
We have cloned cytoplasmic intermediate filament (IF) proteins from a large number of invertebrate phyla using cDNA probes, the monoclonal antibody IFA, peptide sequence information, and various RT-PCR procedures. Novel IF protein sequences reported here include the urochordata and nine protostomic phyla, i.e., Annelida, Brachiopoda, Chaetognatha, Echiura, Nematomorpha, Nemertea, Platyhelminthes, Phoronida, and Sipuncula. Taken together with the wealth of data on IF proteins of vertebrates and the results on IF proteins of Cephalochordata, Mollusca, Annelida, and Nematoda, two IF prototypes emerge. The L-type, which includes 35 sequences from 11 protostomic phyla, shares with the nuclear lamins the long version of the coil 1b subdomain and, in most cases, a homology segment of some 120 residues in the carboxyterminal tail domain. The S-type, which includes all four subfamilies (types I to IV) of vertebrate IF proteins, lacks 42 residues in the coil 1b subdomain and the carboxyterminal lamin homology segment. Since IF proteins from all three phyla of the chordates have the 42-residue deletion, this deletion arose in a progenitor prior to the divergence of the chordates into the urochordate, cephalochordate, and vertebrate lineages, possibly already at the origin of the deuterostomic branch. Four phyla recently placed into the protostomia on grounds of their 18S rDNA sequences (Brachiopoda, Nemertea, Phoronida, and Platyhelminthes) show IF proteins of the L-type and fit by sequence identity criteria into the lophotrochozoic branch of the protostomia.
Base Sequence, Sequence Homology, Amino Acid, Protein Conformation, Reverse Transcriptase Polymerase Chain Reaction, Molecular Sequence Data, Nuclear Proteins, Invertebrates, Lamins, Evolution, Molecular, Intermediate Filament Proteins, Chordata, Nonvertebrate, Animals, Amino Acid Sequence, Cloning, Molecular, Phylogeny, DNA Primers
Base Sequence, Sequence Homology, Amino Acid, Protein Conformation, Reverse Transcriptase Polymerase Chain Reaction, Molecular Sequence Data, Nuclear Proteins, Invertebrates, Lamins, Evolution, Molecular, Intermediate Filament Proteins, Chordata, Nonvertebrate, Animals, Amino Acid Sequence, Cloning, Molecular, Phylogeny, DNA Primers
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