TY - JOUR
T1 - Protein disulfide isomerase-P5, down-regulated in the final stage of boar epididymal sperm maturation, catalyzes disulfide formation to inhibit protein function in oxidative refolding of reduced denatured lysozyme
AU - Akama, Kuniko
AU - Horikoshi, Tomoe
AU - Sugiyama, Atsushi
AU - Nakahata, Satoko
AU - Akitsu, Aoi
AU - Niwa, Nobuyoshi
AU - Intoh, Atsushi
AU - Kakui, Yasutaka
AU - Sugaya, Michiko
AU - Takei, Kazuo
AU - Imaizumi, Noriaki
AU - Sato, Takaya
AU - Matsumoto, Rena
AU - Iwahashi, Hitoshi
AU - Kashiwabara, Shin ichi
AU - Baba, Tadashi
AU - Nakamura, Megumi
AU - Toda, Tosifusa
PY - 2010/6
Y1 - 2010/6
N2 - In mammalian spermiogenesis, sperm mature during epididymal transit to get fertility. The pig sharing many physiological similarities with humans is considered a promising animal model in medicine. We examined the expression profiles of proteins from boar epididymal caput, corpus, and cauda sperm by two-dimensional gel electrophoresis and peptide mass fingerprinting. Our results indicated that protein disulfide isomerase-P5 (PDI-P5) human homolog was down-regulated from the epididymal corpus to cauda sperm, in contrast to the constant expression of protein disulfide isomerase A3 (PDIA3) human homolog. To examine the functions of PDIA3 and PDI-P5, we cloned and sequenced cDNAs of pig PDIA3 and PDI-P5 protein precursors. Each recombinant pig mature PDIA3 and PDI-P5 expressed in Escherichia coli showed thiol-dependent disulfide reductase activities in insulin turbidity assay. Although PDIA3 showed chaperone activity to promote oxidative refolding of reduced denatured lysozyme, PDI-P5 exhibited anti-chaperone activity to inhibit oxidative refolding of lysozyme at an equimolar ratio. SDS-PAGE and Western blotting analysis suggested that disulfide cross-linked and non-productively folded lysozyme was responsible for the anti-chaperone activity of PDI-P5. These results provide a molecular basis and insights into the physiological roles of PDIA3 and PDI-P5 in sperm maturation and fertilization.
AB - In mammalian spermiogenesis, sperm mature during epididymal transit to get fertility. The pig sharing many physiological similarities with humans is considered a promising animal model in medicine. We examined the expression profiles of proteins from boar epididymal caput, corpus, and cauda sperm by two-dimensional gel electrophoresis and peptide mass fingerprinting. Our results indicated that protein disulfide isomerase-P5 (PDI-P5) human homolog was down-regulated from the epididymal corpus to cauda sperm, in contrast to the constant expression of protein disulfide isomerase A3 (PDIA3) human homolog. To examine the functions of PDIA3 and PDI-P5, we cloned and sequenced cDNAs of pig PDIA3 and PDI-P5 protein precursors. Each recombinant pig mature PDIA3 and PDI-P5 expressed in Escherichia coli showed thiol-dependent disulfide reductase activities in insulin turbidity assay. Although PDIA3 showed chaperone activity to promote oxidative refolding of reduced denatured lysozyme, PDI-P5 exhibited anti-chaperone activity to inhibit oxidative refolding of lysozyme at an equimolar ratio. SDS-PAGE and Western blotting analysis suggested that disulfide cross-linked and non-productively folded lysozyme was responsible for the anti-chaperone activity of PDI-P5. These results provide a molecular basis and insights into the physiological roles of PDIA3 and PDI-P5 in sperm maturation and fertilization.
KW - Anti-chaperone activity
KW - Protein disulfide isomerase A3
KW - Protein disulfide isomerase-P5
KW - Proteomics
KW - Sperm maturation
KW - Two-dimensional gel electrophoresis
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UR - http://www.scopus.com/inward/citedby.url?scp=77949917256&partnerID=8YFLogxK
U2 - 10.1016/j.bbapap.2010.02.004
DO - 10.1016/j.bbapap.2010.02.004
M3 - Article
C2 - 20152940
AN - SCOPUS:77949917256
SN - 1570-9639
VL - 1804
SP - 1272
EP - 1284
JO - Biochimica et Biophysica Acta - Proteins and Proteomics
JF - Biochimica et Biophysica Acta - Proteins and Proteomics
IS - 6
ER -