API5-FGF2 complex: Difference between revisions

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==Crystal Structure of API5-FGF2 Complex==
<scene name='10/1096856/Fgf2_binding_residues/2'>Text To Be Displayed</scene>==Crystal Structure of API5-FGF2 Complex==
<StructureSection load='6L4O ' size='340' side='right' caption='Crystal structure of API5-FGF2 complex' scene=''>
<StructureSection load='6L4O ' size='340' side='right' caption='Crystal structure of API5-FGF2 complex' scene=''>
BI3323-Aug2025
BI3323-Aug2025
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== Functions of API5 and FGF2 ==
== Functions of API5 and FGF2 ==<scene name='10/1096856/Fgf2_binding_residues/2'>Text To Be Displayed</scene>


<font color='maroon'>Apoptosis</font>, a highly regulated programmed cell death process, is important in maintaining tissue homeostasis and eliminating damaged or potentially abnormal cells. Various pro- and anti-apoptotic proteins regulate apoptosis. Api5, [[3v6a]],<font color='pink'>(Apoptosis Inhibitor 5)</font> is an anti-apoptotic protein which is known to inhibit cell death by various methods, which includes Api5-FGF2 mediated [[Bim]] (pro-apoptotic protein) degradation <ref>DOI 10.3390/biom14010136</ref>.  
<font color='maroon'>Apoptosis</font>, a highly regulated programmed cell death process, is important in maintaining tissue homeostasis and eliminating damaged or potentially abnormal cells. Various pro- and anti-apoptotic proteins regulate apoptosis. Api5, [[3v6a]],<font color='pink'>(Apoptosis Inhibitor 5)</font> is an anti-apoptotic protein which is known to inhibit cell death by various methods, which includes Api5-FGF2 mediated [[Bim]] (pro-apoptotic protein) degradation <ref>DOI 10.3390/biom14010136</ref>.  
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The API5–FGF2 interface is dominated by <font color='purple'>electrostatic interactions</font>, as supported by the surface charge patterns and the salt-sensitive reduction of binding. A total of twenty API5 residues and fourteen FGF2 residues make direct contact. Among them, <scene name='10/1096856/Api5_binding_residues/1'>seven</scene> highly conserved, mainly <font color='blue'>negatively charged</font> API5 residues: Asp145, Glu184, Asp185, Glu190, Glu219, Asp222, and Arg237, form <font color='orange'>hydrogen bonds</font> or <font color='orange'>salt bridges</font> with FGF2. These residues lie on the “convex” central region of API5 that links its HEAT (α1–α11) and ARM-like (α12–α19) helical repeats.
The API5–FGF2 interface is dominated by <font color='purple'>electrostatic interactions</font>, as supported by the surface charge patterns and the salt-sensitive reduction of binding. A total of twenty API5 residues and fourteen FGF2 residues make direct contact. Among them, <scene name='10/1096856/Api5_binding_residues/1'>seven</scene> highly conserved, mainly <font color='blue'>negatively charged</font> API5 residues: Asp145, Glu184, Asp185, Glu190, Glu219, Asp222, and Arg237, form <font color='orange'>hydrogen bonds</font> or <font color='orange'>salt bridges</font> with FGF2. These residues lie on the “convex” central region of API5 that links its HEAT (α1–α11) and ARM-like (α12–α19) helical repeats.


<scene name='10/1096856/Fgf2_binding_residues/1'>Seven</scene> <font color='red'>positively charged</font>  surface residues of FGF2: Asn169 in the β1–β2 loop, Arg223 in β7, Arg262 and Thr263 in the β10–β11 loop, Lys267 in β11, and Lys271 and Lys277 in the β11–β12 loop, form <font color='orange'>hydrogen bonds</font> or <font color='orange'>salt bridges</font> with Api5.
<scene name='10/1096856/Fgf2_binding_residues/2'>Seven</scene><font color='red'>positively charged</font>  surface residues of FGF2: Asn169 in the β1–β2 loop, Arg223 in β7, Arg262 and Thr263 in the β10–β11 loop, Lys267 in β11, and Lys271 and Lys277 in the β11–β12 loop, form <font color='orange'>hydrogen bonds</font> or <font color='orange'>salt bridges</font> with Api5.


Seven additional <scene name='10/1096856/Fgf2_bindingresidue_additional/1'>FGF2 residues</scene> (Gly170, Arg181, Lys261, Gln265, Tyr266, Leu268, and Ala278) together with thirteen <scene name='10/1096856/Api5_bindingresidue_additional/1'>Api5 residues</scene> (Gly143, Glu144, Arg148, Leu183, Val186, Thr187, Gly188, Gln220, Glu224, Gln225, Asn228, Ser230, and Asp231) create a secondary contact surface that further stabilizes the API5–FGF2 interaction. API5−FGF2 interaction is also necessary for the nuclear localization of LMW FGF2.  
Seven additional <scene name='10/1096856/Fgf2_bindingresidue_additional/1'>FGF2 residues</scene> (Gly170, Arg181, Lys261, Gln265, Tyr266, Leu268, and Ala278) together with thirteen <scene name='10/1096856/Api5_bindingresidue_additional/1'>Api5 residues</scene> (Gly143, Glu144, Arg148, Leu183, Val186, Thr187, Gly188, Gln220, Glu224, Gln225, Asn228, Ser230, and Asp231) create a secondary contact surface that further stabilizes the API5–FGF2 interaction. API5−FGF2 interaction is also necessary for the nuclear localization of LMW FGF2.  

Revision as of 10:48, 1 December 2025

Text To Be Displayed==Crystal Structure of API5-FGF2 Complex==

Crystal structure of API5-FGF2 complex

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References

Proteopedia Page Contributors and Editors (what is this?)

Anagha Sharma Kyatanahalli Nagabhushana, Michal Harel