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S100A1 utilizes different mechanisms for interacting with calcium-dependent and calcium-independent target proteins

机译:S100A1利用不同的机制与钙依赖性和钙非依赖性靶蛋白相互作用

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While previous studies have identified target proteins that interact with S100A1 in a calcium-dependent manner as well as target proteins that interact in a calcium-independent manner, the molecular mechanisms of S100A1-target protein interaction have not been elucidated. In this study, point and deletion mutants of S100A1 were used to investigate the contribution of carboxyl terminal amino acids to S100A1 interaction with calcium-dependent and calcium-independent target proteins. First, a recombinant rat S100A1 protein (recS100A1) expressed in bacteria exhibited physical and chemical properties indistinguishable from native S100A1. Next, proteins lacking the carboxyl-terminal nine residues of recS100A1 (Delta 85-93), or containing alanine substitutions at Phe 88 (F88A), Phe 89 (F89A), or Trp 90 (W90A), both Phe 88 and Phe 89 (F88/89A), or all three aromatic residues (F88/89A-W90A) were recombinantly expressed. Like recS100A1, F88A, F89A, and W90A proteins interacted with phenyl-Sepharose in a calcium-dependent manner. However, the Delta 85-93 protein did not interact with phenyl-Sepharose, indicating that a phenyl-Sepharose-binding region (PSBR) of recS100A1 had been disrupted. The F88/89A and F88/89A-W90A proteins exhibited reduced calcium-dependent interaction with phenyl-Sepharose when compared with recS100A1, demonstrating that the carboxyl-terminal aromatic residues Phe 88, Phe 89, and Trp 90 comprise the PSBR of S100A1. Fluorescence studies showed that the Delta 85-93 protein exhibited reduced calcium-dependent interaction with the dodecyl CapZ peptide, TRTK, while W90A bound TRTK with a K-d Of 5.55 mu M. These results demonstrate that the calcium-dependent target protein-binding site and the PSBR are indistinguishable. In contrast to the calcium-dependent target TRTK, activation of the calcium-independent target protein aldolase A by the point and deletion mutant S100A1s was indistinguishable from native S100A1. These results demonstrate that carboxyl-terminal residues are not required for S100A1 modulation of calcium-independent target protein aldolase A. Alltogether, these results indicate that S100A1 utilizes distinct mechanisms for interaction with calcium-independent and calcium-dependent target proteins. [References: 33]
机译:尽管先前的研究已经确定了与S100A1以钙依赖性方式相互作用的靶蛋白以及以钙非依赖性方式相互作用的靶蛋白,但仍未阐明S100A1与靶蛋白相互作用的分子机制。在这项研究中,S100A1的点和缺失突变体用于研究羧基末端氨基酸对S100A1与钙依赖性和钙非依赖性靶蛋白相互作用的贡献。首先,在细菌中表达的重组大鼠S100A1蛋白(recS100A1)表现出与天然S100A1不可区分的物理和化学特性。接下来,蛋白质缺少recS100A1的羧基末端9个残基(Delta 85-93),或在Phe 88(F88A),Phe 89(F89A)或Trp 90(W90A),Phe 88和Phe 89上都含有丙氨酸取代( F88 / 89A)或全部三个芳香族残基(F88 / 89A-W90A)进行重组表达。像recS100A1,F88A,F89A和W90A蛋白以钙依赖的方式与苯基-琼脂糖相互作用。但是,Delta 85-93蛋白未与苯基-琼脂糖相互作用,表明recS100A1的苯基-琼脂糖结合区(PSBR)已被破坏。与recS100A1相比,F88 / 89A和F88 / 89A-W90A蛋白显示出与苯基-Sepharose钙依赖性的相互作用降低,表明羧基末端的芳香族残基Phe 88,Phe 89和Trp 90包含S100A1的PSBR。荧光研究表明,Delta 85-93蛋白与十二烷基CapZ肽TRTK的钙依赖性相互作用降低,而W90A以5.55μM的Kd结合TRTK。这些结果表明,钙依赖性靶蛋白的结合位点和PSBR难以区分。与钙依赖性靶TRTK相反,点和缺失突变体S100A1s对钙非依赖性靶蛋白醛缩酶A的激活与天然S100A1没有区别。这些结果表明,S100A1调节非钙依赖性靶蛋白醛缩酶A不需要羧基末端残基。总而言之,这些结果表明S100A1利用与钙非依赖性和钙依赖性靶蛋白相互作用的独特机制。 [参考:33]

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