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具有Aβ6交配型活性的裂褶菌基因的克隆与特性分析

Cloning and characterization of a Schizophyllum gene with A beta 6 mating-type activity.

作者信息

Shen G P, Park D C, Ullrich R C, Novotny C P

机构信息

Department of Microbiology and Molecular Genetics, University of Vermont, Burlington 05405, USA.

出版信息

Curr Genet. 1996 Jan;29(2):136-42. doi: 10.1007/BF02221577.

Abstract

The A-pathway of development in the basidiomycete fungus Schizophyllum commune may be activated by either of two mating-type loci, A alpha and A beta. A alpha consists of two multiallelic genes, Y and Z. Y contains a putative homeodomain; Z contains a homeodomain-related region. Non-self combinations of Y and Z form heteromultimers which are thought to be transcription factors of developmental genes. To more completely understand A-regulated development it is necessary to address the issue of functional redundancy, i.e., how do two different mating loci, A alpha and A beta, both manage to regulate the same pathway. Here we report the structure of a gene with A beta 6 activity. This gene, denoted A beta V6, encodes a deduced polypeptide of 640 amino-acids with a homeodomain motif. V6 also contains a 20-amino acid sequence that is conserved in A alpha Y1, Y3 and Y4. Except for the homeodomain and the conserved sequence, the deduced V6 polypeptide shows no significant identity to A alpha Y, A alpha Z, or other known proteins. The presence of a homeodomain suggests that V, like Y and Z, may be a regulatory protein for genes in the A-pathway. Thus while A alpha and A beta encode different proteins, the general mechanism by which A alpha and A beta components signal A-regulated development may be similar.

摘要

担子菌裂褶菌的A发育途径可被两个交配型基因座Aα和Aβ中的任何一个激活。Aα由两个多等位基因Y和Z组成。Y含有一个假定的同源结构域;Z含有一个与同源结构域相关的区域。Y和Z的非自身组合形成异源多聚体,被认为是发育基因的转录因子。为了更全面地理解A调控的发育,有必要解决功能冗余问题,即两个不同的交配基因座Aα和Aβ如何都能调控同一途径。在此我们报道了一个具有Aβ6活性的基因的结构。这个基因,命名为AβV6,编码一个推导的含有640个氨基酸且带有同源结构域基序的多肽。V6还含有一个在Aα Y1、Y3和Y4中保守的20个氨基酸的序列。除了同源结构域和保守序列外,推导的V6多肽与Aα Y、Aα Z或其他已知蛋白质没有显著的同源性。同源结构域的存在表明V与Y和Z一样,可能是A途径中基因的调控蛋白。因此,虽然Aα和Aβ编码不同的蛋白质,但Aα和Aβ组分信号传导A调控发育的一般机制可能是相似的。

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