Jonas-Straube E, Hutin C, Hoffman N E, Schünemann D
Institut für Biologie III der Rheinisch-Westfälische Technische Hochschule Aachen, Worringerweg 1, 52074 Aachen, Germany.
J Biol Chem. 2001 Jul 6;276(27):24654-60. doi: 10.1074/jbc.M100153200. Epub 2001 Apr 16.
The chloroplast signal recognition particle (cpSRP) consists of an evolutionarily conserved 54-kDa subunit (cpSRP54) and a dimer of a unique 43-kDa subunit (cpSRP43). cpSRP binds light-harvesting chlorophyll proteins (LHCPs) to form a cpSRP/LHCP transit complex, which targets LHCP to the thylakoid membrane. Previous studies showed that transit complex formation is mediated through the binding of the L18 domain of LHCP to cpSRP43. cpSRP43 is characterized by a four-ankyrin repeat domain at the N terminus and two chromodomains at the C terminus. In the present study we used the yeast two-hybrid system and in vitro binding assays to analyze the function of different domains of cpSRP43 in protein complex formation. We report here that the first ankyrin repeat binds to the 18-amino acid domain on LHCP that binds to cpSRP43, whereas the third and fourth ankyrin repeats are involved in the dimerization of cpSRP43. We show further that the interaction of cpSRP43 with cpSRP54 is mediated via binding of the methionine-rich domain of cpSRP54 to the C-terminally located chromodomains of cpSRP43. Both chromodomains contain essential elements for binding cpSRP54, indicating that the closely spaced chromodomains together create a single binding site for cpSRP54. In addition, our data demonstrate that the interaction of cpSRP54 with the chromodomains of cpSRP43 is enhanced indirectly by the dimerization motif of cpSRP43.
叶绿体信号识别颗粒(cpSRP)由一个进化上保守的54 kDa亚基(cpSRP54)和一个独特的43 kDa亚基(cpSRP43)的二聚体组成。cpSRP与捕光叶绿素蛋白(LHCPs)结合形成cpSRP/LHCP转运复合体,该复合体将LHCP靶向到类囊体膜。先前的研究表明,转运复合体的形成是通过LHCP的L18结构域与cpSRP43的结合介导的。cpSRP43的特征是在N端有一个四锚蛋白重复结构域,在C端有两个染色质结构域。在本研究中,我们使用酵母双杂交系统和体外结合试验来分析cpSRP43不同结构域在蛋白质复合体形成中的功能。我们在此报告,第一个锚蛋白重复序列与LHCP上与cpSRP43结合的18个氨基酸结构域结合,而第三个和第四个锚蛋白重复序列参与cpSRP43的二聚化。我们进一步表明,cpSRP43与cpSRP54的相互作用是通过cpSRP54富含甲硫氨酸的结构域与cpSRP43 C端的染色质结构域结合介导的。两个染色质结构域都包含与cpSRP54结合的必需元件,表明紧密间隔的染色质结构域共同为cpSRP54创造了一个单一的结合位点。此外,我们的数据表明,cpSRP43的二聚化基序间接增强了cpSRP54与cpSRP43染色质结构域的相互作用。