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Reversible Calcium-Regulated Stopcocks in Legume Sieve Tubes

机译:豆类筛管中可逆钙调节旋塞阀

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摘要

Sieve tubes of legumes (Fabaceae) contain characteristic P-protein crystalloids with controversial function. We studied their behavior by conventional light, electron, and confocal laser scanning microscopy. In situ, crystalloids are able to undergo rapid (<1 sec) and reversible conversions from the condensed resting state into a dispersed state, in which they occlude the sieve tubes. Crystalloid dispersal is triggered by plasma membrane leakage induced by mechanical injury or permeabilizing substances. Similarly, abrupt turgor changes imposed by osmotic shock cause crystalloid dispersal. Because chelators generally prevent the response, divalent cations appear to be the decisive factor in crystalloid expansion. Cycling between dispersal and condensation can be induced in opened cells by repetitive exchange of bathing media containing either Ca2+ or chelators. Sr2+ and Ba2+, but not Mg2+, are equally active. In conclusion, the fabacean P-protein crystalloids represent a novel class of mechanically active proteinaceous structures, which provide an efficient mechanism with which to control sieve tube conductivity.
机译:豆类(豆科)筛管含有具有争议功能的特征性P蛋白晶体。我们通过常规的光,电子和共聚焦激光扫描显微镜研究了它们的行为。原位晶体能够快速(<1秒)且可逆地从凝结的静止状态转变为分散状态,在该状态下晶体会堵塞筛管。晶体分散是由机械损伤或透化物质引起的质膜泄漏触发的。同样,由渗透性休克引起的突然的膨胀变化会导致晶体分散。由于螯合剂通常会阻止反应,因此二价阳离子似乎是晶体扩展的决定性因素。通过反复交换含有Ca 2 + 或螯合剂的沐浴介质,可以在开放的细胞中诱导分散和缩合之间的循环。 Sr 2 + 和Ba 2 + 活性相同,但Mg 2 + 没有活性。总之,蚕豆P蛋白晶体代表了一类新型的机械活性蛋白质结构,提供了控制筛管传导性的有效机制。

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