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Links from Structure

Items: 12

1.
Molecular Structure Image for pfam01496

V_ATPase_I: V-type ATPase 116kDa subunit family

This family consists of the 116kDa V-type ATPase (vacuolar (H+)-ATPases) subunits, as well as V-type...

Accession:
pfam01496
ID:
460232
2.
Molecular Structure Image for pfam01992

vATP-synt_AC39: ATP synthase (C/AC39) subunit

This family includes the AC39 subunit from vacuolar ATP synthase, and the C subunit from archaebacte...

3.
Molecular Structure Image for pfam01991

vATP-synt_E: ATP synthase (E/31 kDa) subunit

This family includes the vacuolar ATP synthase E subunit, as well as the archaebacterial ATP synthas...

4.
Molecular Structure Image for cd18176

ATP-synt_Vo_c_ATP6C_rpt2: V-type proton ATPase 16 kDa proteolipid subunit (ATP6C/ATP6V0C/ATP6L/ATPL) and similar proteins

ATP6C (also called V-ATPase 16 kDa proteolipid subunit, or vacuolar proton pump 16 kDa proteolipid s...

5.
Molecular Structure Image for TIGR01042

V-ATPase_V1_A: V-type (H+)-ATPase V1, A subunit

This models eukaryotic vacuolar (H+)-ATPase that is responsible for acidifying cellular compartments...

6.
Molecular Structure Image for TIGR01040

V-ATPase_V1_B: V-type (H+)-ATPase V1, B subunit

This models eukaryotic vacuolar (H+)-ATPase that is responsible for acidifying cellular compartments...

9.
Molecular Structure Image for TIGR01147

V_ATP_synt_G: vacuolar ATP synthase, subunit G

This model describes the vacuolar ATP synthase G subunit in eukaryotes and includes members from div...

10.
Molecular Structure Image for TIGR01101

V_ATP_synt_F: vacuolar ATP synthase F subunit

This model describes the vacuolar ATP synthase F subunit (14 kDa subunit) in eukaryotes. In some arc...

11.
Molecular Structure Image for TIGR01100

V_ATP_synt_C: vacuolar ATP synthase 16 kDa proteolipid subunit

This model describes the vacuolar ATP synthase 16 kDa proteolipid subunit in eukaryotes and includes...

12.
Molecular Structure Image for TIGR00309

V_ATPase_subD: H(+)-transporting ATP synthase, vacuolar type, subunit D

Although this ATPase can run backwards, using a proton gradient to synthesize ATP, the primary biolo...

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