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首页> 外文期刊>The Journal of biological chemistry >Interaction of Cytosolic Glutamine Synthetase of Soybean Root Nodules with the C-terminal Domain of the Symbiosome Membrane Nodulin 26 Aquaglyceroporin
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Interaction of Cytosolic Glutamine Synthetase of Soybean Root Nodules with the C-terminal Domain of the Symbiosome Membrane Nodulin 26 Aquaglyceroporin

机译:大豆根结节细胞溶胶谷氨酰胺合成酶与Symmosome膜Nodulin 26 Aquagyceroporin的C-末端结构域的相互作用

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Nodulin 26 (nod26) is a major intrinsic protein that constitutes the major protein component on the symbiosome membrane (SM) of N2-fixing soybean nodules. Functionally, nod26 forms a low energy transport pathway for water, osmolytes, and NH3 across the SM. Besides their transport functions, emerging evidence suggests that high concentrations of major intrinsic proteins on membranes provide interaction and docking targets for various cytosolic proteins. Here it is shown that the C-terminal domain peptide of nod26 interacts with a 40-kDa protein from soybean nodule extracts, which was identified as soybean cytosolic glutamine synthetase GS1β1 by mass spectrometry. Fluorescence spectroscopy assays show that recombinant soybean GS1β1 binds the nod26 C-terminal domain with a 1:1 stoichiometry (Kd = 266 nm). GS1β1 also binds to isolated SMs, and this binding can be blocked by preincubation with the C-terminal peptide of nod26. In vivo experiments using either a split ubiquitin yeast two-hybrid system or bimolecular fluorescence complementation show that the four cytosolic GS isoforms expressed in soybean nodules interact with full-length nod26. The binding of GS, the principal ammonia assimilatory enzyme, to the conserved C-terminal domain of nod26, a transporter of NH3, is proposed to promote efficient assimilation of fixed nitrogen, as well as prevent potential ammonia toxicity, by localizing the enzyme to the cytosolic side of the symbiosome membrane.
机译:Nodulin 26(NOD26)是主要内在蛋白质,其构成N2固定大豆结节的酶组膜(SM)上的主要蛋白质组分。在功能上,NOD26形成水,渗透物和SM的NH3的低能量传输途径。除了运输功能外,出现的证据表明,膜上的高浓度主要内在蛋白质为各种细胞溶质蛋白提供相互作用和对接靶标。这里表明,NOD26的C末端结构域肽与大豆结节提取物的40kDa蛋白质相互作用,通过质谱法鉴定为大豆细胞源谷氨酰胺合成酶GS1β1。荧光光谱分析表明,重组大豆GS1β1与1:1化学计量(Kd = 266nm)结合Nod26 C-末端域。 GS1β1还与分离的SMS结合,并且可以通过与NOD26的C末端肽预孵育来阻断这种结合。在使用分裂泛素酵母双杂交系统或双分子荧光互补的体内实验表明,在大豆结节中表达的四种细胞溶胶Gs同种型与全长NOD26相互作​​用。提出了NOD26的保守的C末端结构件Gs,NOD26的保守的C末端结构域的结合,以促进固定氮的有效同化,以及通过定位酶到酶来防止潜在的氨毒性。 Symbiosome膜的细胞溶质侧。

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