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多头绒泡菌生命周期中聚(苹果酸)相关基因的阶段特异性表达。球形蛋白3b和聚苹果酸酶。

Stage specific expression of poly(malic acid)-affiliated genes in the life cycle of Physarum polycephalum. Spherulin 3b and polymalatase.

作者信息

Pinchai Nadthanan, Lee Bong-Seop, Holler Eggehard

机构信息

Institut für Biophysik und Physikalische Biochemie der Universität Regensburg, Germany.

出版信息

FEBS J. 2006 Mar;273(5):1046-55. doi: 10.1111/j.1742-4658.2006.05131.x.

Abstract

Polymalic acid is receiving interest as a unique biopolymer of the plasmodia of mycetozoa and recently as a biogenic matrix for the synthesis of devices for drug delivery. The acellular slime mold Physarum polycephalum is characterized by two distinctive growth phases: uninucleated amoebae and multinucleated plasmodia. In adverse conditions, plasmodia reversibly transform into spherules. Only plasmodia synthesize poly(malic acid) (PMLA) and PMLA-hydrolase (polymalatase). We have performed suppression subtractive hybridization (SSH) of cDNA from amoebae and plasmodia to identify plasmodium-specific genes involved in PMLA metabolism. We found cDNA encoding a plasmodium-specific, spherulin 3a-like polypeptide, NKA48 (spherulin 3b), but no evidence for a PMLA-synthetase encoding transcript. Inhibitory RNA (RNAi)-induced knockdown of NKA48-cDNA generated a severe reduction in the level of PMLA suggesting that spherulin 3b functioned in regulating the level of PMLA. Unexpectedly, cDNA of polymalatase was not SSH-selected, suggesting its presence also in amoebae. Quantitative PCR then revealed low levels of mRNA in amoebae, high levels in plasmodia, and also low levels in spherules, in agreement with the expression under transcriptional regulation in these cells.

摘要

聚苹果酸作为一种黏菌原生质体独特的生物聚合物,近来作为药物递送装置合成的生物源基质受到关注。多核变形虫 Physarum polycephalum 的特点是有两个不同的生长阶段:单核变形虫和多核原生质体。在不利条件下,原生质体可逆地转变为小球体。只有原生质体能够合成聚(苹果酸)(PMLA)和 PMLA 水解酶(聚苹果酸酶)。我们对变形虫和原生质体的 cDNA 进行了抑制性消减杂交(SSH),以鉴定参与 PMLA 代谢的原生质体特异性基因。我们发现了编码一种原生质体特异性、类球型蛋白 3a 多肽 NKA48(球型蛋白 3b)的 cDNA,但没有证据表明存在编码 PMLA 合成酶的转录本。抑制性 RNA(RNAi)诱导的 NKA48-cDNA 敲低导致 PMLA 水平严重降低,这表明球型蛋白 3b 在调节 PMLA 水平中发挥作用。出乎意料的是,聚苹果酸酶的 cDNA 未通过 SSH 筛选出来,这表明它在变形虫中也存在。定量 PCR 随后揭示,变形虫中 mRNA 水平较低,原生质体中水平较高,小球体中水平也较低,这与这些细胞中受转录调控的表达情况一致。

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