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The C-terminal domain of Mnk1a plays a dual role in tightly regulating its activity

The C-terminal domain of Mnk1a plays a dual role in tightly regulating its activity
The C-terminal domain of Mnk1a plays a dual role in tightly regulating its activity
The human family of MAP kinase signal-integrating kinases (Mnks) comprises four related proteins derived from two genes by alternative splicing. The Mnk1 gene gives rise to two proteins, Mnk1a and Mnk1b, which possess distinct C-termini and properties. Despite lacking the C-terminal MAP kinase-binding site, Mnk1b shows higher basal activity than Mnk1a.

In contrast, the activity of Mnk1a is tightly regulated by signalling through ERK and p38 MAP kinase. We show that the short C-terminus of Mnk1b confers on it a 'default' behaviour of substantial, but unregulated, activity. In contrast, the longer C-terminus of Mnk1a represses the basal activity and T (activation)-loop phosphorylation of this isozyme while allowing both properties to be stimulated by upstream MAP kinase signalling.

Two features of the C-terminus of Mnk1a appear to account for this behaviour: the known MAP kinase-binding site and a region (predicted to be alpha-helical) which occludes access to the catalytic domain and the T-loop. The activation of Mnk1a results in a marked conformational change leading to a more 'open' structure. We also identify a conserved phenylalanine in an Mnk-specific insert as playing a key role in governing the ease with which Mnk1a can be phosphorylated.

These studies help to identify the features that give rise to the diverse properties of human Mnk isoforms
eukaryotic initiation factor 4E (eIF4E), extracellular-signal-regulated kinase (ERK), mitogen-activated protein kinase signal-integrating kinase (Mnk), p38 mitogen-activated protein kinase (p38 MAPK), protein kinase.
1470-8728
279-290
Goto, Susan
ad74d15d-9ab6-48fc-8635-7d397743aad6
Yao, Zhong
d8e96a4a-a98d-47d3-96b8-efd459aa7a62
Proud, Christopher G.
59dabfc8-4b44-4be8-a17f-578a58550cb3
Goto, Susan
ad74d15d-9ab6-48fc-8635-7d397743aad6
Yao, Zhong
d8e96a4a-a98d-47d3-96b8-efd459aa7a62
Proud, Christopher G.
59dabfc8-4b44-4be8-a17f-578a58550cb3

Goto, Susan, Yao, Zhong and Proud, Christopher G. (2009) The C-terminal domain of Mnk1a plays a dual role in tightly regulating its activity. Biochemical Journal, 423 (2), 279-290. (doi:10.1042/BJ20090228).

Record type: Article

Abstract

The human family of MAP kinase signal-integrating kinases (Mnks) comprises four related proteins derived from two genes by alternative splicing. The Mnk1 gene gives rise to two proteins, Mnk1a and Mnk1b, which possess distinct C-termini and properties. Despite lacking the C-terminal MAP kinase-binding site, Mnk1b shows higher basal activity than Mnk1a.

In contrast, the activity of Mnk1a is tightly regulated by signalling through ERK and p38 MAP kinase. We show that the short C-terminus of Mnk1b confers on it a 'default' behaviour of substantial, but unregulated, activity. In contrast, the longer C-terminus of Mnk1a represses the basal activity and T (activation)-loop phosphorylation of this isozyme while allowing both properties to be stimulated by upstream MAP kinase signalling.

Two features of the C-terminus of Mnk1a appear to account for this behaviour: the known MAP kinase-binding site and a region (predicted to be alpha-helical) which occludes access to the catalytic domain and the T-loop. The activation of Mnk1a results in a marked conformational change leading to a more 'open' structure. We also identify a conserved phenylalanine in an Mnk-specific insert as playing a key role in governing the ease with which Mnk1a can be phosphorylated.

These studies help to identify the features that give rise to the diverse properties of human Mnk isoforms

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More information

Published date: 1 September 2009
Keywords: eukaryotic initiation factor 4E (eIF4E), extracellular-signal-regulated kinase (ERK), mitogen-activated protein kinase signal-integrating kinase (Mnk), p38 mitogen-activated protein kinase (p38 MAPK), protein kinase.

Identifiers

Local EPrints ID: 142723
URI: http://eprints.soton.ac.uk/id/eprint/142723
ISSN: 1470-8728
PURE UUID: bc3d065c-cb76-4af4-ab01-b0e1b30c45ca

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Date deposited: 01 Apr 2010 15:53
Last modified: 14 Mar 2024 00:41

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Contributors

Author: Susan Goto
Author: Zhong Yao
Author: Christopher G. Proud

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