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Girrbach Dental blue native page experiments
Diagram comparing Pmt complex formation in A. nidulans and S. <t>cerevisiae</t> (adapted from Girrbach and Strahl) . In S. cerevisiae Pmt1 forms heteromeric complexes with Pmt2 and Pmt4 forms homomeric complexes. Pmt1 forms heteromeric complexes with Pmt3 (subfamily 2) in the absence of Pmt2, while Pmt2 forms heteromeric complexes with Pmt5 (subfamily 1) in the absence of Pmt1. In A. nidulans PmtB (subfamily 1) forms heteromeric complexes with PmtA (subfamily 2) and with PmtC (subfamily 4). PmtA (subfamily 2) forms heteromeric complexes with PmtC (subfamily 4). PmtC (subfamily 4) forms homomeric complexes. Ovals indicate Pmt1 subfamily. Diamonds indicate Pmt2 subfamily. Pentagons indicate Pmt4 subfamily.
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Diagram comparing Pmt complex formation in A. nidulans and S. <t>cerevisiae</t> (adapted from Girrbach and Strahl) . In S. cerevisiae Pmt1 forms heteromeric complexes with Pmt2 and Pmt4 forms homomeric complexes. Pmt1 forms heteromeric complexes with Pmt3 (subfamily 2) in the absence of Pmt2, while Pmt2 forms heteromeric complexes with Pmt5 (subfamily 1) in the absence of Pmt1. In A. nidulans PmtB (subfamily 1) forms heteromeric complexes with PmtA (subfamily 2) and with PmtC (subfamily 4). PmtA (subfamily 2) forms heteromeric complexes with PmtC (subfamily 4). PmtC (subfamily 4) forms homomeric complexes. Ovals indicate Pmt1 subfamily. Diamonds indicate Pmt2 subfamily. Pentagons indicate Pmt4 subfamily.
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Cleaver Scientific blue native page
Diagram comparing Pmt complex formation in A. nidulans and S. <t>cerevisiae</t> (adapted from Girrbach and Strahl) . In S. cerevisiae Pmt1 forms heteromeric complexes with Pmt2 and Pmt4 forms homomeric complexes. Pmt1 forms heteromeric complexes with Pmt3 (subfamily 2) in the absence of Pmt2, while Pmt2 forms heteromeric complexes with Pmt5 (subfamily 1) in the absence of Pmt1. In A. nidulans PmtB (subfamily 1) forms heteromeric complexes with PmtA (subfamily 2) and with PmtC (subfamily 4). PmtA (subfamily 2) forms heteromeric complexes with PmtC (subfamily 4). PmtC (subfamily 4) forms homomeric complexes. Ovals indicate Pmt1 subfamily. Diamonds indicate Pmt2 subfamily. Pentagons indicate Pmt4 subfamily.
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Spirig Pharma AG blue native page
Diagram comparing Pmt complex formation in A. nidulans and S. <t>cerevisiae</t> (adapted from Girrbach and Strahl) . In S. cerevisiae Pmt1 forms heteromeric complexes with Pmt2 and Pmt4 forms homomeric complexes. Pmt1 forms heteromeric complexes with Pmt3 (subfamily 2) in the absence of Pmt2, while Pmt2 forms heteromeric complexes with Pmt5 (subfamily 1) in the absence of Pmt1. In A. nidulans PmtB (subfamily 1) forms heteromeric complexes with PmtA (subfamily 2) and with PmtC (subfamily 4). PmtA (subfamily 2) forms heteromeric complexes with PmtC (subfamily 4). PmtC (subfamily 4) forms homomeric complexes. Ovals indicate Pmt1 subfamily. Diamonds indicate Pmt2 subfamily. Pentagons indicate Pmt4 subfamily.
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Blackwell Science Ltd blue native page
Diagram comparing Pmt complex formation in A. nidulans and S. <t>cerevisiae</t> (adapted from Girrbach and Strahl) . In S. cerevisiae Pmt1 forms heteromeric complexes with Pmt2 and Pmt4 forms homomeric complexes. Pmt1 forms heteromeric complexes with Pmt3 (subfamily 2) in the absence of Pmt2, while Pmt2 forms heteromeric complexes with Pmt5 (subfamily 1) in the absence of Pmt1. In A. nidulans PmtB (subfamily 1) forms heteromeric complexes with PmtA (subfamily 2) and with PmtC (subfamily 4). PmtA (subfamily 2) forms heteromeric complexes with PmtC (subfamily 4). PmtC (subfamily 4) forms homomeric complexes. Ovals indicate Pmt1 subfamily. Diamonds indicate Pmt2 subfamily. Pentagons indicate Pmt4 subfamily.
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Millar Inc blue native page
Diagram comparing Pmt complex formation in A. nidulans and S. <t>cerevisiae</t> (adapted from Girrbach and Strahl) . In S. cerevisiae Pmt1 forms heteromeric complexes with Pmt2 and Pmt4 forms homomeric complexes. Pmt1 forms heteromeric complexes with Pmt3 (subfamily 2) in the absence of Pmt2, while Pmt2 forms heteromeric complexes with Pmt5 (subfamily 1) in the absence of Pmt1. In A. nidulans PmtB (subfamily 1) forms heteromeric complexes with PmtA (subfamily 2) and with PmtC (subfamily 4). PmtA (subfamily 2) forms heteromeric complexes with PmtC (subfamily 4). PmtC (subfamily 4) forms homomeric complexes. Ovals indicate Pmt1 subfamily. Diamonds indicate Pmt2 subfamily. Pentagons indicate Pmt4 subfamily.
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Consis Medical Ltd blue native-page
Diagram comparing Pmt complex formation in A. nidulans and S. <t>cerevisiae</t> (adapted from Girrbach and Strahl) . In S. cerevisiae Pmt1 forms heteromeric complexes with Pmt2 and Pmt4 forms homomeric complexes. Pmt1 forms heteromeric complexes with Pmt3 (subfamily 2) in the absence of Pmt2, while Pmt2 forms heteromeric complexes with Pmt5 (subfamily 1) in the absence of Pmt1. In A. nidulans PmtB (subfamily 1) forms heteromeric complexes with PmtA (subfamily 2) and with PmtC (subfamily 4). PmtA (subfamily 2) forms heteromeric complexes with PmtC (subfamily 4). PmtC (subfamily 4) forms homomeric complexes. Ovals indicate Pmt1 subfamily. Diamonds indicate Pmt2 subfamily. Pentagons indicate Pmt4 subfamily.
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Diagram comparing Pmt complex formation in A. nidulans and S. cerevisiae (adapted from Girrbach and Strahl) . In S. cerevisiae Pmt1 forms heteromeric complexes with Pmt2 and Pmt4 forms homomeric complexes. Pmt1 forms heteromeric complexes with Pmt3 (subfamily 2) in the absence of Pmt2, while Pmt2 forms heteromeric complexes with Pmt5 (subfamily 1) in the absence of Pmt1. In A. nidulans PmtB (subfamily 1) forms heteromeric complexes with PmtA (subfamily 2) and with PmtC (subfamily 4). PmtA (subfamily 2) forms heteromeric complexes with PmtC (subfamily 4). PmtC (subfamily 4) forms homomeric complexes. Ovals indicate Pmt1 subfamily. Diamonds indicate Pmt2 subfamily. Pentagons indicate Pmt4 subfamily.

Journal: FEBS Open Bio

Article Title: Aspergillus nidulans Pmts form heterodimers in all pairwise combinations

doi: 10.1016/j.fob.2014.03.006

Figure Lengend Snippet: Diagram comparing Pmt complex formation in A. nidulans and S. cerevisiae (adapted from Girrbach and Strahl) . In S. cerevisiae Pmt1 forms heteromeric complexes with Pmt2 and Pmt4 forms homomeric complexes. Pmt1 forms heteromeric complexes with Pmt3 (subfamily 2) in the absence of Pmt2, while Pmt2 forms heteromeric complexes with Pmt5 (subfamily 1) in the absence of Pmt1. In A. nidulans PmtB (subfamily 1) forms heteromeric complexes with PmtA (subfamily 2) and with PmtC (subfamily 4). PmtA (subfamily 2) forms heteromeric complexes with PmtC (subfamily 4). PmtC (subfamily 4) forms homomeric complexes. Ovals indicate Pmt1 subfamily. Diamonds indicate Pmt2 subfamily. Pentagons indicate Pmt4 subfamily.

Article Snippet: Girrbach and Strahl reported similar double band patterns in S. cerevisiae blue native PAGE experiments with the higher bands resulting from heteromeric PMT complex formation .

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