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首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >Characterization of the ryanodine receptor-Ca2+ release channel from the thoracic tissues of the lepidopteran insect Heliothis virescens.
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Characterization of the ryanodine receptor-Ca2+ release channel from the thoracic tissues of the lepidopteran insect Heliothis virescens.

机译:从鳞翅目昆虫Heliothis virescens胸腔组织中的ryanodine受体-Ca2 +释放通道的特征。

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The existence of invertebrate forms of the RyR has recently been confirmed (Takeshima et al., 1994, Puente et al., 2000). However, information on the functional properties of this insect RyR is still limited. We report the functional characterization of a RyR from the thoracic muscle of H. virescens (Scott-Ward et al., 1997). A simple purification protocol produced membranes from homogenized prefrozen H. virescens thoracic muscle with a [3H]-ryanodine binding activity of 1.19 +/- 0.21 pmol/mg protein (mean +/- SE; n = 4). [3H]-Ryanodine binding to the H. virescens receptor was dependent on the ryanodine concentration in a hyperbolic fashion with a KD of 3.82 nM (n = 4). [3H]-ryanodine binding was dependent on [Ca2+] in a biphasic manner and was stimulated by 1 mM ATP. Millimolar caffeine did not stimulate [3H]-ryanodine binding to H. virescens membranes in the presence of either nanomolar or micromolar Ca2+. A protein of at least 400 KDa was recognized in H. virescens membrane proteins by a specific anti-H. virescens RyR antibody. Discontinuous density sucrose gradient fractionation of microsomal membranes produced vesicles suitable for single-channel studies. Ca2+-sensitive, Ca2+-permeable channels were successfully inserted into artificial lipid bilayers from H. virescens membrane vesicles. The H. virescens RyR-channel displayed a Ca2+ conductance of approximately 110 pS and underwent a persistent and characteristic modification of ion handling and gating following addition of 100 nM ryanodine. The gating of H. virescens channels was sensitive to ATP and ruthenium red in a manner similar to mammalian RyR. This is the first report to describe the single channel and [3H]-ryanodine binding properties of a native insect RyR.
机译:最近证实了无脊椎动物形式的RyR的存在(Takeshima等,1994; Puente等,2000)。但是,关于该昆虫RyR的功能特性的信息仍然有限。我们报道了从H.virescens的胸肌RyR的功能表征(Scott-Ward等,1997)。一种简单的纯化方案是从均质的预冷冻的粘膜肺炎链球菌胸膜中产生具有1.19 +/- 0.21 pmol / mg蛋白质的[3H] -ryanodine结合活性的膜(平均值+/- SE; n = 4)。 [3 H] -Ryanodine结合到H. virescens受体上以双曲线方式依赖于ryanodine浓度,KD为3.82 nM(n = 4)。 [3H] -ryanodine的结合以双相方式依赖于[Ca2 +],并受到1 mM ATP的刺激。在存在纳摩尔或微摩尔Ca2 +的情况下,毫摩尔咖啡因不会刺激[3H] -ryanodine与粘膜葡萄球菌膜的结合。通过特异的抗-H在豆荚膜梭菌膜蛋白中识别出至少400KDa的蛋白。 virescens RyR抗体。微粒体膜的不连续密度蔗糖梯度分馏产生适合于单通道研究的囊泡。 Ca2 +敏感,Ca 2 +的可渗透通道已成功地插入到来自拟南芥膜囊泡的人工脂质双层中。 H. virescens RyR通道显示约110 pS的Ca2 +电导率,并在添加100 nM ryanodine之后对离子处理和门控进行了持久且特征性的修饰。 virescens通道的门控以类似于哺乳动物RyR的方式对ATP和钌红敏感。这是描述天然昆虫RyR的单通道和[3H] -ryanodine结合特性的第一份报告。

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