The CPCFC cuticular protein family: Anatomical and cuticular locations in Anopheles gambiae and distribution throughout Pancrustacea

Insect Biochem Mol Biol. 2015 Oct:65:57-67. doi: 10.1016/j.ibmb.2015.07.002. Epub 2015 Jul 8.

Abstract

Arthropod cuticles have, in addition to chitin, many structural proteins belonging to diverse families. Information is sparse about how these different cuticular proteins contribute to the cuticle. Most cuticular proteins lack cysteine with the exception of two families (CPAP1 and CPAP3), recently described, and the one other that we now report on that has a motif of 16 amino acids first identified in a protein, Bc-NCP1, from the cuticle of nymphs of the cockroach, Blaberus craniifer (Jensen et al., 1997). This motif turns out to be present as two or three copies in one or two proteins in species from many orders of Hexapoda. We have named the family of cuticular proteins with this motif CPCFC, based on its unique feature of having two cysteines interrupted by five amino acids (C-X(5)-C). Analysis of the single member of the family in Anopheles gambiae (AgamCPCFC1) revealed that its mRNA is most abundant immediately following ecdysis in larvae, pupae and adults. The mRNA is localized primarily in epidermis that secretes hard cuticle, sclerites, setae, head capsules, appendages and spermatheca. EM immunolocalization revealed the presence of the protein, generally in endocuticle of legs and antennae. A phylogenetic analysis found proteins bearing this motif in 14 orders of Hexapoda, but not in some species for which there are complete genomic data. Proteins were much longer in Coleoptera and Diptera than in other orders. In contrast to the 1 and occasionally 2 copies in other species, a dragonfly, Ladona fulva, has at least 14 genes coding for family members. CPCFC proteins were present in four classes of Crustacea with 5 repeats in one species, and motifs that ended C-X(7)-C in Malacostraca. They were not detected, except as obvious contaminants, in any other arthropod subphyla or in any other phylum. The conservation of CPCFC proteins throughout the Pancrustacea and the small number of copies in individual species indicate that, when present, these proteins are serving important functions worthy of further study.

Keywords: Arthropod phylogeny; Cuticle; EM immunolocalization; In situ hybridization; RT-qPCR.

Publication types

  • Research Support, N.I.H., Extramural

MeSH terms

  • Animals
  • Anopheles / anatomy & histology
  • Anopheles / chemistry*
  • Anopheles / genetics
  • Anopheles / metabolism
  • Arthropod Proteins / chemistry
  • Arthropod Proteins / genetics
  • Arthropod Proteins / metabolism*
  • Crustacea / chemistry
  • Crustacea / genetics
  • Crustacea / metabolism*
  • Epidermis / chemistry
  • Epidermis / metabolism*
  • Insecta / chemistry
  • Insecta / genetics
  • Insecta / metabolism*
  • Larva / metabolism
  • Molting
  • Nymph / metabolism
  • Phylogeny
  • Protein Structure, Tertiary
  • RNA, Messenger / metabolism

Substances

  • Arthropod Proteins
  • RNA, Messenger