首页> 美国卫生研究院文献>Plant Physiology >Effects of Boron on Proton Transport and Membrane Properties of Sunflower (Helianthus annuus L.) Cell Microsomes.
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Effects of Boron on Proton Transport and Membrane Properties of Sunflower (Helianthus annuus L.) Cell Microsomes.

机译:硼对向日葵(Helianthus annuus L.)细胞微粒体质子迁移和膜性质的影响。

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摘要

Boron deficiency and toxicity inhibit ATP-dependent H+ pumping and vanadate-sensitive ATPase activity in sunflower roots and cell suspensions. The effects of boron on H+ pumping and on passive H+ conductance, as well as on fluorescence anisotropy in KI-washed microsomes isolated from sunflower (Helianthus annuus L. cv Enano) cell suspensions, have been investigated. Boron deficiency reduced the total and vanadate-sensitive ATPase activities as well as the vanadate-sensitive ATP-dependent H+ pumping without affecting the amount of antigenic ATPase protein as measured by immunoblotting with an Arabidopsis thaliana plasma membrane anti-H+-ATPase polyclonal antibody. Kinetic studies revealed that boron deficiency reduced Vmax of vanadate-sensitive ATPase activity with little change in the apparent Km for Mg2+-ATP. Proton leakage was greater in microsomal vesicles isolated from cells grown without boron and incubated in reaction medium without added boron, and this effect was reversed by addition of boron to the reaction medium. Fluorescence anisotropy indicated that diphenyl hexatriene and 1-(4-trimethylammoniumphenyl)-6-phenyl-1,3,5-hexatriene probes were immobilized to a greater extent in microsomes from cells grown without boron than in those from cells grown with 100 [mu]M H3BO3. The apparent decrease of membrane fluidity in microsomes from cells grown without boron was reversed by the addition of boron to the reaction medium. Taken together these data suggest that inhibition of H+ gradient formation in microsomes from sunflower cells grown in the absence of boron could be due to the combined effects of reduced H+-ATPase activity and increased passive conductance across the membrane, possibly resulting from increased membrane rigidity.
机译:硼缺乏和毒性抑制向日葵根和细胞悬浮液中的ATP依赖的H +泵送和钒酸盐敏感的ATPase活性。研究了硼对从向日葵(Helianthus annuus L. cv Enano)细胞悬液分离的KI洗涤微粒体中H +泵浦和被动H +电导以及荧光各向异性的影响。硼缺乏降低了总的和钒酸盐敏感的ATPase活性,以及​​钒酸盐敏感的ATP依赖的H +泵送,而不会影响拟南芥质膜抗H + -ATPase多克隆抗体的免疫印迹,可测量抗原性ATPase蛋白的量。动力学研究表明,硼缺乏降低了钒酸盐敏感性ATPase活性的Vmax,而Mg2 + -ATP的表观Km几乎没有变化。从无硼生长的细胞分离的微粒体小泡中质子泄漏更大,并在不添加硼的反应介质中孵育,通过向反应介质中添加硼可以逆转这种影响。荧光各向异性表明,在没有硼的细胞中,二苯基己三烯和1-(4-三甲基铵苯基)-6-苯基-1,3,5-己三烯探针在微粒体中的固定程度大于在100μm的细胞中的固定率。 ] M H3BO3。通过向反应介质中添加硼,可以逆转来自无硼生长细胞的微粒体中膜流动性的明显降低。这些数据加在一起表明,在没有硼的情况下生长的向日葵细胞中微粒体中H +梯度形成的抑制可能是由于H + -ATPase活性降低和跨膜被动电导的综合作用所致,这可能是由于膜刚性增加所致。

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