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粗糙脉孢菌菌丝生长的钙梯度依赖性

Calcium gradient dependence of Neurospora crassa hyphal growth.

作者信息

Silverman-Gavrila Lorelei B, Lew Roger R

机构信息

Department of Biology, York University, 4700 Keele Street, Toronto, Ontario, Canada M3J 1P3.

出版信息

Microbiology (Reading). 2003 Sep;149(Pt 9):2475-2485. doi: 10.1099/mic.0.26302-0.

DOI:10.1099/mic.0.26302-0
PMID:12949173
Abstract

A tip-high cytoplasmic calcium gradient has been identified as a requirement for hyphal growth in the fungus Neurospora crassa. The Ca2+ gradient is less steep compared to wall vesicle, wall incorporation and vesicular Ca2+ gradients, but this can be explained by Ca2+ diffusion. Analysis of the relation between the rate of hyphal growth and the spatial distribution of tip-localized calcium indicates that hyphal growth rates depend upon the tip-localized calcium concentration. It is not the steepness of the calcium gradient, but tip-localized calcium and the difference in tip-localized calcium versus subapical calcium concentration which correlate closely with hyphal growth rate. A minimal concentration difference between the apex and subapical region of 30 nM is required for growth to occur. The calcium concentration dependence of growth may relate directly to biochemical functions of calcium in hyphal extension, such as vesicle fusion and enzyme activation during cellular expansion. Initiation of tip growth may rely upon random Ca2+ motions causing localized regions of elevated calcium. Continued hyphal expansion may activate a stretch-activated phospholipase C which would increase tip-localized inositol 1,4,5-trisphosphate (IP3). Hyphal expansion, induced by mild hypoosmotic treatment, does increase diacylglycerol, the other product of phospholipase C activity. This is consistent with evidence that IP3-activated Ca2+ channels generate and maintain the tip-high calcium gradient.

摘要

已确定在粗糙脉孢菌中,菌丝生长需要顶端高细胞质钙梯度。与壁泡、壁掺入和泡状钙梯度相比,Ca2+梯度较平缓,但这可以用Ca2+扩散来解释。对菌丝生长速率与顶端定位钙的空间分布之间关系的分析表明,菌丝生长速率取决于顶端定位的钙浓度。与菌丝生长速率密切相关的不是钙梯度的陡度,而是顶端定位的钙以及顶端定位钙与亚顶端钙浓度的差异。生长发生需要顶端和亚顶端区域之间的最小浓度差为30 nM。生长对钙浓度的依赖性可能直接与钙在菌丝延伸中的生化功能有关,例如细胞扩张过程中的泡融合和酶激活。顶端生长的启动可能依赖于随机的Ca2+运动导致局部钙升高区域。持续的菌丝扩张可能激活一种拉伸激活的磷脂酶C,这会增加顶端定位的肌醇1,4,5-三磷酸(IP3)。轻度低渗处理诱导的菌丝扩张确实会增加磷脂酶C活性的另一种产物二酰基甘油。这与IP3激活的Ca2+通道产生并维持顶端高钙梯度的证据一致。

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