Characterization of hemocyanin from the peacock mantis shrimp Odontodactylus scyllarus (Malacostraca:Hoplocarida)

被引:15
作者
Scherbaum, Samantha [1 ,3 ]
Ertas, Beyhan [1 ,3 ]
Gebauer, Wolfgang [2 ]
Burmester, Thorsten [1 ,3 ]
机构
[1] Univ Hamburg, Bioctr Grindel, Inst Zool, D-20146 Hamburg, Germany
[2] Johannes Gutenberg Univ Mainz, Inst Zool, D-55128 Mainz, Germany
[3] Univ Hamburg, Zool Museum, D-20146 Hamburg, Germany
来源
JOURNAL OF COMPARATIVE PHYSIOLOGY B-BIOCHEMICAL SYSTEMS AND ENVIRONMENTAL PHYSIOLOGY | 2010年 / 180卷 / 08期
关键词
Hemocyanin; Arthropoda; Evolution; Crustacea; Respiratory protein; ARTHROPOD HEMOCYANINS; MOLECULAR CHARACTERIZATION; INTRAMOLECULAR EVOLUTION; SUBUNIT SEQUENCES; CRUSTACEA; PROTEIN; ORIGIN; IDENTIFICATION; PATTERN; LOBSTER;
D O I
10.1007/s00360-010-0495-5
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Hemocyanin is the blue respiratory protein of many arthropod species. While its structure, evolution, and physiological function have been studied in detail in Decapoda, there is little information on hemocyanins from other crustacean taxa. Here, we have investigated the hemocyanin of the peacock mantis shrimp Odontodactylus scyllarus, which belongs to the Stomatopoda (Hoplocarida). O. scyllarus hemocyanin forms a dodecamer (2 x 6-mer), which is composed of at least four distinct subunit types. We obtained the full-length cDNA sequences of three hemocyanin subunits, while a fourth cDNA was incomplete at its 5' end. The complete full-length cDNAs of O. scyllarus hemocyanin translate into polypeptides of 650-662 amino acids, which include signal peptides of 16 or 17 amino acids. The predicted molecular masses of 73.1-75.1 kDa correspond well with the main hemolymph proteins detected by SDS-PAGE and Western blotting using various anti-hemocyanin antibodies. Phylogenetic analyses show that O. scyllarus hemocyanins belong to the beta-type of malacostracan hemocyanin subunits, which diverged from the other subunits before the radiation of the malacostracan subclasses around 520 million years ago. Molecular clock analysis revealed an ancient and complex pattern of hemocyanin subunit evolution in Malacostraca and also allowed dating divergence times of malacostracan taxa.
引用
收藏
页码:1235 / 1245
页数:11
相关论文
共 58 条
[41]  
Martin J.W., 2001, UPDATED CLASSIFICATI
[42]  
Menze MA, 2001, J EXP BIOL, V204, P1033
[43]   STRUCTURE AND FUNCTION OF HEMOCYANIN FROM THALASSINID SHRIMP [J].
MILLER, KI ;
ELDRED, NW ;
ARISAKA, F ;
VANHOLDE, KE .
JOURNAL OF COMPARATIVE PHYSIOLOGY, 1977, 115 (02) :171-184
[44]  
Nicholas KB., 1997, EMBnet news, V4, P14, DOI DOI 10.11118/ACTAUN201361041061
[45]  
Nielsen H, 1997, Int J Neural Syst, V8, P581, DOI 10.1142/S0129065797000537
[46]   The occurrence of hemocyanin in Hexapoda [J].
Pick, Christian ;
Schneuer, Marco ;
Burmester, Thorsten .
FEBS JOURNAL, 2009, 276 (07) :1930-1941
[47]   r8s: inferring absolute rates of molecular evolution and divergence times in the absence of a molecular clock [J].
Sanderson, MJ .
BIOINFORMATICS, 2003, 19 (02) :301-302
[48]  
SCHONENBERGER N, 1980, CELL TISSUE RES, V205, P397
[49]   RAxML-VI-HPC: Maximum likelihood-based phylogenetic analyses with thousands of taxa and mixed models [J].
Stamatakis, Alexandros .
BIOINFORMATICS, 2006, 22 (21) :2688-2690
[50]   THE QUATERNARY STRUCTURE OF 4 CRUSTACEAN 2-HEXAMERIC HEMOCYANINS - IMMUNOCORRELATION, STOICHIOMETRY, REASSEMBLY AND TOPOLOGY OF INDIVIDUAL SUBUNITS [J].
STOCKER, W ;
RAEDER, U ;
BIJLHOLT, MMC ;
WICHERTJES, T ;
VANBRUGGEN, EFJ ;
MARKL, J .
JOURNAL OF COMPARATIVE PHYSIOLOGY B-BIOCHEMICAL SYSTEMIC AND ENVIRONMENTAL PHYSIOLOGY, 1988, 158 (03) :271-289