Sandbox Reserved 965
From Proteopedia
(Difference between revisions)
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In the cytoplasm, caspases are not already, constitutively present in their active form. They exist as free cytoplasmic inactive precursors called procaspases. | In the cytoplasm, caspases are not already, constitutively present in their active form. They exist as free cytoplasmic inactive precursors called procaspases. | ||
- | Procaspase-7 is a homodimeric globular-303 amino-acids long polypeptide. This protein contains <scene name='60/604484/Two_monomers/1'>two monomers</scene>, representing two catalytic units. Each of these monomers is composed by a <scene name='60/604484/Central_beta_sheets/2'>central 6-stranded β-sheet</scene> and <scene name='60/604484/Alpha-helices/1'>5 α-helices</scene>, forming a <scene name='60/604484/Large_subunit_of_a_monomer/2'>large (20kDa)</scene> and a <scene name='60/604484/Small_subunit_of_a_monomer/2'>small (11kDa)</scene> subunit, linked by a <scene name='60/604484/Interdomain_of_a_monomer/2'>highly flexible interdomain</scene>. The homodimerization is performed thanks to hydrophobic interactions between the 6 β-strands of each monomer. This homodimer is organized in a “open α/β barrel fold”.<ref name= | + | Procaspase-7 is a homodimeric globular-303 amino-acids long polypeptide. This protein contains <scene name='60/604484/Two_monomers/1'>two monomers</scene>, representing two catalytic units. Each of these monomers is composed by a <scene name='60/604484/Central_beta_sheets/2'>central 6-stranded β-sheet</scene> and <scene name='60/604484/Alpha-helices/1'>5 α-helices</scene>, forming a <scene name='60/604484/Large_subunit_of_a_monomer/2'>large (20kDa)</scene> and a <scene name='60/604484/Small_subunit_of_a_monomer/2'>small (11kDa)</scene> subunit, linked by a <scene name='60/604484/Interdomain_of_a_monomer/2'>highly flexible interdomain</scene>. The homodimerization is performed thanks to hydrophobic interactions between the 6 β-strands of each monomer. This homodimer is organized in a “open α/β barrel fold”.<ref name= one >Chai, Jijie et al., Crystal Structure of a Procaspase-7 Zymogen,Cell , Volume 107 , Issue 3 , 399 - 407</ref> |
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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 "<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.<ref name= | + | 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.<ref name= two >DOI: 10.1016/j.biocel.2009.09.013</ref> |
=== Maturation === | === Maturation === |
Revision as of 21:40, 9 January 2015
Caspase-7
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