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首页> 外文期刊>Biochemistry >'Dilysine Trigger' in Transferrins Probed by Mutagenesis of Lactoferrin: Crystal Structures of the R210G, R210E, and R210L Mutants of Human Lactoferrin
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'Dilysine Trigger' in Transferrins Probed by Mutagenesis of Lactoferrin: Crystal Structures of the R210G, R210E, and R210L Mutants of Human Lactoferrin

机译:乳铁蛋白诱变探测的转铁蛋白中的“二赖氨酸触发器”:人乳铁蛋白R210G,R210E和R210L突变体的晶体结构

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The mammmalian iron-binding proteins lactoferrin (Lf) and transferrin (Tf) bind iron very tightly but reversible. Despite homologous structures and essentially identical iron binding sites. Tf begins to release iron at pH 6.0, whereas Lf retains iron to pH approx 3.5. This difference in iron retention gives the two proteins different biological roles. Two lysine residues, Lys 206 and Lys 296, which form a hydrogen-bonded dilysine pair in human Tf, have been shown to strongly influence iron release from the N-lobe. The equivalent residues in human Lf are Arg 210 and Lys 301, and we have here mutated Arg 210 in the N-lobe half-molecule of human lactoferrin, Lf_N, to probe its role in iron release. The Lf_N mutants R210G, R210E, and R210L were expressed, purified, and crystallized, and their crystal structures were determined and refined at resolutions of 1.95 A (R210G), 2.2 A (R210L). The overall structures are very similar to that of wild-type Lf_N, but with small differences in domain orientations. In each of the mutants, however, Lys 301 (equivalent to Lys 296 in Tf) changes its conformation to fill the space occupied by Arg 210 Neta2 in wild-type Lf_N, interacting with the two tyrosine ligands Tyr 92 and Tyr 192. By comparison with other Lf and Tf structures, we conclude that Lys 301 (or Lys 296 in Tf) only occupies this site when residue 210 (206 in Tf) is nopositive (neutral as in R210G and R210L or negative as in R210E). Thus, Lys 206 in the Tf dilysine pair is identified as having a depressed pK_a. Three specific sites are variably occupied by polar groups in the Lf mutants and other Lf and Tf proteins, and when coupled with iron-release data, these give new insights into the factors that most influence iron retention at low pH.
机译:哺乳动物的铁结合蛋白乳铁蛋白(Lf)和转铁蛋白(Tf)紧密结合铁,但可逆。尽管具有同源结构和基本相同的铁结合位点。 Tf在pH 6.0时开始释放铁,而Lf在pH约3.5时保留铁。铁保留的这种差异使两种蛋白质具有不同的生物学作用。已显示在人Tf中形成氢键联的赖氨酸对的两个赖氨酸残基Lys 206和Lys 296会强烈影响铁从N瓣的释放。人Lf中的等效残基是Arg 210和Lys 301,在这里我们已在人乳铁蛋白的N瓣半分子Lf_N中突变了Arg 210,以探测其在铁释放中的作用。表达,纯化和结晶Lf_N突变体R210G,R210E和R210L,并以1.95 A(R210G),2.2 A(R210L)的分辨率测定和纯化其晶体结构。总体结构与野生型Lf_N非常相似,但结构域方向差异很小。然而,在每个突变体中,Lys 301(相当于Tf中的Lys 296)会改变其构象,以填补Arg 210 Neta2在野生型Lf_N中占据的空间,并与两个酪氨酸配体Tyr 92和Tyr 192相互作用。与其他Lf和Tf结构一起,我们得出的结论是,当残基210(Tf中的206)为正(在R210G和R210L中为中性或在R210E中为负)时,Lys 301(或Tf中的Lys 296)仅占据该位点。因此,Tf二赖氨酸对中的Lys 206被鉴定为具有降低的pK_a。 Lf突变体以及其他Lf和Tf蛋白中的三个特定位点被极性基团不同地占据,当与铁释放数据结合使用时,这些位点可提供对最影响低pH下铁保持力的因素的新见解。

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