Clément S, Velasco P T, Murthy S N, Wilson J H, Lukas T J, Goldman R D, Lorand L
Department of Cell and Molecular Biology, Northwestern University Medical School, Chicago, Illinois 60611, USA.
J Biol Chem. 1998 Mar 27;273(13):7604-9. doi: 10.1074/jbc.273.13.7604.
Mere addition of Ca2+ to a lens cortical homogenate (bovine) generates a series of products composed of a variety of high molecular weight vimentin species. The Ca2+-induced cross-linking of this cytoskeletal element seems to be mediated by the intrinsic transglutaminase of lens, because the reaction could be blocked at the monomeric state of vimentin by the inclusion of small synthetic substrates of the enzyme dansylcadaverine or dansyl-epsilon-aminocaproyl-Gln-Gln-Ile-Val. These compounds are known to compete against the Gln or Lys functionalities of proteins that would participate in forming the Nepsilon(gamma-glutamyl)lysine protein-to-protein cross-links. The cytosolic transglutaminase-catalyzed reactions could be reproduced with purified bovine lens vimentin and also with recombinant human vimentin preparations. Employing the latter system, we have titrated the transglutaminase-reactive sites of vimentin and, by sequencing the dansyl-tracer-labeled segments of the protein, we have shown that residues Gln453 and Gln460 served as acceptor functionalities and Lys97, Lys104, Lys294, and Lys439 as electron donor functionalities in vimentin. The transglutaminase-dependent reaction of this intermediate filament protein might influence the shape and plasticity of the fiber cells, and the enzyme-catalyzed cross-linking of vimentin, in conjunction with other lens constituents, may contribute to the process of cataract formation.
仅向晶状体皮质匀浆(牛)中添加Ca2+就会产生一系列由多种高分子量波形蛋白组成的产物。Ca2+诱导的这种细胞骨架成分的交联似乎是由晶状体的内在转谷氨酰胺酶介导的,因为通过加入该酶的小合成底物丹磺酰尸胺或丹磺酰-ε-氨基己酰-Gln-Gln-Ile-Val,可以在波形蛋白的单体状态下阻断该反应。已知这些化合物会与参与形成Nε(γ-谷氨酰)赖氨酸蛋白间交联的蛋白质的Gln或Lys功能基团竞争。胞质转谷氨酰胺酶催化的反应可以用纯化的牛晶状体波形蛋白以及重组人波形蛋白制剂重现。利用后一种系统,我们滴定了波形蛋白的转谷氨酰胺酶反应位点,并且通过对该蛋白的丹磺酰示踪剂标记片段进行测序,我们表明在波形蛋白中,Gln453和Gln460残基作为受体功能基团,而Lys97、Lys104、Lys294和Lys439作为电子供体功能基团。这种中间丝蛋白的转谷氨酰胺酶依赖性反应可能会影响纤维细胞的形状和可塑性,并且该酶催化的波形蛋白交联与晶状体的其他成分一起,可能会促进白内障的形成过程。