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Dtr1p, a Multidrug Resistance Transporter of the Major Facilitator Superfamily, Plays an Essential Role in Spore Wall Maturation in Saccharomyces cerevisiae

机译:Dtr1p,主要促进者超家族的多药耐药转运蛋白,在酿酒酵母的孢子壁成熟中起重要作用

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The de novo formation of multilayered spore walls inside a diploid mother cell is a major landmark of sporulation in the yeast Saccharomyces cerevisiae. Synthesis of the dityrosine-rich outer spore wall takes place toward the end of this process. Bisformyl dityrosine, the major building block of the spore surface, is synthesized in a multistep process in the cytoplasm of the prospores, transported to the maturing wall, and polymerized into a highly cross-linked macromolecule on the spore surface. Here we present evidence that the sporulation-specific protein Dtr1p (encoded by YBR180w) plays an important role in spore wall synthesis by facilitating the translocation of bisformyl dityrosine through the prospore membrane. DTR1 was identified in a genome-wide screen for spore wall mutants. The null mutant accumulates unusually large amounts of bisformyl dityrosine in the cytoplasm and fails to efficiently incorporate this precursor into the spore surface. As a result, many mutant spores have aberrant surface structures. Dtr1p, a member of the poorly characterized DHA12 (drug:H+ antiporter with 12 predicted membrane spans) family, is localized in the prospore membrane throughout spore maturation. Transport by Dtr1p may not be restricted to its natural substrate, bisformyl dityrosine. When expressed in vegetative cells, Dtr1p renders these cells slightly more resistant against unrelated toxic compounds, such as antimalarial drugs and food-grade organic acid preservatives. Dtr1p is the first multidrug resistance protein of the major facilitator superfamily with an assigned physiological role in the yeast cell.
机译:二倍体母细胞内部从头形成多层孢子壁是酿酒酵母中形成孢子的主要标志。富含二氢酪氨酸的外孢子壁的合成在该过程即将结束时进行。孢子表面的主要组成部分双甲酰二氢酪氨酸是在孢子的细胞质中分步合成的,运到成熟壁上,并在孢子表面聚合成高度交联的大分子。在这里,我们提供的证据表明,孢子形成特异性蛋白Dtr1p(由 YBR180w 编码)通过促进双甲酰二氢酪氨酸通过子孢子膜易位,在孢子壁合成中起着重要作用。在孢子壁突变体的全基因组筛选中鉴定出了 DTR1 。无效突变体在细胞质中积聚了异常大量的双甲酰二氢酪氨酸,并且无法有效地将该前体掺入孢子表面。结果,许多突变体孢子具有异常的表面结构。 Dtr1p是特征不明确的DHA12(药物:H + 反转运蛋白,具有12个预计的膜跨距)家族的成员,在整个孢子成熟过程中都位于子孢子膜中。 Dtr1p的运输可能不限于其天然底物双甲酰二酪氨酸。当在营养细胞中表达时,Dtr1p使这些细胞对无关的有毒化合物(例如抗疟疾药物和食品级有机酸防腐剂)具有更强的抵抗力。 Dtr1p是主要促进子超家族的第一个多药耐药蛋白,在酵母细胞中具有指定的生理作用。

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