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The Ca2+-binding protein parvalbumin: molecular cloning and developmental regulation of mRNA abundance
Abstract:
Parvalbumin (PV) is a Ca2+-binding protein found only in vertebrates. It is postulated to serve as a soluble relaxing factor in fast mammalian muscle. We have isolated a rat PV cDNA clone and used this as a probe to examine changes in PV mRNA during muscle and brain development. A cDNA library was constructed in PUC8/PUC9 plasmid vectors from adult poly(A)+ RNA isolated from rat gastrocnemius muscle. The library was screened with a 17-mer oligonucleotide encoding amino acids 28-33 of rat PV. One recombinant (9f) was confirmed as a PV clone by DNA sequencing and was shown to contain 73% of the protein coding sequence. Hybridization of clone 9f to RNA separated by electrophoresis revealed two species 700 and 1100 nucleotides long but genomic blotting indicates that PV may be a single copy gene. Highest levels of PV mRNA are found in the gastrocnemius, which is a fast contracting/relaxing muscle. Skin contains the next highest amount of PV mRNA followed, in order, by brain and the slow twitch soleus muscle. Rat muscle PV mRNA levels increase 15- to 20-fold between postnatal days 4 and 20 as measured by dot blot hybridization of total RNA, whereas only a slight increase was observed when young and adult brains were compared. The changes in PV mRNA during development appear to be selective, because mRNA coding for the structurally homologous Ca2+-binding protein calmodulin (CaM) was found to change only slightly in muscle. However, CaM mRNA levels decrease during the early days of brain ontogeny. Thus, the mRNAs that encode the homologous Ca2+-binding proteins PV and CaM appear to be developmentally regulated in a tissue-specific manner.
Insights
Parvalbumin (PV) mRNA levels significantly increase in developing rat fast-twitch muscle but not brain. This suggests PV expression is tissue-specific during development, unlike calmodulin (CaM) mRNA.
Area of Science:
- Biochemistry
- Molecular Biology
- Neuroscience
Background:
- Parvalbumin (PV) is a vertebrate calcium-binding protein.
- PV is hypothesized to function as a relaxing factor in fast-twitch mammalian muscle.
Purpose of the Study:
- To investigate the developmental regulation of Parvalbumin (PV) mRNA in rat tissues.
- To compare PV mRNA expression patterns with calmodulin (CaM) mRNA during development.
Main Methods:
- Isolation of a rat PV cDNA clone from gastrocnemius muscle.
- Screening of a cDNA library and confirmation via DNA sequencing.
- Analysis of PV mRNA levels using Northern and dot blot hybridization.
Main Results:
- PV mRNA is most abundant in fast-twitch gastrocnemius muscle, followed by skin, brain, and slow-twitch soleus muscle.
- PV mRNA levels increase 15-20 fold in muscle from postnatal day 4 to 20.
- PV mRNA shows minimal change in the brain during development, contrasting with CaM mRNA which decreases in the brain.
Conclusions:
- PV mRNA expression is developmentally regulated in a tissue-specific manner.
- The distinct expression patterns of PV and CaM mRNA highlight their specialized roles.
- Vertebrate PV plays a significant role in fast-contracting muscle development.