首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >The liver fatty acid binding protein--comparison of cavity properties of intracellular lipid-binding proteins.
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The liver fatty acid binding protein--comparison of cavity properties of intracellular lipid-binding proteins.

机译:肝脂肪酸结合蛋白-细胞内脂质结合蛋白腔特性的比较。

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摘要

The crystal and solution structures of all of the intracellular lipid binding proteins (iLBPs) reveal a common beta-barrel framework with only small local perturbations. All existing evidence points to the binding cavity and a poorly delimited 'portal' region as defining the function of each family member. The importance of local structure within the cavity appears to be its influence on binding affinity and specificity for the lipid. The portal region appears to be involved in the regulation of ligand exchange. Within the iLBP family, liver fatty acid binding protein or LFABP, has the unique property of binding two fatty acids within its internalized binding cavity rather than the commonly observed stoichiometry of one. Furthermore, LFABP will bind hydrophobic molecules larger than the ligands which will associate with other iLBPs. The crystal structure of LFABP contains two bound oleate molecules and provides the explanation for its unusual stoichiometry. One of the bound fatty acids is completely internalized and has its carboxylate interacting with an arginine and two serines. The second oleate represents an entirely new binding mode with the carboxylate on the surface of LFABP. The two oleates also interact with each other. Because of this interaction and its inner location, it appears the first oleate must be present before the second more external molecule is bound.
机译:所有细胞内脂质结合蛋白(iLBPs)的晶体和溶液结构揭示了一个常见的β-桶形框架,只有很小的局部扰动。所有现有证据都指出,结合腔和界定不佳的“门户”区域界定了每个家庭成员的功能。腔内局部结构的重要性似乎是其对脂质的结合亲和力和特异性的影响。门户区域似乎参与配体交换的调节。在iLBP家族中,肝脏脂肪酸结合蛋白或LFABP具有在其内部结合腔内结合两种脂肪酸而不是通常观察到的一种化学计量的独特特性。此外,LFABP将结合比与其他iLBP缔合的配体更大的疏水分子。 LFABP的晶体结构包含两个结合的油酸酯分子,并为其不寻常的化学计量提供了解释。结合的脂肪酸之一被完全内在化,并且其羧酸盐与精氨酸和两个丝氨酸相互作用。第二种油酸酯代表了与LFABP表面上的羧酸酯的全新结合方式。两种油酸盐也彼此相互作用。由于这种相互作用及其内部位置,看来在第二个外部分子结合之前,必须存在第一个油酸酯。

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