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完整红细胞中一种受Ca2+调节的酶促使膜蛋白之间形成γ-谷氨酰-ε-赖氨酸桥。

Formation of gamma-glutamyl-epsilon-lysine bridges between membrane proteins by a Ca2+-regulated enzyme in intact erythrocytes.

作者信息

Lorand L, Siefring G E, Lowe-Krentz L

出版信息

J Supramol Struct. 1978;9(3):427-40. doi: 10.1002/jss.400090313.

Abstract

A rise in the intracellular concentration of Ca2+-ions in human erythrocytes causes the formation of high-molecular-weight membrane protein polymers, cross-linked by gamma-glutamyl-epsilon-lysine side chain bridges. Cross-linking involves proteins at the cytoplasmic side of the membrane (band 4.1, spectrin, and band 3 materials) and the reaction is catalyzed by the intrinsic transglutaminase. This enzyme is regulated by Ca2+-ions and it exits in a latent form in normal cells. The protein polymer, isolated from the membranes of Ca2+-loaded intact human red cells, is heterogeneous in size and may contain as many as 6 moles of gamma-glutamyl-epsilon-lysine cross-links per 100,000 gm of protein. Synthetic compounds, which either compete against the epsilon-lysine cross-linking functionalities of the protein substrates (eg, histamine, aminoacetonitrile, cystamine) or directly inactivate the transamidase (eg, cystamine), inhibit the membrane polymerization reaction in intact human erythrocytes. They also interfere with the Ca2+-induced irreversible shape change from discocyte to echinocyte and inhibit the irreversible loss of membrane deformability. Thus, the transamidase-catalyzed production of gamma-glutamyl-epsilon-lysine cross-links in the membrane may be a common denominator in these cellular manifestations.

摘要

人红细胞内Ca2+离子浓度升高会导致高分子量膜蛋白聚合物的形成,这些聚合物通过γ-谷氨酰-ε-赖氨酸侧链桥交联。交联涉及膜细胞质侧的蛋白质(4.1带、血影蛋白和3带物质),该反应由内在转谷氨酰胺酶催化。这种酶受Ca2+离子调节,在正常细胞中以潜伏形式存在。从加载Ca2+的完整人红细胞膜中分离出的蛋白质聚合物大小不均一,每100,000克蛋白质可能含有多达6摩尔的γ-谷氨酰-ε-赖氨酸交联。合成化合物,要么与蛋白质底物的ε-赖氨酸交联功能竞争(如组胺、氨基乙腈、胱胺),要么直接使转酰胺酶失活(如胱胺),可抑制完整人红细胞中的膜聚合反应。它们还会干扰Ca2+诱导的从盘状细胞到棘状细胞的不可逆形状变化,并抑制膜变形性的不可逆丧失。因此,转酰胺酶催化的膜中γ-谷氨酰-ε-赖氨酸交联的产生可能是这些细胞表现的一个共同特征。

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