Chen-Hwang Mo-Chou, Chen Huey-Ru, Elzinga Marshall, Hwang Yu-Wen
Molecular Biology Department, New York State Institute for Basic Research in Developmental Disabilities, Staten Island, New York 10314, USA.
J Biol Chem. 2002 May 17;277(20):17597-604. doi: 10.1074/jbc.M111101200. Epub 2002 Mar 4.
The minibrain kinase (Mnbk)/dual specificity Yak 1-related kinase 1A (Dyrk1A) gene is implicated in the mental retardation associated with Down's syndrome. It encodes a proline-directed serine/threonine kinase whose function has yet to be defined. We have used a solid-phase Mnbk/Dyrk1A kinase assay to aid in the search for the cellular Mnbk/Dyrk1A substrates. The assay revealed that rat brain contains two cytosolic proteins, one with a molecular mass of 100 kDa and one with a molecular mass of 140 kDa, that were prominently phosphorylated by Mnbk/Dyrk1A. The 100-kDa protein was purified and identified as dynamin 1. The conclusion was further supported by evidence that a recombinant glutathione S-transferase fusion protein containing dynamin isoform 1aa was phosphorylated by Mnbk/Dyrk1A. In addition to isoform 1aa, Mnbk/Dyrk1A also phosphorylated isoforms 1ab and 2aa but not human MxA protein when analyzed by the solid-phase kinase assay. Upon Mnbk/Dyrk1A phosphorylation, the interaction of dynamin 1 with the Src homology 3 domain of amphiphysin 1 was reduced. However, when Mnbk/Dyrk1A phosphorylation was allowed to proceed more extensively, the phosphorylation enhanced rather than reduced the binding of dynamin 1 to amphiphysin 1. The result suggests that Mnbk/Dyrk1A can play a dual role in regulating the interaction of dynamin 1 with amphiphysin 1. Mnbk/Dyrk1A phosphorylation also reduced the interaction of dynamin with endophilin 1, whereas the same phosphorylation enhanced the binding of dynamin 1 to Grb2. Nevertheless, the dual function of Mnbk/Dyrk1A phosphorylation was not observed for the interaction of dynamin 1 with endophilin 1 or Grb2. The interactions of dynamin with amphiphysin and endophilin are essential for the formation of endocytic complexes; our results suggest that Mnbk/Dyrk1A may function as a regulator controlling the assembly of endocytic apparatus.
小脑激酶(Mnbk)/双特异性Yak 1相关激酶1A(Dyrk1A)基因与唐氏综合征相关的智力发育迟缓有关。它编码一种脯氨酸定向的丝氨酸/苏氨酸激酶,其功能尚未明确。我们使用了一种固相Mnbk/Dyrk1A激酶测定法来帮助寻找细胞中的Mnbk/Dyrk1A底物。该测定法显示,大鼠脑中含有两种胞质蛋白,一种分子量为100 kDa,另一种分子量为140 kDa,它们被Mnbk/Dyrk1A显著磷酸化。100 kDa的蛋白被纯化并鉴定为发动蛋白1。含有发动蛋白同工型1aa的重组谷胱甘肽S-转移酶融合蛋白被Mnbk/Dyrk1A磷酸化这一证据进一步支持了该结论。通过固相激酶测定法分析,除了同工型1aa外,Mnbk/Dyrk1A还使同工型1ab和2aa磷酸化,但不使人MxA蛋白磷酸化。在Mnbk/Dyrk1A磷酸化后,发动蛋白1与发动蛋白1的Src同源3结构域的相互作用降低。然而,当允许Mnbk/Dyrk1A磷酸化更广泛地进行时,磷酸化增强而不是降低了发动蛋白1与发动蛋白1的结合。结果表明,Mnbk/Dyrk1A在调节发动蛋白1与发动蛋白1的相互作用中可以发挥双重作用。Mnbk/Dyrk1A磷酸化也降低了发动蛋白与内吞蛋白1的相互作用,而相同的磷酸化增强了发动蛋白1与Grb2的结合。然而,对于发动蛋白1与内吞蛋白1或Grb2的相互作用,未观察到Mnbk/Dyrk1A磷酸化的双重功能。发动蛋白与发动蛋白1和内吞蛋白的相互作用对于内吞复合物的形成至关重要;我们的结果表明,Mnbk/Dyrk1A可能作为一种调节因子控制内吞装置的组装。