Xenopus embryos contain a considerable amount of a polysialo-ganglioside not yet fully characterized; in this paper, we will refer to it as ganglioside X1. Preliminary experiments indicate asialo-GM1 as the core structure of the ganglioside X1 and palmitic and oleic acid as the fatty acids of the ceramide moiety. Further analyses by comparative 2D-TLC with adult fish and chick embryo brains indicate the pentasialilated ganglioside GP1c as the possible structure of X1. In the adult Xenopus, X1 characterizes the ganglioside pattern of the central nervous system while is absent in all the other tested tissues. At least two other more polar (presumably richer in sialic acid) bands are often visible under X1, both in embryos and in brain and spinal cord tissues of adult Xenopus. The persistence of polysialo-gangliosides in the brain and spinal cord of adult amphibians could serve to guarantee a proper functioning of the central nervous system at low body temperature.

Tissue and developmental specificity of a polysialo-ganglioside species in the amphibian Xenopus / G. Bernardini, A.M. Rizzo, R. Gornati, F. Rossi, B. Berra. - In: CELL BIOLOGY INTERNATIONAL. - ISSN 1065-6995. - 20:10(1996), pp. 667-672.

Tissue and developmental specificity of a polysialo-ganglioside species in the amphibian Xenopus

A.M. Rizzo;B. Berra
1996

Abstract

Xenopus embryos contain a considerable amount of a polysialo-ganglioside not yet fully characterized; in this paper, we will refer to it as ganglioside X1. Preliminary experiments indicate asialo-GM1 as the core structure of the ganglioside X1 and palmitic and oleic acid as the fatty acids of the ceramide moiety. Further analyses by comparative 2D-TLC with adult fish and chick embryo brains indicate the pentasialilated ganglioside GP1c as the possible structure of X1. In the adult Xenopus, X1 characterizes the ganglioside pattern of the central nervous system while is absent in all the other tested tissues. At least two other more polar (presumably richer in sialic acid) bands are often visible under X1, both in embryos and in brain and spinal cord tissues of adult Xenopus. The persistence of polysialo-gangliosides in the brain and spinal cord of adult amphibians could serve to guarantee a proper functioning of the central nervous system at low body temperature.
embryo; brain; glycolipid; chick; fish
Settore BIO/10 - Biochimica
1996
Article (author)
File in questo prodotto:
Non ci sono file associati a questo prodotto.
Pubblicazioni consigliate

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/686424
Citazioni
  • ???jsp.display-item.citation.pmc??? 1
  • Scopus 3
  • ???jsp.display-item.citation.isi??? 3
social impact