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Efficient Prenylation by a Plant Geranylgeranyltransferase-I Requires a Functional CaaL Box Motif and a Proximal Polybasic Domain

机译:植物香叶基香叶基转移酶-I的高效异戊二烯化需要功能性CaaL盒基序和近端的多元域。

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摘要

Geranylgeranyltransferase-I (GGT-I) is a heterodimeric enzyme that shares a common α-subunit with farnesyltransferase (FTase) and has a distinct β-subunit. GGT-I preferentially modifies proteins, which terminate in a CaaL box sequence motif. Cloning of Arabidopsis GGT-I β-subunit (AtGGT-IB) was achieved by a yeast (Saccharomyces cerevisiae) two-hybrid screen, using the tomato (Lycopersicon esculentum) FTase α-subunit (FTA) as bait. Sequence and structure analysis revealed that the core active site of GGT-I and FTase are very similar. AtGGT-IA/FTA and AtGGT-IB were co-expressed in baculovirus-infected insect cells to obtain recombinant protein that was used for biochemical and molecular analysis. The recombinant AtGGT-I prenylated efficiently CaaL box fusion proteins in which the a2 position was occupied by an aliphatic residue, whereas charged or polar residues at the same position greatly reduced the efficiency of prenylation. A polybasic domain proximal to the CaaL box motif induced a 5-fold increase in the maximal reaction rate, and increased the affinity of the enzyme to the protein substrate by an order of magnitude. GGT-I retained high activity in a temperature range between 24°C and 42°C, and showed increased activity rate at relatively basic pH values of 7.9 and 8.5. Reverse transcriptase-polymerase chain reaction, protein immuno-blots, and transient expression assays of green fluorescent protein fusion proteins show that GGT-IB is ubiquitously expressed in a number of tissues, and that expression levels and protein activity were not changed in mutant plants lacking FTase β-subunit.
机译:Geranylgeranyltransferase-I(GGT-I)是一种异二聚酶,与Farnesyltransferase(FTase)共享一个共同的α-亚基,并具有独特的β-亚基。 GGT-1优先修饰以CaaL框序列基序终止的蛋白质。通过酵母(Saccharomyces cerevisiae)两杂交筛选,以番茄(Lycopersicon esculentum)FTaseα-亚基(FTA)为诱饵,实现了拟南芥GGT-1β亚基(AtGGT-IB)的克隆。序列和结构分析表明,GGT-1和FTase的核心活性位点非常相似。在杆状病毒感染的昆虫细胞中共表达AtGGT-IA / FTA和AtGGT-IB,以获得用于生化和分子分析的重组蛋白。重组AtGGT-I使a2位置被脂族残基占据,而在相同位置的带电或极性残基则使异戊二烯的效率大大降低。靠近CaaL盒基序的多元结构域诱导最大反应速率提高了5倍,并使酶对蛋白质底物的亲和力提高了一个数量级。 GGT-1在24℃至42℃的温度范围内保持高活性,并在7.9和8.5的相对基本pH值下显示出增加的活性速率。逆转录酶-聚合酶链反应,蛋白免疫印迹和绿色荧光蛋白融合蛋白的瞬时表达测定表明,GGT-IB在许多组织中普遍表达,并且在缺乏突变的植物中表达水平和蛋白活性没有变化FTaseβ亚基。

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