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D J Zezza

Publications and source records attributed to D J Zezza.

4 recordsLinked to original sources

Genes encoding Xenopus laevis Ig L chains. Implications for the evolution of kappa and lambda chains.

Xenopus laevis Ig contain two distinct types of L chains, designated rho or L1 and sigma or L2. We have analyzed Xenopus genomic DNA by Southern blotting with cDNA probes specific for L1 V and C regions. Many fragments hybridized to the V probe, but only one or two fragments hybridized to the C probe. Corresponding C, J, and V gene segments were identified on clones isolated from a genomic library prepared from the same DNA. One clone contains a C gene segment separated from a J gene segment by an intron of 3.4 kb. The J and C gene segments are nearly identical in sequence to cDNA clones analyzed previously. The C segment is somewhat more similar and the J segment considerably more similar in sequence to the corresponding segments of mammalian kappa chains than to those of mammalian lambda chains. Upstream of the J segment is a typical recombination signal sequence with a spacer of 23 bp, as in J kappa. A second clone from the library contains four V gene segments, separated by 2.1 to 3.6 kb. Two of these, V1 and V3, have the expected structural and regulatory features of V genes, and are very similar in sequence to each other and to mammalian V kappa. A third gene segment, V2, resembles V1 and V3 in its coding region and nearby 5'-flanking region, but diverges in sequence 5' to position -95 with loss of the octamer promoter element. The fourth V-like segment is similar to the others at the 3'-end, but upstream of codon 64 bears no resemblance in sequence to any Ig V region. All four V segments have typical recombination signal sequences with 12-bp spacers at their 3'-ends, as in V kappa. Taken together, the data suggest that Xenopus L1 L chain genes are members of the kappa gene family.

Amino Acid Sequence↗

Sequence of C region of L chains from Xenopus laevis Ig.

A cDNA expression library, prepared from Xenopus laevis splenocytes, was screened with antibodies to Xenopus Ig. One clone, lambda XIg23, reacted with antibodies to IgY and to IgM; the insert hybridized to approximately 1.3-kb RNA from spleen, the approximate size expected for L chain mRNA. An additional clone, lambda XIg31, was identified by cross-hybridization. The inserts of lambda XIg23 and lambda XIg31 begin in the third framework region of the V region and extend through the C region to the poly(A) tail. Except for a single nucleotide difference, the two C region sequences are identical. The amino acid sequence of the C region was compared with the sequences of a variety of C kappa and C lambda, as well as to C region sequences of L chains from Rana catesbeiana and from two species of shark. The Xenopus C region resembles mouse and human C kappa slightly more than C lambda. The similarity of the Xenopus and Rana C regions to each other is approximately the same as that of either amphibian sequence to mammalian CL. The data are discussed in terms of the evolution of kappa and lambda C regions.

Amino Acid Sequence↗

The localization of a tcRNA102 gene near the 3' OH terminus of a fast myosin heavy chain gene. A comparison between normal and dystrophic chickens.

Two genomic fragments were isolated from a normal and a dystrophic library containing the 3'OH terminus of the fast isoform of myosin heavy chain gene. Restriction map analysis confirmed that the genes were similar. The sequences coding for myosin were defined and shown to be the same in each genomic fragment. However, using a cDNA clone for tcRNA102 and two specific oligomers for tcRNA102 sequences, we determined that only the genomic fragment from normal chick contained homologous sequences to tcRNA102. Dystrophic chick DNA did not contain these regions of homology. In addition, the normal genomic fragment transcribes tcRNA102 in vitro via RNA polymerase III while the corresponding fragment of DNA from dystrophic chick was inactive. These results suggest that there are detectable differences between the normal and dystrophic genomes in this regard.

Animals↗

Analysis of tcRNA102 associated with myosin heavy chain-mRNPs in control and dystrophic chick pectoralis muscle.

Translational control RNA (tcRNA102) is closely associated with nonpolysomal myosin heavy chain-mRNA in mRNP particles. The nucleotide sequence of tcRNA102 has revealed a heterogeneity at the 3' end. This heterogeneity is mostly with regard to an ambiguity between adenine and guanine residues. tcRNA102 (obtained from pectoralis muscle) runs as a single band on denaturing acrylamide gels. When this band is extracted and rerun on a native gel at low voltage, two individual bands appear (A the slower moving and B the faster moving). From the partial RNase U2 sequence analysis and our previous sequence determinations (McCarthy, T. L., Siegel, E., Mrockowski, B., and Heywood, S. M. (1983) Biochemistry 22, 935-941), we may now assign tcRNA102 (A) the 3'-terminal sequence ... GGUUGGACGG-3' and tcRNA102(B) and 3' terminal sequence ... GAUUAAGCAA-3'. Analysis of the tcRNA102s indicates that dystrophic pectoralis muscle contains much less tcRNA102 than a similar preparation from control muscle. The tcRNA102 found in dystrophic pectoralis muscle is of the "A" type while normal pectoralis muscle contains predominantly the "B" type. In addition, control leg muscle from dystrophic chick contains predominantly "B" type. These results suggest that the differences observed at the DNA level (see accompanying paper, Zezza, D. J., and Heywood, S. M. (1986) J. Biol. Chem. 261, 7455-7460) may be reflected in the RNA transcripts.

Animals↗