首页> 外文期刊>Molecular Immunology >Fc receptor-γ subunits with both polar or non-polar amino acids at position of T22 are capable of restoring surface expression of the high-affinity IgE receptor and degranulation in γ subunit-deficient rat basophilic leukemia cells
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Fc receptor-γ subunits with both polar or non-polar amino acids at position of T22 are capable of restoring surface expression of the high-affinity IgE receptor and degranulation in γ subunit-deficient rat basophilic leukemia cells

机译:在T22位置同时具有极性或非极性氨基酸的Fc受体-γ亚基能够恢复高亲和力IgE受体的表面表达,并能在γ亚基缺陷的大鼠嗜碱性白血病细胞中脱粒

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摘要

The high-affinity IgE receptor (Fce{open}RI) is formed by the IgE-binding α subunit, β subunit and γ subunits homodimer. All three subunits are required for proper expression of the receptor on the plasma membrane of mast cells and basophils. However, the exact molecular mechanism of inter-subunit interactions required for correct expression and function of the Fce{open}RI complex remains to be identified. A recent study suggested that polar aspartate at position 194 within the transmembrane domain of the α subunit could interact by hydrogen bonding with polar threonine at position 22 in the transmembrane domains of the γ subunits. To verify this, we used previously isolated rat basophilic leukemia (RBL)-2H3 variant cells deficient in the expression of the Fce{open}RI-γ subunit (FcR-γ), and transfected them with DNA vectors coding for FcR-γ of the wild-type or mutants in which T22 was substituted for nonpolar alanine (T22A mutant) or polar serine (T22S mutant). Analysis of the transfectants showed that both T22A and T22S mutants were capable to restore surface expression of the Fce{open}RI similar to wild-type FcR-γ. Furthermore, cells transfected with wild-type, T22A or T22S FcR-γ showed comparably enhanced Fce{open}RI-mediated degranulation. Our data indicate that substitution of FcR-γ T22 with non-polar amino acid does not interfere with surface expression of the Fce{open}RI and its signaling capacity.
机译:高亲和力的IgE受体(Fce {open} RI)由结合IgE的α亚基,β亚基和γ亚基同二聚体形成。这三个亚基是肥大细胞和嗜碱性粒细胞质膜上受体正确表达所必需的。然而,Fce {open} RI复合物的正确表达和功能所需的亚基间相互作用的确切分子机制仍有待确定。最近的一项研究表明,α亚基跨膜域内第194位的极性天冬氨酸可通过氢键与γ亚基跨膜域内第22位的极性苏氨酸相互作用。为了验证这一点,我们使用了先前分离的大鼠Fce {open}RI-γ亚基(FcR-γ)表达不足的嗜碱性粒细胞白血病(RBL)-2H3变异细胞,并用编码FcR-γ的DNA载体转染了它们。 T22替代了非极性丙氨酸(T22A突变体)或极性丝氨酸(T22S突变体)的野生型或突变体。对转染子的分析表明,T22A和T22S突变体均能够恢复Fce {open} RI的表面表达,类似于野生型FcR-γ。此外,用野生型,T22A或T22SFcR-γ转染的细胞表现出相对增强的Fce {open} RI介导的脱粒作用。我们的数据表明用非极性氨基酸取代FcR-γT22不会干扰Fce {open} RI的表面表达及其信号传导能力。

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