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==Your Heading Here (maybe something like 'Structure')== | ==Your Heading Here (maybe something like 'Structure')== | ||
<StructureSection load='1k86' size='340' side='right' caption='Structure of the active Caspase-7' scene='60/604484/Unicolour/1'> | <StructureSection load='1k86' size='340' side='right' caption='Structure of the active Caspase-7' scene='60/604484/Unicolour/1'> | ||
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<scene name='60/604484/Position_of_loops_l1/4'>L1</scene> is a part of the large subunit, while <scene name='60/604484/Position_of_the_l3_loops/3'>L3</scene> and <scene name='60/604484/Position_of_l4_loops/3'>L4</scene> belong to the small subunit of each monomer. These three loops will also participate in the formation of the catalytic site. | <scene name='60/604484/Position_of_loops_l1/4'>L1</scene> is a part of the large subunit, while <scene name='60/604484/Position_of_the_l3_loops/3'>L3</scene> and <scene name='60/604484/Position_of_l4_loops/3'>L4</scene> belong to the small subunit of each monomer. These three loops will also participate in the formation of the catalytic site. | ||
| - | The 23 last amino acids of the N-ter extremity of procaspase-7 define a | + | The 23 last amino acids of the N-ter extremity of procaspase-7 define a <scene name='60/604484/Prodomain/1'>"prodomain"</scene>. This prodomain is apparently implicated in an inhibitory mechanism that maintains the procaspase (or caspase) catalytically inactive until it is cleaved. The mechanism by which the prodomain could inhibit caspase-7 enzymatic activity is still unclear. |
=== Maturation === | === Maturation === | ||
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Procaspase-7 maturation is triggered by an initiator caspase (e.g. Caspase-9). This protein is able to cleave the <scene name='60/604484/Interdomain_of_a_monomer/2'>interdomain</scene> of each monomer of the Procaspase-7. An entire sequence, from Asp198 to Ala207 is removed, thus separating the <scene name='60/604484/Large_subunit_of_a_monomer/2'>large</scene> and <scene name='60/604484/Small_subunit_of_a_monomer/2'>small</scene> subunits of each monomer. | Procaspase-7 maturation is triggered by an initiator caspase (e.g. Caspase-9). This protein is able to cleave the <scene name='60/604484/Interdomain_of_a_monomer/2'>interdomain</scene> of each monomer of the Procaspase-7. An entire sequence, from Asp198 to Ala207 is removed, thus separating the <scene name='60/604484/Large_subunit_of_a_monomer/2'>large</scene> and <scene name='60/604484/Small_subunit_of_a_monomer/2'>small</scene> subunits of each monomer. | ||
| - | Another cleavage can occur at the N-term of the Procaspase-7 (Asp23), resulting in the release of the prodomain. However, it has been observed that this N-term prodomain removal is not systematically necessary to obtain the caspase catalytic activity, while it is a warranty step for other proteases. | + | Another cleavage can occur at the N-term of the Procaspase-7 (Asp23), resulting in the release of the <scene name='60/604484/Prodomain/1'>prodomain</scene>. However, it has been observed that this N-term prodomain removal is not systematically necessary to obtain the caspase catalytic activity, while it is a warranty step for other proteases. |
These modifications lead to the division of the <scene name='60/604484/Position_of_the_l2_loops/3'>L2 loop</scene> into two new loops : <scene name='60/604484/L2_loops_of_the_caspase-7/1'>L2</scene> and <scene name='60/604484/L2prime_loops_of_the_caspase-7/1'>L2'</scene>. As a result, L2 becomes the C-terminal domain of the large subunit and L2’, (a.k.a “the critical loop”) constitutes the N-terminal extremity of the small subunit. L2 changes its direction by 90°, while the L2’ loop remains folded and will only unfold once the substrate actually binds to the new formed operational catalytic groove. The main catalytic cysteine is harboured by this L2 loop and traverses the groove. | These modifications lead to the division of the <scene name='60/604484/Position_of_the_l2_loops/3'>L2 loop</scene> into two new loops : <scene name='60/604484/L2_loops_of_the_caspase-7/1'>L2</scene> and <scene name='60/604484/L2prime_loops_of_the_caspase-7/1'>L2'</scene>. As a result, L2 becomes the C-terminal domain of the large subunit and L2’, (a.k.a “the critical loop”) constitutes the N-terminal extremity of the small subunit. L2 changes its direction by 90°, while the L2’ loop remains folded and will only unfold once the substrate actually binds to the new formed operational catalytic groove. The main catalytic cysteine is harboured by this L2 loop and traverses the groove. | ||
Revision as of 15:45, 9 January 2015
Your Heading Here (maybe something like 'Structure')
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