Yang H, Matsubayashi Y, Nakamura K, Sakagami Y
Laboratory of Bioactive Natural Product Chemistry, Graduate School of Bio-Agricultural Sciences, Nagoya University, Chikusa, Nagoya 464-8601, Japan.
Proc Natl Acad Sci U S A. 1999 Nov 9;96(23):13560-5. doi: 10.1073/pnas.96.23.13560.
Phytosulfokine-alpha [PSK-alpha, Tyr(SO(3)H)-Ile-Tyr(SO(3)H)-Thr-Gln], a sulfated mitogenic peptide found in plants, strongly promotes proliferation of plant cells in culture at very low concentrations. Oryza sativa PSK (OsPSK) cDNA encoding a PSK-alpha precursor has been isolated. The cDNA is 725 base pairs long, and the 89-aa product, preprophytosulfokine, has a 22-aa hydrophobic region that resembles a cleavable leader peptide at its NH(2) terminus. The PSK-alpha sequence occurs only once within the precursor, close to the COOH terminus. [Ser(4)]PSK-alpha was secreted by transgenic rice Oc cells harboring a mutated OsPSK cDNA, suggesting proteolytic processing from the larger precursor, a feature commonly found in animal systems. Whereas PSK-alpha in conditioned medium with sense transgenic Oc cells was 1.6 times as concentrated as in the control case, antisense transgenic Oc cells produced less than 60% of the control level. Preprophytosulfokine mRNA was detected at an elevated constitutive level in rice Oc culture cells on RNA blot analysis. Although PSK-alpha molecules have never been identified in any intact plant, reverse transcription-PCR analysis demonstrated that OsPSK is expressed in rice seedlings, indicating that PSK-alpha may be important for plant cell proliferation both in vitro and in vivo. DNA blot analysis demonstrated that OsPSK homologs may occur in dicot as well as monocot plants.
植物磺肽素-α[PSK-α,Tyr(SO₃H)-Ile-Tyr(SO₃H)-Thr-Gln]是一种在植物中发现的硫酸化促有丝分裂肽,在极低浓度下就能强烈促进培养的植物细胞增殖。编码PSK-α前体的水稻PSK(OsPSK)cDNA已被分离出来。该cDNA长725个碱基对,其89个氨基酸的产物前体植物磺肽素在其氨基末端有一个22个氨基酸的疏水区域,类似于可裂解的前导肽。PSK-α序列在该前体中仅出现一次,靠近羧基末端。[Ser(4)]PSK-α由携带突变OsPSK cDNA的转基因水稻Oc细胞分泌,这表明它是从较大的前体经蛋白水解加工而来的,这是动物系统中常见的一个特征。在含有正义转基因Oc细胞的条件培养基中,PSK-α的浓度是对照情况下的1.6倍,而反义转基因Oc细胞产生的PSK-α不到对照水平的60%。在RNA印迹分析中,前体植物磺肽素mRNA在水稻Oc培养细胞中以较高的组成型水平被检测到。虽然在任何完整植物中都从未鉴定出PSK-α分子,但逆转录-聚合酶链反应分析表明OsPSK在水稻幼苗中表达,这表明PSK-α可能在体外和体内对植物细胞增殖都很重要。DNA印迹分析表明,OsPSK同源物可能存在于双子叶植物和单子叶植物中。