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首页> 外文期刊>Plant Science >PURIFICATION, CHARACTERIZATION AND SEQUENCING OF A FAMILY OF PETUNIA PETAL LIPID TRANSFER PROTEINS PHOSPHORYLATED BY PLANT CALCIUM-DEPENDENT PROTEIN KINASE
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PURIFICATION, CHARACTERIZATION AND SEQUENCING OF A FAMILY OF PETUNIA PETAL LIPID TRANSFER PROTEINS PHOSPHORYLATED BY PLANT CALCIUM-DEPENDENT PROTEIN KINASE

机译:植物钙依赖蛋白激酶磷酸化的矮牵牛脂类转移蛋白家族的纯化,鉴定和测序

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A number of small basic proteins (Pet1, Pet2, Pet3, Pet4 and Pet5) were purified to homogeneity from petals of petunia (Petunia hybrida var, Old Glory Blue) by a procedure involving batchwise cation exchange chromatography on carboxymethyl-cellulose (CM52) and cation exchange HPLC on a sulphopropyl-based SP5PW column. Pet1 to Pet5 were identified from extensive N-terminal sequencing as having a high degree of sequence homology to each other and to other plant phospholipid transfer proteins, Pet1, Pet2, Pet4 and Pet5 are phosphorylated by wheat embryo Ca2+-dependent protein kinase (CDPK) whereas Pet3 is a very poor substrate for this enzyme. After tryptic digestion of [P-32]phosphoPet1 and [P-32]phosphoPet2 phosphorylated by CDPK and reversed phase HPLC-based purification of [P-32]phosphopeptides, Edman sequencing of the purified [P-32]phosphopeptides revealed major Ser phosphorylation sites of S-40 and S-70 in the sequences SQAS(40)TTP and GLPS(70)TCG in Pet1 and Pet2, respectively, These phosphorylation site sequences differ from the Basic-X-X-Ser(Thr) motif found with many synthetic peptide substrates of plant CDPK but are similar to each other and to phosphorylation sites oil some other CDPK substrates involving A/G, S/T and P residues, The complete primary structure of Pet2 (90 residues) has been determined by Edman sequencing and electrospray ionization mass spectrometry of the native Pet2 and of proteolytically-generated fragments. While Pet2(19-90) and Pet2(32-90) retain activity as CDPK substrates, all smaller fragments tested were inactive. A CDPK is present in Petunia petals, After in vivo labelling of Petunia petals with [P-32]phosphate the major labelled protein resolved by SDS-PAGE has a mass of 9.4 +/- 0.6 kDa, similar to the M(r) of Pet1, Pet2 and Pet3. [References: 44]
机译:通过涉及在羧甲基纤维素(CM52)上分批进行阳离子交换层析的方法,从矮牵牛(Petunia hybrida var,Old Glory Blue)的花瓣中纯化了许多小的碱性蛋白(Pet1,Pet2,Pet3,Pet4和Pet5)。在基于磺丙基的SP5PW柱上进行阳离子交换HPLC。从广泛的N端测序中鉴定出Pet1至Pet5彼此之间以及与其他植物磷脂转移蛋白具有高度的序列同源性,Pet1,Pet2,Pet4和Pet5被小麦胚Ca2 +依赖性蛋白激酶(CDPK)磷酸化而Pet3是该酶的极差底物。通过CDPK磷酸化[P-32] phosphoPet1和[P-32] phosphoPet2的胰蛋白酶消化,并基于反相HPLC纯化[P-32]磷酸肽后,纯化的[P-32]磷酸肽的Edman测序显示主要的Ser磷酸化分别在Pet1和Pet2中的SQAS(40)TTP和GLPS(70)TCG序列中的S-40和S-70位点,这些磷酸化位点序列不同于许多合成的Basic-XX-Ser(Thr)基序植物CDPK的多肽底物但彼此相似且在磷酸化位点上也涉及一些涉及A / G,S / T和P残基的CDPK底物。Pet2的完整一级结构(90个残基)已通过Edman测序和电喷雾测定Pet2和蛋白水解产生的片段的电离质谱。虽然Pet2(19-90)和Pet2(32-90)保留了CDPK底物的活性,但所有较小的测试片段都没有活性。 CDPK存在于矮牵牛花瓣中。用[P-32]磷酸酯酶体内标记矮牵牛花瓣后,通过SDS-PAGE解析的主要标记蛋白的质量为9.4 +/- 0.6 kDa,与M(r)相似。 Pet1,Pet2和Pet3。 [参考:44]

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