INTERACTION OF AGGREGATED NATIVE AND MUTANT IGE RECEPTORS WITH THE CELLULAR SKELETON

被引:34
作者
MAO, SY [1 ]
ALBER, G [1 ]
RIVERA, J [1 ]
KOCHAN, J [1 ]
METZGER, H [1 ]
机构
[1] HOFFMANN LA ROCHE INC,DEPT MOLEC GENET,NUTLEY,NJ 07110
关键词
D O I
10.1073/pnas.89.1.222
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
When aggregated, cell surface proteins become resistant to solubilization by detergents, presumably because of aggregation-induced or -stabilized interactions between the membrane protein and the cytoskeleton or plasma membrane skeleton. We genetically engineered variants of the tetrameric high-affinity receptor for IgE (Fc-epsilon-RI) to identify a site on its alpha, beta, or gamma-chains that mediates such putative interactions. Using flow cytofluorometry, we studied rat basophilic leukemia cells, transiently transfected COS cells, and stably transfected P815 cells bearing wild-type and mutated receptors. We observed that (i) solubilization was markedly dependent on the degree of aggregation, the extent varying somewhat with the cell type and, particularly at lower levels of aggregation, with the time after addition of detergent; (ii) truncation of no single cytoplasmic domain of the alpha, beta, or gamma-chains ablated the insolubilization effect; and (iii) incomplete receptors were also efficiently insolubilized by aggregation. Thus receptors consisting only of alpha and gamma-chains, a "receptor" consisting of only the ectodomain of the alpha-chain attached to the plasma membrane by a glycosyl-phosphatidyl inositol anchor, and "receptors" consisting only of minimally modified gamma-chains were resistant to solubilization after aggregation. We conclude that no unique subunit or domain of Fc-epsilon-RI mediates the insolubilization phenomenon. Our results support a model in which the bridging of membrane proteins leads to their becoming nonspecifically enmeshed in a network of membrane skeletal proteins on either the outside and/or the inside of the membrane so that dissolution of the lipid bilayer becomes irrelevant.
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页码:222 / 226
页数:5
相关论文
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