van de Winkel J G, de Wit T P, Ernst L K, Capel P J, Ceuppens J L
Department of Immunology, University Hospital Utrecht, The Netherlands.
J Immunol. 1995 Mar 15;154(6):2896-903.
Four individuals have been identified, within a single family, who lack phagocyte expression of the high affinity type I IgG receptor (CD64). As a result, their monocytes are unable to support mouse IgG2a anti-CD3-induced T cell mitogenesis (nonresponder individuals). Southern blotting proved all three human Fc gamma receptor I (hFc gamma RI) genes to be present in nonresponders without major structural changes. Nucleotide sequencing showed identical hFc gamma RIA promoter regions in all individuals. At the message level, a distinct difference was noted between monocytes from control (responder) donors and from nonresponders. Both a 1.7- and 1.6-kb message were found in responders, whereas in nonresponders only the 1.6-kb species was detectable. Reverse transcriptase-PCR analyses showed the hFc gamma RIa transcript (encoding a receptor with three extracellular Ig-like domains) to be present at a approximately 15- to 20-fold lower level in nonresponder monocytes. Importantly, we found a single nucleotide difference (C --> T) within the extracellular domain exon 1-encoding region of hFc gamma RIA in nonresponders, resulting in the change of codon 92 (encoding an arginine) into a termination codon. This change likely affects mRNA stability and, thereby, leads to undetectable expression of phagocyte-hFc gamma RIa. Despite this defect, these individuals are apparently healthy, suggesting that hFc gamma RIa is dispensable for phagocyte functioning.
在一个家族中已鉴定出4名个体,他们的吞噬细胞缺乏高亲和力I型IgG受体(CD64)的表达。因此,他们的单核细胞无法支持小鼠IgG2a抗CD3诱导的T细胞有丝分裂(无反应个体)。Southern印迹法证明所有3个人类Fcγ受体I(hFcγRI)基因在无反应者中均存在,且无重大结构变化。核苷酸测序显示所有个体的hFcγRIA启动子区域相同。在信息水平上,对照(有反应)供体和无反应者的单核细胞之间存在明显差异。在有反应者中发现了1.7 kb和1.6 kb的信息,而在无反应者中仅可检测到1.6 kb的条带。逆转录酶-PCR分析显示,hFcγRIa转录本(编码具有三个细胞外Ig样结构域的受体)在无反应者单核细胞中的水平比有反应者低约15至20倍。重要的是,我们在无反应者的hFcγRIA细胞外结构域外显子1编码区域内发现了一个单核苷酸差异(C→T),导致密码子92(编码精氨酸)变为终止密码子。这种变化可能影响mRNA的稳定性,从而导致吞噬细胞hFcγRIa的表达无法检测到。尽管存在这种缺陷,但这些个体显然健康,这表明hFcγRIa对于吞噬细胞功能并非必需。