Iwabuchi Kana, Miyamoto Kazuhisa, Jouraku Akiya, Takasu Yoko, Iizuka Tetsuya, Adegawa Satomi, Li Xiaoyi, Sato Ryoichi, Watanabe Kenji
Graduate School of Bio-Application and Systems Engineering, Tokyo University of Agriculture and Technology, Naka 2-24-16, Koganei, Tokyo, 184-8588, Japan.
Institute of Agrobiological Sciences, NARO, 1-2 Ohwashi, Tsukuba, Ibaraki, 305-8634, Japan.
Insect Biochem Mol Biol. 2023 Dec;163:104030. doi: 10.1016/j.ibmb.2023.104030. Epub 2023 Nov 10.
ATP binding cassette (ABC) transporters are a diverse family of transmembrane proteins. Specific subfamily members expressed in the lepidopteran midgut can act as susceptibility determinants for several insecticidal Bt Cry proteins. However, the susceptibility determinants to many Cry toxins still remain unclear. Therefore, we knocked out a series of ABC transporters that are highly expressed in the midgut of Bombyx mori larvae by transcription activator-like effector nuclease (TALEN)-mediated gene editing, and the lineages that became resistant to Cry toxins were searched by toxin overlay bioassay. As a result, the B. mori ABC transporter subfamily B1 (BmABCB1) knockout lineage showed 19.17-fold resistance to Cry1Ba, 876.2-fold resistance to Cry1Ia, and 29.1-fold resistance to Cry9Da, suggesting that BmABCB1 is the determinant of susceptibility to these toxins. BmABCC2 and BmABCC3 have been shown to be susceptibility determinants based on their function as receptors. Therefore, we next heterologously expressed these ABC transporters in HEK293T cells and performed a cell swelling assay to examine whether these molecules could exert receptor functions. As a result, BmABCB1-expressing cells showed swelling response to Cry1Ia and Cry9Da, and cells expressing PxABCB1, which is the Plutella xylostella ortholog of BmABCB1, showed swelling for Cry1Ba, suggesting that ABCB1 is a susceptibility determinant by functioning as a receptor to these toxins. Furthermore, in order to clarify how high binding affinity is based on receptor function, we performed surface plasmon resonance analysis and found that each KD of Cry1Ba, Cry1Ia, and Cry9Da to BmABCB1 were 7.69 × 10 M, 2.19 × 10 M, and 4.17 × 10 M respectively.
ATP结合盒(ABC)转运蛋白是一类多样的跨膜蛋白家族。在鳞翅目昆虫中肠表达的特定亚家族成员可作为几种杀虫Bt Cry蛋白的敏感性决定因素。然而,许多Cry毒素的敏感性决定因素仍不清楚。因此,我们通过转录激活样效应核酸酶(TALEN)介导的基因编辑敲除了一系列在家蚕幼虫中肠高表达的ABC转运蛋白,并通过毒素覆盖生物测定法寻找对Cry毒素产生抗性的品系。结果,家蚕ABC转运蛋白亚家族B1(BmABCB1)敲除品系对Cry1Ba表现出19.17倍的抗性,对Cry1Ia表现出876.2倍的抗性,对Cry9Da表现出29.1倍的抗性,表明BmABCB1是对这些毒素敏感性的决定因素。基于其作为受体的功能,BmABCC2和BmABCC3已被证明是敏感性决定因素。因此,我们接下来在HEK293T细胞中异源表达这些ABC转运蛋白,并进行细胞肿胀试验,以检查这些分子是否能发挥受体功能。结果,表达BmABCB1的细胞对Cry1Ia和Cry9Da表现出肿胀反应,而表达PxABCB1(BmABCB1在小菜蛾中的直系同源物)的细胞对Cry1Ba表现出肿胀,这表明ABCB1通过作为这些毒素的受体发挥作用,是敏感性决定因素。此外,为了阐明基于受体功能的高结合亲和力是如何形成的,我们进行了表面等离子体共振分析,发现Cry1Ba、Cry1Ia和Cry9Da与BmABCB1的解离常数(KD)分别为7.69×10⁻⁸M、2.19×10⁻⁸M和4.17×10⁻⁸M。