INRA, UMR 1319 Micalis, F-78352 Jouy-en-Josas, France.
DNA Res. 2012 Jun;19(3):231-44. doi: 10.1093/dnares/dss007. Epub 2012 Feb 24.
Alternative pre-mRNA splicing is a major mechanism contributing to the proteome complexity of most eukaryotes, especially mammals. In less complex organisms, such as yeasts, the numbers of genes that contain introns are low and cases of alternative splicing (AS) with functional implications are rare. We report the first case of AS with functional consequences in the yeast Yarrowia lipolytica. The splicing pattern was found to govern the cellular localization of malate dehydrogenase, an enzyme of the central carbon metabolism. This ubiquitous enzyme is involved in the tricarboxylic acid cycle in mitochondria and in the glyoxylate cycle, which takes place in peroxisomes and the cytosol. In Saccharomyces cerevisiae, three genes encode three compartment-specific enzymes. In contrast, only two genes exist in Y. lipolytica. One gene (YlMDH1, YALI0D16753g) encodes a predicted mitochondrial protein, whereas the second gene (YlMDH2, YALI0E14190g) generates the cytosolic and peroxisomal forms through the alternative use of two 3'-splice sites in the second intron. Both splicing variants were detected in cDNA libraries obtained from cells grown under different conditions. Mutants expressing the individual YlMdh2p isoforms tagged with fluorescent proteins confirmed that they localized to either the cytosolic or the peroxisomal compartment.
可变剪接是大多数真核生物(尤其是哺乳动物)蛋白质组复杂性的主要机制。在酵母等较简单的生物中,内含子基因的数量较少,具有功能意义的可变剪接(AS)案例也很少。我们报道了酵母解脂耶氏酵母中第一个具有功能后果的 AS 案例。剪接模式决定了苹果酸脱氢酶的细胞定位,苹果酸脱氢酶是中心碳代谢的一种酶。这种普遍存在的酶参与线粒体中的三羧酸循环和过氧化物酶体和细胞质中的乙醛酸循环。在酿酒酵母中,三个基因编码三个区室特异性酶。相比之下,在解脂耶氏酵母中仅存在两个基因。一个基因(YlMDH1,YALI0D16753g)编码一种预测的线粒体蛋白,而第二个基因(YlMDH2,YALI0E14190g)通过在第二个内含子的两个 3'剪接位点的选择性使用,产生细胞质和过氧化物酶体形式。在不同条件下生长的细胞的 cDNA 文库中均检测到两种剪接变体。用荧光蛋白标记的表达单个 YlMdh2p 同工型的突变体证实它们定位于细胞质或过氧化物酶体区室。