Chuang Jacinta L, Wynn R Max, Chuang David T
Department of Biochemistry, University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA.
J Biol Chem. 2002 Oct 4;277(40):36905-8. doi: 10.1074/jbc.C200430200. Epub 2002 Aug 19.
The branched-chain alpha-keto acid dehydrogenase (BCKD) kinase (abbreviated as BCK) down-regulates activity of the mammalian mitochondrial BCKD complex by reversible phosphorylation of the decarboxylase (E1b) component of the complex. The binding of BCK to the holotransacylase (E2b) core of the BCKD complex results in the stimulation of BCK activity. Here we show that the lipoylated lipoic acid-bearing domain (lip-LBD) (residues 1-84) of E2b alone does not interact with BCK. However, lip-LBD constructs containing various lengths of the C-terminal hinge region of LBD are able to bind to BCK as measured by a newly developed solubility-based binding assay. Isothermal titration calorimetry measurements produced a dissociation constant of 8.06 x 10(-6) m and binding enthalpy of -3.68 kcal/mol for the interaction of BCK with a construct containing lip-LBD and the Glu-Glu-Asp-Xaa-Xaa-Glu sequence of the C-terminal hinge region of LBD. These thermodynamic parameters are similar to those obtained for binding of BCK to a lipoylated di-domain construct, which harbors LBD, the entire hinge region, and the downstream subunit-binding domain of E2b. Our data establish that the C-terminal hinge region of LBD containing the above negatively charged residues is essential for the interaction between the lip-LBD construct and BCK.
支链α-酮酸脱氢酶(BCKD)激酶(简称为BCK)通过对该复合体的脱羧酶(E1b)组分进行可逆磷酸化作用,下调哺乳动物线粒体BCKD复合体的活性。BCK与BCKD复合体的全转酰酶(E2b)核心结合会导致BCK活性增强。在此我们表明,单独的E2b的硫辛酰化含硫辛酸结构域(lip-LBD)(第1至84位氨基酸残基)不与BCK相互作用。然而,通过新开发的基于溶解度的结合试验测定,含有不同长度LBD C末端铰链区的lip-LBD构建体能够与BCK结合。等温滴定量热法测量得出,对于BCK与含有lip-LBD以及LBD C末端铰链区的Glu-Glu-Asp-Xaa-Xaa-Glu序列的构建体之间的相互作用,解离常数为8.06×10⁻⁶ m,结合焓为 -3.68 kcal/mol。这些热力学参数与BCK与硫辛酰化双结构域构建体结合所获得的参数相似,该构建体包含LBD、整个铰链区以及E2b的下游亚基结合结构域。我们的数据证实,含有上述带负电荷残基的LBD C末端铰链区对于lip-LBD构建体与BCK之间的相互作用至关重要。