Using Qdot conjugates to detect proteins in situ in highly autofluorescent cyanobacterial cells

Shanshan Ren, K. Orcutt, K. Gundersen
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Abstract

Due to the low photostability of conventional organic fluorophores, their effectiveness in detecting proteins in highly autofluorescent cyanobacterial cells is limited. However, the inorganic fluorescent nanocrystal (Quantum Dot or Qdot) conjugates have the capability to overcome the limitation of organic fluorophores, and provide a promising tool for long-term imaging studies. In this study, we applied Qdot conjugated secondary antibodies associated with specific primary antibodies, and successfully detected nitrogenase and IdiA proteins in situ in highly autofluorescent cyanobacterial cells of the unicellular Crocosphaera watsonii (WH8501) and the non-heterocystous Trichodesmium erythraeum (EVIS101).
利用Qdot偶联物在高自荧光蓝藻细胞中原位检测蛋白质
由于传统有机荧光团的光稳定性低,它们在检测高度自荧光蓝藻细胞中的蛋白质方面的有效性受到限制。然而,无机荧光纳米晶体(量子点或Qdot)共轭物有能力克服有机荧光团的局限性,并为长期成像研究提供了一个有前途的工具。本研究利用Qdot偶联的二抗结合特异性一抗,成功在单细胞watsonii鳄鱼(WH8501)和非异囊赤霉病菌(EVIS101)高自荧光蓝藻细胞中原位检测到氮酶和IdiA蛋白。
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