Immunolocalization and characterization of cornification proteins in snake epidermis

被引:27
作者
Alibardi, L [1 ]
Toni, M [1 ]
机构
[1] Univ Bologna, Dipartimento Biol Evoluzionist Sperimentale, I-40126 Bologna, Italy
来源
ANATOMICAL RECORD PART A-DISCOVERIES IN MOLECULAR CELLULAR AND EVOLUTIONARY BIOLOGY | 2005年 / 282A卷 / 02期
关键词
snake; epidermis; cornification proteins; autoradiography; immunocytochemistry; immunoblotting;
D O I
10.1002/ar.a.20153
中图分类号
R602 [外科病理学、解剖学]; R32 [人体形态学];
学科分类号
100101 ;
摘要
Little is known about specific proteins involved in keratinization of the epidermis of snakes, which is composed of alternating beta- and alpha-keratin layers. Using immunological techniques (immunocytochemistry and immunoblotting), the present study reports the presence in snake epidermis of proteins with epitopes that cross-react with certain mammalian cornification proteins (loricrin, filaggrin, sciellin, transglutaminase) and chick beta-keratin. alpha-keratins were found in all epidermal layers except in the hard beta- and alpha-layers. beta-keratins were exclusively present in the oberhautchen and beta-layer. After extraction and electrophoresis, alpha-keratins of 40-67 kDa in molecular weights were found. Loricrin-like proteins recorded molecular weights of 33, 50, and 58 kDa; sciellin, 55 and 62 kDa; filaggrin-like, 52 and 65 kDa; and transglutaminase, 45, 50, and 56 kDa. These results suggest that alpha-layers of snake epidermis utilize proteins with common epitopes to those present during cornification of mammalian epidermis. The beta-keratin antibody on extracts from whole snake epidermis showed a strong cross-reactive band at 13-16 kDa. No cross-reactivity was seen using an antibody against feather beta-keratin, indicating absence of a common epitope between snake and feather keratins. (C) 2005 Wiley-Liss, Inc.
引用
收藏
页码:138 / 146
页数:9
相关论文
共 45 条
[1]  
Alibardi L, 2000, J MORPHOL, V246, P179, DOI 10.1002/1097-4687(200012)246:3<179::AID-JMOR2>3.0.CO
[2]  
2-D
[3]   Putative histidin-rich proteins in the epidermis of lizards [J].
Alibardi, L ;
Maurizii, MG ;
Toni, M ;
Spisni, E ;
Taddei, C .
JOURNAL OF EXPERIMENTAL ZOOLOGY PART A-ECOLOGICAL AND INTEGRATIVE PHYSIOLOGY, 2003, 296A (01) :1-17
[4]   Epidermal differentiation during ontogeny and after hatching in the snake Liasis fuscus (Python']Pythonidae, Serpentes, Reptilia), with emphasis on the formation of the shedding complex [J].
Alibardi, L ;
Thompson, MB .
JOURNAL OF MORPHOLOGY, 2003, 256 (01) :29-41
[5]   Observations on the histochemistry and ultrastructure of the epidermis of the tuatara, Sphenodon punctatus (Sphenodontida, Lepidosauria, Reptilia):: A contribution to an understanding of the Lepidosaurian epidermal generation and the evolutionary origin of the squamate shedding complex [J].
Alibardi, L ;
Maderson, PFA .
JOURNAL OF MORPHOLOGY, 2003, 256 (02) :111-133
[6]   Immunocytochemical analysis of the process of keratinization of the epidermis of snakes [J].
Alibardi, L .
JOURNAL OF ZOOLOGY, 2002, 258 :541-552
[7]   Histidine uptake in the epidermis of lizards and snakes in relation to the formation of the shedding complex [J].
Alibardi, L .
JOURNAL OF EXPERIMENTAL ZOOLOGY, 2002, 292 (04) :331-344
[8]   Ultrastructure of the embryonic snake skin and putative role of histidine in the differentiation of the shedding complex [J].
Alibardi, L .
JOURNAL OF MORPHOLOGY, 2002, 251 (02) :149-168
[9]   Immunocytochemical analysis of beta (β) keratins in the epidermis of chelonians, lepidosaurians, and archosaurians [J].
Alibardi, L ;
Sawyer, RH .
JOURNAL OF EXPERIMENTAL ZOOLOGY, 2002, 293 (01) :27-38
[10]   Immunocytochemical and electrophoretic distribution of cytokeratins in the resting stage epidermis of the lizard Podarcis sicula [J].
Alibardi, L ;
Maurizii, M ;
Taddei, C .
JOURNAL OF EXPERIMENTAL ZOOLOGY, 2001, 289 (07) :409-418