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Published on: May 3, 2018
Molecular cloning, sequence, and expression of a cDNA encoding the chicken myristoylated alanine-rich C kinase
J M Graff1, D J Stumpo, P J Blackshear
1Howard Hughes Medical Institute Laboratories, Durham, North Carolina 27710.
Abstract:
Little is known about the important cellular substrates for protein kinase C (PKC) and their function in the cellular processes influenced by this kinase. This paper describes the molecular characteristics of a prominent cellular substrate for PKC in chicken cells, known as the myristoylated alanine-rich C kinase substrate, or MARCKS protein. The chicken protein was studied because it was apparently at least 20 kilodalton smaller than its mammalian counterpart; we hoped that regions of sequence similarity might point to conserved regions of biological importance. Using the bovine MARCKS cDNA as a probe, we selected a positive clone from a chicken brain cDNA library that contained an insert of about 1.5 kilobase, in which a single open reading frame encoded a protein of 281 amino acids, 27.7 kilodaltons, pI 5.26. This protein contained the sequences of ten tryptic peptides derived from the purified chicken brain protein. Expression of the cDNA insert in mammalian cells confirmed that the open reading frame encoded a protein that comigrated on two-dimensional electrophoresis with the authentic chicken protein, and could be phosphorylated by exposure of the cells to active phorbol esters. When the chicken and bovine protein sequences were compared, the two major regions of sequence identity were: 1) the amino terminal region containing a myristoylation consensus sequence and an mRNA splice site, and 2) a highly basic internal domain of 25 amino acids that contained all of the serines known to be phosphorylated by PKC in the intact protein. These conserved regions are likely to represent domains of some functional importance for this widely distributed cellular substrate for PKC.
Insights
Researchers characterized the chicken myristoylated alanine-rich C kinase substrate (MARCKS) protein, a key substrate for protein kinase C (PKC). Conserved regions identified in chicken and bovine MARCKS suggest functional importance in cellular processes.
Area of Science:
- Molecular biology
- Cellular signaling
Background:
- Protein kinase C (PKC) plays a role in cellular processes, but its substrates are not well understood.
- The myristoylated alanine-rich C kinase substrate (MARCKS) protein is a prominent PKC substrate.
Purpose of the Study:
- To characterize the molecular properties of the chicken MARCKS protein.
- To identify conserved functional domains by comparing chicken and bovine MARCKS sequences.
Main Methods:
- Screening a chicken brain cDNA library using a bovine MARCKS cDNA probe.
- Sequencing and analyzing the identified chicken MARCKS cDNA.
- Expressing the chicken MARCKS cDNA in mammalian cells for characterization.
- Comparing chicken and bovine MARCKS protein sequences.
Main Results:
- A chicken MARCKS cDNA clone was isolated, encoding a 27.7 kDa protein with a pI of 5.26.
- Expressed chicken MARCKS comigrated with the authentic protein and was phosphorylated by phorbol esters.
- Sequence comparison revealed conserved amino-terminal and highly basic internal domains between chicken and bovine MARCKS.
Conclusions:
- The identified conserved regions in MARCKS protein likely indicate functional importance.
- This study provides molecular insights into a key substrate of protein kinase C.
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