Thelen Jay J, Ohlrogge John B
Michigan State University, Department of Plant Biology, East Lansing, MI 48824, USA.
Plant J. 2002 Nov;32(4):419-31. doi: 10.1046/j.1365-313x.2002.01435.x.
To further characterize the role of biotin carboxyl carrier protein isoform 2 (BCCP2) in acetyl-coenzyme A carboxylase (ACCase) function and fatty acid biosynthesis, plants with reduced or increased expression of this protein were characterized. Analysis of 38 independent Arabidopsis lines expressing antisense BCCP2 transcript behind a constitutive promoter showed no significant phenotype, though antisense transcript was highly expressed. In developing seed, BCCP2 protein was reduced by an average of 38% resulting in a 9% average decrease in fatty acid content in mature seed. Over-expression of BCCP2 behind a seed-specific napin promoter increased the amount of holo-BCCP2 in developing seed by an average of twofold, as determined with anti-biotin antibodies. Surprisingly, the average fatty acid content of T2 seed from over-expression lines was 23% lower than wild-type seed. These plants also exhibited reduced seed setting in 18 of 20 T1 lines which was coincident with increased individual seed mass. Quantification of total BCCP2 in developing siliques using anti-BCCP2 antibodies indicated that as much as 60% of total plastidial BCCP2 was in the non-biotinylated form (apo-BCCP2). Although apo-BCCP2 was highly over-expressed in developing seed, accumulation of other ACCase subunits was unaffected. The specific activity of ACCase was up to 65% lower in developing seed of over-expression lines versus wild type. This was attributed to the assembly of biologically inactive (non-biotinylated) ACCase complexes. Consistent with ACCase exerting control over de novo fatty acid synthesis, reduced activity in developing seed resulted in lower oil content, altered fatty acid composition and reduced seed setting.
为了进一步阐明生物素羧基载体蛋白亚型2(BCCP2)在乙酰辅酶A羧化酶(ACCase)功能及脂肪酸生物合成中的作用,对该蛋白表达量降低或升高的植株进行了特性分析。对38个在组成型启动子驱动下表达反义BCCP2转录本的独立拟南芥株系进行分析,结果显示尽管反义转录本高表达,但并未观察到明显的表型。在发育中的种子里,BCCP2蛋白平均减少了38%,导致成熟种子中脂肪酸含量平均降低了9%。利用抗生物素抗体测定发现,在种子特异性的napin启动子驱动下过表达BCCP2,使发育中种子里全酶形式的BCCP2含量平均增加了两倍。令人惊讶的是,过表达株系T2代种子的平均脂肪酸含量比野生型种子低23%。这些植株在20个T1代株系中有18个表现出结实率降低,这与单粒种子重量增加同时出现。用抗BCCP2抗体对发育中的角果里的总BCCP2进行定量分析表明,高达60%的质体BCCP2以未生物素化的形式(脱辅基BCCP2)存在。尽管脱辅基BCCP2在发育中的种子里大量过表达,但其他ACCase亚基的积累并未受到影响。与野生型相比,过表达株系发育中种子里ACCase 的比活性降低了高达65%。这归因于无生物学活性的(未生物素化的)ACCase复合物的组装。由于ACCase对从头脂肪酸合成起调控作用,发育中种子里活性降低导致油含量降低、脂肪酸组成改变以及结实率降低。