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SM-005-P Minute™ 植物膜蛋白提取试剂盒

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  • SM-005-P
  • 2026年01月04日
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    MinuteTM 植物膜蛋白提取试剂盒

     

    目录号:SM-005-P

      描述   植物膜蛋白占植物细胞总蛋白的很小一部分,但是在植物生理学中起着非常重要的作用。传统的植物膜蛋白分离纯化方法是蔗糖密度梯度离心法和双液相法。这些方法虽然比较有效,但是需要超高速离心和大量的起始原材料,操作过程十分繁琐和费时。本试剂盒解决了植物膜蛋白提取中的难点。植物组织首先通过缓冲液 A 中致敏,匀浆,然后通过离心管柱,在此过程中匀浆的组织通过柱子特有的 Z 字形通路后细胞膜被切割成大小相等的碎片,后续无需超高速离心,通过差速离心和密度离心可将天然的质膜蛋白从未破裂的细胞,细胞核,细胞质和细胞器的混合物中分离出来。在每次实验中仅需使用相同量的起始材料,离心力和离心时间,即可高度富集膜蛋白,并保证一致性良好。整个操作过程大约 1 小时可以完成。

      应用  

    试剂盒用于快速从植物组织中分离天然膜蛋白,可应用于 SDS-PAGE,immunoblottings,ELISA,IP,膜蛋白质结构分析,2-D,酶活性测定及其他应用。

        Protocol

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    参考文献  

     

    1. Shen, Q., Bourdais, G., Pan, H., Robatzek, S., & Tang, D. (2017). Arabidopsis glycosylphosphatidylinositol-anchored protein LLG1 associates with and modulates FLS2 to regulate innate immunity. Proceedings of the National Academy of Sciences, 201614468.
    产品细节图片1
    2. Zhiyuan Lv, Yan Huang , Bi Ma1 ,Zhonghuai Xiang , Ningjia He(2018).1LysM1 in MmLYK2 is a motif required for the interaction of MmLYP1 and MmLYK2 in the chitin signaling.Plant Cell Reports.doi.org/10.1007/s00299-018-2295-4.
    3. Jimi C Miller,etal (2018). Heterotrimeric G-proteins in unfolded protein response mediate plant growth-defense tradeoffs upstream of steroid and immune signaling.CSH PERSPECT BIOL.doi.org/10.1101/438135.
    4. Wang Q etal (2018).Resistance protein Pit interacts with the GEF OsSPK1 to activate OsRac1 and trigger rice immunity.Proc Natl Acad Sci U S A.2018 Nov 16. pii: 201813058. doi: 10.1073/pnas.1813058115.
    5. Si Ma etal (2019).Phloem loading in cucumber: combined symplastic and apoplastic strategies.The Plant Journal.DOI: 10.1111/tpj.14224.
    6. Shuai Zhang et al(2019).In rose, transcription factor PTM balances growth and drought survival via PIP2;1 aquaporin.Natureplants.Doi.org/10.1038/s41477-019-0376-1.
    7. Cheng Liu, Dayong Cui, Jingbo Zhao, Na Liu, Bo Wang, Jing Liu, Enjun Xu, Zhubing Hu, et al(2019).Two Arabidopsis Receptor-Like Cytoplasmic Kinases SZE1 and SZE2 Associate with the ZAR1-ZED1 Complex and Are Required for Effector-Triggered Immunity.Molecular Plant.DOI: 10.1016/j.molp.2019.03.012
    8. Jizong Wang*, Meijuan Hu*, Jia Wang*, Jinfeng Qi, Zhifu Han, Guoxun Wang, Yijun Qi, Hong-Wei Wang†, Jian-Min Zhou†, Jijie Chai Reconstitution and structure of a plant NLR resistosome conferring immunity.Science .DOI: 10.1126/science.aav5870.
    9. Zhang, X., Zhang, H., Lou, X., & Tang, M. (2019). Mycorrhizal and non-mycorrhizal Medicago truncatula roots exhibit differentially regulated NADPH oxidase and antioxidant response under Pb stress.Environmental and Experimental Botany.doi.org/10.1016/j.envexpbot.2019.04.015

    10. Li, X., Li, N., & Xu, F. (2019). Increased autophagy of rice can increase yield and nitrogen use efficiency (NUE).Frontiers in Plant Science, 10, 584.doi: 10.3389/fpls.2019.00584
    11. Yuan, N., Balasubramanian, V. K., Chopra, R., & Mendu, V. (2019). The photoperiodic flowering time regulator FKF1 negatively regulates cellulose biosynthesis.Plant Physiology, pp-00013.DOI:10.1104/pp.19.00013
    12.Xue Zou, Mengyuan Liu, Weihua Wu, Yang Wang. (2019).Phosphorylation at Ser28 stabilizes the Arabidopsis nitrate transporter NRT2. 1 in response to nitrate limitation.Journal of integrative plant biology.doi: 10.1111/jipb.12858.
    13. Chai, H., Guo, J., Zhong, Y., Hsu, C. C., Zou, C., Wang, P., ... & Shi, H. The plasma‐membrane polyamine transporter PUT3 is regulated by the Na+/H+ antiporter SOS1 and protein kinase SOS2.New Phytologist.
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    20.Su B., Zhang X., Li L., Abbas S., Yu M., Cui Y., Baluska F., Hwang I., Shan X., and Lin J. (2021). Dynamic spatial reorganization of BSK1 complexes in the plasma membrane underpins signal-specific activation for growth and immunity.Mol. Plant.14, 1–16.

    21.Yuan, M., Jiang, Z., Bi, G. et al. Pattern-recognition receptors are required for NLR-mediated plant immunity.Nature(2021). 

    22.Ngou, B.P.M., Ahn, HK., Ding, P. et al. Mutual potentiation of plant immunity by cell-surface and intracellular receptors.Nature(2021). 

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    24.Zhen, X., Xu, F., Zhang, W., Li, N., & Li, X. (2019). Overexpression of rice gene OsATG8b confers tolerance to nitrogen starvation and increases yield and nitrogen use efficiency (NUE) in Arabidopsis.PloS one, 14(9), e0223011.

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    27.Yu, Q., Liu, Y. L., Sun, G. Z., Liu, Y. X., Chen, J., Zhou, Y. B., ... & Lan, J. H. (2021). Genome-Wide Analysis of the Soybean Calmodulin-Binding Protein 60 Family and Identification of GmCBP60A-1 Responses to Drought and Salt Stresses.International Journal of Molecular Sciences, 22(24), 13501.

    28.Qun Wang, Mingmin Wang, Jian Chen, Weiwei Qi, Jinsheng Lai, Zeyang Ma, Rentao Song,ENB1encodes a cellulose synthase 5 that directs synthesis of cell wall ingrowths in maize basal endosperm transfer cells,The Plant Cell,2021;, koab312,

    29.Miao, G., Han, J., Liu, C. X., Liu, J., Wang, C. R., & Wang, S. C. (2022). PDR6-mediated camalexin efflux and disease resistance are regulated through direct phosphorylation by the kinases OXI1 and AGC2-2. bioRxiv.

    30.Vassiliki A Michalopoulou, Glykeria Mermigka, Konstantinos Kotsaridis, Andriani Mentzelopoulou, Patrick H N Celie, Panagiotis N Moschou, Jonathan D G Jones, Panagiotis F Sarris, The host exocyst complex is targeted by a conserved bacterial type-III effector that promotes virulence, The Plant Cell, 2022;, koac162, 

    31.Jin Gao; Gai Huang; Xin Chen; Yu‐Xian Zhu.(2022).PROTEIN S -ACYL TRANSFERASE 13/16 (PAT13/PAT16) modulate disease resistance by S -acylation of the NB-LRR protein R5L1 in Arabidopsis.Journal of Integrative Plant Biology.

    32.Zhang, Y., Dong, G., Wu, L., Wang, X., Chen, F., Xiong, E., ... & Yu, Y. (2022). Formin protein DRT1 affects gross morphology and chloroplast relocation in rice. Plant Physiology.

    33.Rehman, H. M., Chen, S., Zhang, S., Khalid, M., Uzair, M., Wilmarth, P. A., ... & Lam, H. M. (2022). Membrane Proteomic Profiling of Soybean Leaf and Root Tissues Uncovers Salt-Stress-Responsive Membrane Proteins. International Journal of Molecular Sciences, 23(21), 13270.

    34.Wang, Y., Teng, Z., Li, H., Wang, W., Xu, F., Sun, K., ... & Tang, J. (2022). An activated form of NB-ARC protein RLS1 functions with cysteine-rich receptor-like protein RMC to trigger cell death in rice. Plant Communications, 100459.

    35.Serrano, N., Pejchar, P., Hubálek, M., & Potocký, M. (2022). Comprehensive analysis of glycerolipid dynamics during tobacco pollen germination and pollen tube growth. Frontiers in Plant Science, 4336.

    36.Grones, P., De Meyer, A., Pleskot, R., Mylle, E., Kraus, M., Vandorpe, M., ... & Van Damme, D. (2022). The endocytic TPLATE complex internalizes ubiquitinated plasma membrane cargo. Nature Plants, 1-17.
    18.Zhen, X., Zheng, N., Yu, J., Bi, C., & Xu, F. (2021). Autophagy mediates grain yield and nitrogen stress resistance by modulating nitrogen remobilization in rice.PloS one,16(1), e0244996.

    19.Jacob, P. M., Kim, N. H., Wu, F., El Kasmi, F. M., Walton, W. G., Furzer, O. J., ... & Dangl, J. L. (2021). The plant immune receptors NRG1. 1 and ADR1 are calcium influx channels. bioRxiv.

    20.Su B., Zhang X., Li L., Abbas S., Yu M., Cui Y., Baluska F., Hwang I., Shan X., and Lin J. (2021). Dynamic spatial reorganization of BSK1 complexes in the plasma membrane underpins signal-specific activation for growth and immunity.Mol. Plant.14, 1–16.

    21.Yuan, M., Jiang, Z., Bi, G. et al. Pattern-recognition receptors are required for NLR-mediated plant immunity.Nature(2021). doi.org/10.1038/s41586-021-03316-6

    22.Ngou, B.P.M., Ahn, HK., Ding, P. et al. Mutual potentiation of plant immunity by cell-surface and intracellular receptors.Nature(2021). doi.org/10.1038/s41586-021-03315-7

    23.Krausko, M., Labajová, M., Peterková, D., & Jásik, J. (2021). Specific expression of AtIRT1 in phloem companion cells suggests its role in iron translocation in aboveground plant organs.Plant Signaling & Behavior, 1925020.

    24.Zhen, X., Xu, F., Zhang, W., Li, N., & Li, X. (2019). Overexpression of rice gene OsATG8b confers tolerance to nitrogen starvation and increases yield and nitrogen use efficiency (NUE) in Arabidopsis.PloS one, 14(9), e0223011.

    25.Yue Zhu, Wenmin Qiu, Yuhong Li, Jinjuan Tan, Xiaojiao Han, Longhua Wu, Yugen Jiang, Zhiping Deng, Chao Wu, Renying Zhuo,Quantitative proteome analysis reveals changes of membrane transport proteins in Sedum plumbizincicola under cadmium stress,Chemosphere

    26.Yang, M., Ismayil, A., Jiang, Z., Wang, Y., Zheng, X., Yan, L., ... & Liu, Y. (2021). A viral protein disrupts vacuolar acidification to facilitate virus infection in plants.The EMBO Journal, e108713.

    27.Yu, Q., Liu, Y. L., Sun, G. Z., Liu, Y. X., Chen, J., Zhou, Y. B., ... & Lan, J. H. (2021). Genome-Wide Analysis of the Soybean Calmodulin-Binding Protein 60 Family and Identification of GmCBP60A-1 Responses to Drought and Salt Stresses.International Journal of Molecular Sciences, 22(24), 13501.

    28.Qun Wang, Mingmin Wang, Jian Chen, Weiwei Qi, Jinsheng Lai, Zeyang Ma, Rentao Song,ENB1encodes a cellulose synthase 5 that directs synthesis of cell wall ingrowths in maize basal endosperm transfer cells,The Plant Cell,2021;, koab312,doi.org/10.1093/plcell/koab312

    29.Miao, G., Han, J., Liu, C. X., Liu, J., Wang, C. R., & Wang, S. C. (2022). PDR6-mediated camalexin efflux and disease resistance are regulated through direct phosphorylation by the kinases OXI1 and AGC2-2. bioRxiv.

    30.Vassiliki A Michalopoulou, Glykeria Mermigka, Konstantinos Kotsaridis, Andriani Mentzelopoulou, Patrick H N Celie, Panagiotis N Moschou, Jonathan D G Jones, Panagiotis F Sarris, The host exocyst complex is targeted by a conserved bacterial type-III effector that promotes virulence, The Plant Cell, 2022;, koac162, doi.org/10.1093/plcell/koac162

    31.Jin Gao; Gai Huang; Xin Chen; Yu‐Xian Zhu.(2022).PROTEIN S -ACYL TRANSFERASE 13/16 (PAT13/PAT16) modulate disease resistance by S -acylation of the NB-LRR protein R5L1 in Arabidopsis.Journal of Integrative Plant Biology.

    32.Zhang, Y., Dong, G., Wu, L., Wang, X., Chen, F., Xiong, E., ... & Yu, Y. (2022). Formin protein DRT1 affects gross morphology and chloroplast relocation in rice. Plant Physiology.

    33.Rehman, H. M., Chen, S., Zhang, S., Khalid, M., Uzair, M., Wilmarth, P. A., ... & Lam, H. M. (2022). Membrane Proteomic Profiling of Soybean Leaf and Root Tissues Uncovers Salt-Stress-Responsive Membrane Proteins. International Journal of Molecular Sciences, 23(21), 13270.

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    35.Serrano, N., Pejchar, P., Hubálek, M., & Potocký, M. (2022). Comprehensive analysis of glycerolipid dynamics during tobacco pollen germination and pollen tube growth. Frontiers in Plant Science, 4336.

    36.Grones, P., De Meyer, A., Pleskot, R., Mylle, E., Kraus, M., Vandorpe, M., ... & Van Damme, D. (2022). The endocytic TPLATE complex internalizes ubiquitinated plasma membrane cargo. Nature Plants, 1-17.

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    38.Tian, R., Jiang, J., Bo, S., Zhang, H., Zhang, X., Hearne, S. J., ... & Fu, Z. (2023). Multi-omic characterization of the maize GPI synthesis mutant gwt1 with defects in kernel development. BMC Plant Biology, 23(1), 1-15.

    39.Kim, B., Yu, W., Kim, H., Dong, Q., Choi, S., Prokchorchick, M., ... & Segonzac, C. (2023). A plasma membrane nucleotide-binding leucine-rich receptor mediates the recognition of the Ralstonia pseudosolanacearum effector RipY in Nicotiana benthamiana. Plant Communications, 100640.

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      图标文献和实验
      该产品被引用文献
      1. Shen, Q., Bourdais, G., Pan, H., Robatzek, S., & Tang, D. (2017). Arabidopsis glycosylphosphatidylinositol-anchored protein LLG1 associates with and modulates FLS2 to regulate innate immunity. Proceedings of the National Academy of Sciences, 201614468.
      文献和实验图片1
      2. Zhiyuan Lv, Yan Huang , Bi Ma1 ,Zhonghuai Xiang , Ningjia He(2018).1LysM1 in MmLYK2 is a motif required for the interaction of MmLYP1 and MmLYK2 in the chitin signaling.Plant Cell Reports.doi.org/10.1007/s00299-018-2295-4.
      3. Jimi C Miller,etal (2018). Heterotrimeric G-proteins in unfolded protein response mediate plant growth-defense tradeoffs upstream of steroid and immune signaling. CSH PERSPECT BIOL.doi.org/10.1101/438135.
      4. Wang Q etal (2018).Resistance protein Pit interacts with the GEF OsSPK1 to activate OsRac1 and trigger rice immunity.Proc Natl Acad Sci U S A. 2018 Nov 16. pii: 201813058. doi: 10.1073/pnas.1813058115.
      5. Si Ma etal (2019).Phloem loading in cucumber: combined symplastic and apoplastic strategies.The Plant Journal. DOI: 10.1111/tpj.14224.
      6. Shuai Zhang et al(2019).In rose, transcription factor PTM balances growth and drought survival via PIP2;1 aquaporin.Natureplants.Doi.org/10.1038/s41477-019-0376-1.
      7. Cheng Liu, Dayong Cui, Jingbo Zhao, Na Liu, Bo Wang, Jing Liu, Enjun Xu, Zhubing Hu, et al(2019).Two Arabidopsis Receptor-Like Cytoplasmic Kinases SZE1 and SZE2 Associate with the ZAR1-ZED1 Complex and Are Required for Effector-Triggered Immunity.Molecular Plant.DOI: 10.1016/j.molp.2019.03.012
      8. Jizong Wang*, Meijuan Hu*, Jia Wang*, Jinfeng Qi, Zhifu Han, Guoxun Wang, Yijun Qi, Hong-Wei Wang†, Jian-Min Zhou†, Jijie Chai Reconstitution and structure of a plant NLR resistosome conferring immunity.Science .DOI: 10.1126/science.aav5870.
      9. Zhang, X., Zhang, H., Lou, X., & Tang, M. (2019). Mycorrhizal and non-mycorrhizal Medicago truncatula roots exhibit differentially regulated NADPH oxidase and antioxidant response under Pb stress. Environmental and Experimental Botany.doi.org/10.1016/j.envexpbot.2019.04.015
      10. Li, X., Li, N., & Xu, F. (2019). Increased autophagy of rice can increase yield and nitrogen use efficiency (NUE). Frontiers in Plant Science, 10, 584.doi: 10.3389/fpls.2019.00584
      11. Yuan, N., Balasubramanian, V. K., Chopra, R., & Mendu, V. (2019). The photoperiodic flowering time regulator FKF1 negatively regulates cellulose biosynthesis. Plant Physiology, pp-00013.DOI:10.1104/pp.19.00013
      12. Phosphorylation at Ser28 stabilizes the Arabidopsis nitrate transporter NRT2. 1 in response to nitrate limitation. Journal of integrative plant biology. Yuan, N., Balasubramanian, V. K., Chopra, R., & Mendu, V. (2019).doi: 10.1111/jipb.12858.
      13. Chai, H., Guo, J., Zhong, Y., Hsu, C. C., Zou, C., Wang, P., ... & Shi, H. The plasma‐membrane polyamine transporter PUT3 is regulated by the Na+/H+ antiporter SOS1 and protein kinase SOS2. New Phytologist.
      14. Wang, W., Liu, N., Gao, C., Cai, H., Romeis, T., & Tang, D. The Arabidopsis exocyst subunits EXO70B1 and EXO70B2 regulate FLS2 homeostasis at the plasma membrane. New Phytologist.
      15. Ngou, B. P. M., Ahn, H. K., Ding, P., & Jones, J. D. (2020). Mutual Potentiation of Plant Immunity by Cell-surface and Intracellular Receptors. bioRxiv.
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