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小麦分子拉链I同源物TaZYP1的分离与鉴定

The isolation and characterisation of the wheat molecular ZIPper I homologue, TaZYP1.

作者信息

Khoo Kelvin H P, Able Amanda J, Able Jason A

机构信息

School of Agriculture, Food & Wine, Waite Research Institute, The University of Adelaide, Waite Campus, PMB1, Glen Osmond, South Australia 5064.

出版信息

BMC Res Notes. 2012 Feb 18;5:106. doi: 10.1186/1756-0500-5-106.

Abstract

BACKGROUND

The synaptonemal complex (SC) is a proteinaceous tripartite structure used to hold homologous chromosomes together during the early stages of meiosis. The yeast ZIP1 and its homologues in other species have previously been characterised as the transverse filament protein of the synaptonemal complex. Proper installation of ZYP1 along chromosomes has been shown to be dependent on the axial element-associated protein, ASY1 in Arabidopsis.

RESULTS

Here we report the isolation of the wheat (Triticum aestivum) ZYP1 (TaZYP1) and its expression profile (during and post-meiosis) in wild-type, the ph1b deletion mutant as well as in Taasy1 RNAi knock-down mutants. TaZYP1 has a putative DNA-binding S/TPXX motif in its C-terminal region and we provide evidence that TaZYP1 interacts non-preferentially with both single- and double-stranded DNA in vitro. 3-dimensional dual immunofluorescence localisation assays conducted with an antibody raised against TaZYP1 show that TaZYP1 interacts with chromatin during meiosis but does not co-localise to regions of chromatin where TaASY1 is present. The TaZYP1 signal lengthens into regions of chromatin where TaASY1 has been removed in wild-type but this appears delayed in the ph1b mutant. The localisation profile of TaZYP1 in four Taasy1 knock-down mutants is similar to wild-type but TaZYP1 signal intensity appears weaker and more diffused.

CONCLUSIONS

In contrast to previous studies performed on plant species where ZYP1 signal is sandwiched by ASY1 signal located on both axial elements of the SC, data from the 3-dimensional dual immunofluorescence localisation assays conducted in this study show that TaZYP1 signal only lengthens into regions of chromatin after TaASY1 signal is being unloaded. However, the observation that TaZYP1 loading appears delayed in both the ph1b and Taasy1 mutants suggests that TaASY1 may still be essential for TaZYP1 to play a role in SC formation during meiosis. These data further suggest that the temporal installation of ZYP1 onto pairing homologous chromosomes in wheat is different to that of other plant species and highlights the need to study this synaptonemal complex protein on a species to species basis.

摘要

背景

联会复合体(SC)是一种蛋白质构成的三联体结构,在减数分裂早期用于将同源染色体维系在一起。酵母中的ZIP1及其在其他物种中的同源物先前已被鉴定为联会复合体的横向丝蛋白。已证明拟南芥中ZYP1沿染色体的正确装配依赖于轴向元件相关蛋白ASY1。

结果

在此我们报告了小麦(普通小麦)ZYP1(TaZYP1)的分离及其在野生型、ph1b缺失突变体以及Taasy1 RNA干扰敲除突变体中减数分裂期间及减数分裂后的表达谱。TaZYP1在其C末端区域有一个推定的DNA结合S/TPXX基序,并且我们提供证据表明TaZYP1在体外与单链和双链DNA均无偏好性地相互作用。用针对TaZYP1产生的抗体进行的三维双免疫荧光定位分析表明,TaZYP1在减数分裂期间与染色质相互作用,但不与存在TaASY1的染色质区域共定位。在野生型中,TaZYP1信号延伸到已去除TaASY1的染色质区域,但在ph1b突变体中这一过程似乎延迟。TaZYP1在四个Taasy1敲除突变体中的定位谱与野生型相似,但TaZYP1信号强度似乎较弱且更分散。

结论

与先前对植物物种进行的研究不同,在那些研究中ZYP1信号被位于SC两个轴向元件上的ASY1信号夹在中间,本研究中进行的三维双免疫荧光定位分析数据表明,只有在TaASY1信号消失后,TaZYP1信号才延伸到染色质区域。然而,在ph1b和Taasy1突变体中TaZYP1加载似乎延迟的观察结果表明,TaASY1对于TaZYP1在减数分裂期间参与SC形成可能仍然至关重要。这些数据进一步表明,小麦中ZYP1在配对同源染色体上的时间装配与其他植物物种不同,并突出了在物种基础上研究这种联会复合体蛋白的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61e3/3305362/031b2eaab1d6/1756-0500-5-106-1.jpg

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