Studies of yeast Kluyveromyces lactis mutations conferring super-secretion of recombinant proteins

被引:17
作者
Bartkeviciute, D [1 ]
Sasnauskas, K [1 ]
机构
[1] Inst Biotechnol, LT-2028 Vilnius, Lithuania
关键词
yeast; Kluyveromyces lactis; Saccharomyces cerevisiae; super-secretion; YML013w; KISEL1; SEL1;
D O I
10.1002/yea.935
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We have isolated mutants responsible for a super-secretion phenotype in Kluyveromyces lactis using the gene coding for a Bacillus amyloliquefaciens alpha-amylase as a marker for secretion. These mutations defined two groups, dominant and recessive. The recessive mutant strain, which secreted the heterologous protein in five-fold excess compared to the wild-type strain, was used for the cloning of genes, restraining the super-secreting phenotype. In screening for genes affecting super-secreting phenotype, we found that multiple copies of 10 different independently isolated DNA sequences suppressed the super-secreting phenotype. The first among the genes characterized, named KlSEL1 ('secretion lowering') showed homology to Saccharomyces cerevisiae ORF YML013w. The KlSEL1 gene is predicted to encode a polypeptide of 620 amino acid residues containing a putative transmembrane domain and UBX domain, characteristic for the ubiquitin-regulatory proteins. We demonstrated that the disruption of the SEL1 orthologues in K. lactis and S. cerevisiae conferred the super-secreting phenotype. SEL1 isolated from S. cerevisiae suppressed the super-secretion phenotype in K. lactis klsel1 strain, likewise homologous KlSEL1. No other phenotypic features for strains lacking the SEL1 gene were noticed except for the S. cerevisiae mutant growth being notably slower than in a wt strain. No growth changes were observed in the K. lactis klsel1 mutant. The set of genes (suppressors of over-secreting phenotype) could be attractive for further analysis of gene functions, super-secreting mechanisms and construction of new strains. This collection could be useful for the expedient construction of reduced yeast genomes, optimized for heterologous protein secretion. The KlSEL1 gene has been assigned EMBL Accession No. AJ488285. Copyright (C) 2002 John Wiley Sons, Ltd.
引用
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页码:1 / 11
页数:11
相关论文
共 45 条
[1]   A METHOD FOR GENE DISRUPTION THAT ALLOWS REPEATED USE OF URA3 SELECTION IN THE CONSTRUCTION OF MULTIPLY DISRUPTED YEAST STRAINS [J].
ALANI, E ;
CAO, L ;
KLECKNER, N .
GENETICS, 1987, 116 (04) :541-545
[2]  
Ausubel F M, 1999, SHORT PROTOCOLS MOL
[3]   Secretion of human proteins from yeast:: stimulation by duplication of polyubiquitin and protein disulfide isomerase genes in Kluyveromyces lactis [J].
Bao, WG ;
Fukuhara, H .
GENE, 2001, 272 (1-2) :103-110
[4]   Coupled ER to Golgi transport reconstituted with purified cytosolic proteins [J].
Barlowe, C .
JOURNAL OF CELL BIOLOGY, 1997, 139 (05) :1097-1108
[5]   Heterologous expression of the Kluyveromyces marxianus endopolygalacturonase gene (EPG1) using versatile autonomously replicating vector for a wide range of host [J].
Bartkeviciute, D ;
Siekstele, R ;
Sasnauskas, K .
ENZYME AND MICROBIAL TECHNOLOGY, 2000, 26 (9-10) :653-656
[6]   TRANSFORMATION OF THE YEAST KLUYVEROMYCES-LACTIS BY NEW VECTORS DERIVED FROM THE 1.6-MU-M CIRCULAR PLASMID PKD1 [J].
BIANCHI, MM ;
FALCONE, C ;
CHEN, XJ ;
WESLOWSKILOUVEL, M ;
FRONTALI, L ;
FUKUHARA, H .
CURRENT GENETICS, 1987, 12 (03) :185-192
[7]   PLASMID FUNCTIONS INVOLVED IN THE STABLE PROPAGATION OF THE PKD1 CIRCULAR PLASMID IN KLUYVEROMYCES-LACTIS [J].
BIANCHI, MM ;
SANTARELLI, R ;
FRONTALI, L .
CURRENT GENETICS, 1991, 19 (03) :155-161
[8]   The UBX domain: A widespread ubiquitin-like module [J].
Buchberger, A ;
Howard, MJ ;
Proctor, M ;
Bycroft, M .
JOURNAL OF MOLECULAR BIOLOGY, 2001, 307 (01) :17-24
[9]   Initial docking of ER-derived vesicles requires Uso1p and Ypt1p but is independent of SNARE proteins [J].
Cao, XC ;
Ballew, N ;
Barlowe, C .
EMBO JOURNAL, 1998, 17 (08) :2156-2165
[10]   THE HOST RANGE OF THE PKD1-DERIVED PLASMIDS IN YEAST [J].
CHEN, XJ ;
BIANCHI, MM ;
SUDA, K ;
FUKUHARA, H .
CURRENT GENETICS, 1989, 16 (02) :95-98