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BUNDLE SHEATH DEFECTIVE2 a novel protein required for post-translational regulation of the rbcL gene of maize.

机译:BUNDLE SHEATH DEFECTIVE2一种玉米蛋白rbcL基因翻译后调控所需的新型蛋白质。

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摘要

The Bundle sheath defective2 (Bsd2) gene is required for ribulose-1, 5-bisphosphate carboxylase/oxygenase (Rubisco) accumulation in maize. Using a Mutator transposable element as a molecular probe, we identified a tightly linked restriction fragment length polymorphism that cosegregated with the bsd2-conferred phenotype. This fragment was cloned, and sequences flanking the Mutator insertion were used to screen a maize leaf cDNA library. Using a full-length cDNA clone isolated in this screen, we show that an abundant 0.6-kb transcript could be detected in wild-type plants but not in bsd2-m1 plants. This 0.6-kb transcript accumulated to low levels in plants carrying an allele derived from bsd2-m1 that conditions a less severe mutant phenotype. Taken together, these data strongly suggest that we have cloned the Bsd2 gene. Sequence analysis of the full-length cDNA clone revealed a chloroplast targeting sequence and a region of homology shared between BSD2 and the DnaJ class of molecular chaperones. This region of homology is limited to a cysteine-rich Zn binding domain in DnaJ believed to play a role in protein-protein interactions. We show that BSD2 is targeted to the chloroplast but is not involved in general photosynthetic complex assembly or protein import. In bsd2 mutants, we could not detect the Rubisco protein, but the chloroplast-encoded Rubisco large subunit transcript (rbcL) was abundant and associated with polysomes in both bundle sheath and mesophyll cells. By characterizing Bsd2 expression patterns and analyzing the bsd2-conferred phenotype, we propose a model for BSD2 in the post-translational regulation of rbcL in maize.
机译:玉米中的核糖-1、5-双磷酸羧化酶/加氧酶(Rubisco)积累需要束鞘缺损2(Bsd2)基因。使用Mutator转座因子作为分子探针,我们确定了与bsd2赋予表型共分离的紧密连接的限制性片段长度多态性。克隆该片段,并使用突变体插入侧翼的序列来筛选玉米叶片cDNA文库。使用在此屏幕中分离的全长cDNA克隆,我们显示可以在野生型植物中检测到大量的0.6-kb转录本,而在bsd2-m1植物中则不能检测到。在携带来自bsd2-m1的等位基因的植物中,这种0.6 kb的转录物积累到较低的水平,而bsd2-m1的条件是不太严重的突变表型。综上所述,这些数据强烈表明我们已经克隆了Bsd2基因。全长cDNA克隆的序列分析揭示了叶绿体靶向序列和BSD2与分子伴侣的DnaJ类共有的同源区域。该同源性区域限于DnaJ中富含半胱氨酸的Zn结合结构域,据信在蛋白质-蛋白质相互作用中起作用。我们显示BSD2靶向叶绿体,但不参与一般的光合作用复合体装配或蛋白质导入。在bsd2突变体中,我们无法检测到Rubisco蛋白,但是叶绿体编码的Rubisco大亚基转录本(rbcL)丰富并且与束鞘和叶肉细胞中的多核小体相关。通过表征Bsd2的表达模式并分析bsd2赋予的表型,我们提出了rbcL在玉米中翻译后调控的BSD2模型。

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