Höfte H, Whiteley H R
Microbiol Rev. 1989 Jun;53(2):242-55. doi: 10.1128/mr.53.2.242-255.1989.
A classification for crystal protein genes of Bacillus thuringiensis is presented. Criteria used are the insecticidal spectra and the amino acid sequences of the encoded proteins. Fourteen genes are distinguished, encoding proteins active against either Lepidoptera (cryI), Lepidoptera and Diptera (cryII), Coleoptera (cryIII), or Diptera (cryIV). One gene, cytA, encodes a general cytolytic protein and shows no structural similarities with the other genes. Toxicity studies with single purified proteins demonstrated that every described crystal protein is characterized by a highly specific, and sometimes very restricted, insect host spectrum. Comparison of the deduced amino acid sequences reveals sequence elements which are conserved for Cry proteins. The expression of crystal protein genes is affected by a number of factors. Recently, two distinct sigma subunits regulating transcription during different stages of sporulation have been identified, as well as a protein regulating the expression of a crystal protein at a posttranslational level. Studies on the biochemical mechanisms of toxicity suggest that B. thuringiensis crystal proteins induce the formation of pores in membranes of susceptible cells. In vitro binding studies with radiolabeled toxins demonstrated a strong correlation between the specificity of B. thuringiensis toxins and the interaction with specific binding sites on the insect midgut epithelium. The expression of B. thuringiensis crystal proteins in plant-associated microorganisms and in transgenic plants has been reported. These approaches are potentially powerful strategies for the protection of agriculturally important crops against insect damage.
本文提出了苏云金芽孢杆菌晶体蛋白基因的一种分类方法。所采用的标准是杀虫谱和编码蛋白的氨基酸序列。共区分出14个基因,它们编码的蛋白分别对鳞翅目(cryI)、鳞翅目和双翅目(cryII)、鞘翅目(cryIII)或双翅目(cryIV)具有活性。有一个基因,即cytA,编码一种通用的细胞溶解蛋白,与其他基因没有结构相似性。对单一纯化蛋白的毒性研究表明,每种所述的晶体蛋白都具有高度特异性,有时甚至非常有限的昆虫宿主谱。推导的氨基酸序列比较揭示了Cry蛋白中保守的序列元件。晶体蛋白基因的表达受多种因素影响。最近,已鉴定出在芽孢形成不同阶段调节转录的两种不同的sigma亚基,以及一种在翻译后水平调节晶体蛋白表达的蛋白。对毒性生化机制的研究表明,苏云金芽孢杆菌晶体蛋白可诱导易感细胞膜上形成孔道。用放射性标记毒素进行的体外结合研究表明,苏云金芽孢杆菌毒素的特异性与在昆虫中肠上皮细胞上与特定结合位点的相互作用之间存在很强的相关性。已有报道苏云金芽孢杆菌晶体蛋白在与植物相关的微生物和转基因植物中的表达。这些方法是保护重要农作物免受虫害的潜在有力策略。