intracellular Ca2+, although to a lesser extent than that induced by cross-linking CD16. Both mAbs IV.3 and 41H16 were found to be capable of inducing reverse antibody-dependent cellular cytotoxicity against FcR+ target cells (e.g. P815). 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引用次数: 0
摘要
在本报告中,我们介绍了Fc γ RII (CD32)在自然杀伤(NK)细胞中的表达和功能的数据。通过阴性选择从外周血淋巴细胞中分离出高度富集的NK细胞群,其中CD3-/CD56+细胞>或= 95%。用抗cd32单克隆抗体(mab)流式细胞术分析表明,一小部分NK细胞被mab IV.3和41H16识别。双色流式细胞分析表明,这两种单克隆抗体都能识别NK细胞上的表位共表达。通过证明CD32在CD16+或CD56+细胞上的共表达,验证了CD32在NK细胞上的表达。CD32+/CD16+和CD32+/CD56+细胞分别约占总数的7%和3%。利用CD32特异性引物的逆转录聚合酶链反应,从高度纯化的NK细胞中鉴定出CD32转录本,然后进行Southern印迹。增强化学发光- western blot (ECL-WB)分析纯化NK细胞的裂解物表明,mAb IV.3识别约40 kD的分子。在几种类型的实验中,NK细胞上的Fc γ RII能够转导细胞内信号。抗cd32交联导致细胞内Ca2+的动员,尽管其程度低于CD16交联诱导的动员。发现单克隆抗体IV.3和41H16都能够诱导对FcR+靶细胞(如P815)的反向抗体依赖性细胞毒性。这些数据首次直接描述了Fc γ RII在人NK细胞上的表达和功能。
Expression and function of Fc gamma RII on human natural killer cells.
In this report, we present data on the expression and function of Fc gamma RII (CD32) by natural killer (NK) cells. Highly enriched NK cell populations were isolated from peripheral blood lymphocytes by negative selection and consisted of > or = 95% CD3-/CD56+ cells. Flow cytometric analyses with anti-CD32 monoclonal antibodies (mAbs) demonstrated that a small proportion of NK cells were recognized by mAbs IV.3 and 41H16. Two-color flow cytometric analysis indicated coexpression of the epitope on NK cells recognized by both these mAbs. Verification of expression of CD32 on NK cells was obtained by demonstrating coexpression of CD32 on either CD16+ or CD56+ cells. The CD32+/CD16+ and CD32+/CD56+ cells represented approximately 7 and 3% of the total, respectively. CD32 transcripts were identified from highly purified NK cells using reverse transcription-polymerase chain reaction with CD32-specific primers, followed by Southern blotting. Enhanced chemiluminescence-Western blot (ECL-WB) analysis of lysates of purified NK cells indicated that mAb IV.3 recognized a molecule of approximately 40 kD. The Fc gamma RII on NK cells was able to transduce intracellular signals in several types of assay. Cross-linking of anti-CD32 resulted in a mobilization of intracellular Ca2+, although to a lesser extent than that induced by cross-linking CD16. Both mAbs IV.3 and 41H16 were found to be capable of inducing reverse antibody-dependent cellular cytotoxicity against FcR+ target cells (e.g. P815). These data represent the first direct description of the expression and function of Fc gamma RII on human NK cells.