@embo.org YIP
@molbiolau.bsky.social
@embo.org YIP
@molbiolau.bsky.social
LAX3 turns out to be a very high affinity importer with a Km in the nanomolar range, as compared to the PIN exporters that have a Km in the micromolar range.
LAX3 turns out to be a very high affinity importer with a Km in the nanomolar range, as compared to the PIN exporters that have a Km in the micromolar range.
We managed to get 4 structures in 3 different conformational states with 3 different substrates and inhibitors.😅🤩
We managed to get 4 structures in 3 different conformational states with 3 different substrates and inhibitors.😅🤩
This paper target how AUX/LAX proteins recognize auxin and drive import. We use the protein LAX3 for this purpose, central for development of lateral roots (nutrients and water).
This paper target how AUX/LAX proteins recognize auxin and drive import. We use the protein LAX3 for this purpose, central for development of lateral roots (nutrients and water).
Funded by @erc.europa.eu @novo-nordisk.bsky.social @scholarsatrisk.bsky.social
@molbiolau.bsky.social
🔬We now understand more about sugar transport and Sugar Transport Proteins, and the results are a next step towards improved pathogen resistance🐛🐜 and energy utilization in agriculture.🌱🌽🌾
🔬We now understand more about sugar transport and Sugar Transport Proteins, and the results are a next step towards improved pathogen resistance🐛🐜 and energy utilization in agriculture.🌱🌽🌾
Ultimately we show that we can swap the affinity of fructose and glucose by moving a single methyl group!🤓
This highlights that very minute structural differences that manifest during transport are sufficient to modify transport selectivity.🤯
Ultimately we show that we can swap the affinity of fructose and glucose by moving a single methyl group!🤓
This highlights that very minute structural differences that manifest during transport are sufficient to modify transport selectivity.🤯
👀 relevant for transporter aficionados, we have tested 3 different methodologies to derive apparent affinities (Km) and show that biophysical parameters are highly dependent on protein environment and methodology..
If you compare transport between protein isoforms and methodologies ⚠️BEWARE⚠️
👀 relevant for transporter aficionados, we have tested 3 different methodologies to derive apparent affinities (Km) and show that biophysical parameters are highly dependent on protein environment and methodology..
If you compare transport between protein isoforms and methodologies ⚠️BEWARE⚠️
this is relevant because the main sugar derived from photosynthesis is sucrose🍭 which is equal parts glucose🍬 and fructose 🍡.
this is relevant because the main sugar derived from photosynthesis is sucrose🍭 which is equal parts glucose🍬 and fructose 🍡.
🍬 bite-sized breakdown:
🧑🔬 We looked into the mechanics of sugar transport proteins STP6 and STP10. Turns out that despite having a virtually identical binding site, STP6 can transport fructose and glucose, while STP10 remain highly selective for glucose.
🍬 bite-sized breakdown:
🧑🔬 We looked into the mechanics of sugar transport proteins STP6 and STP10. Turns out that despite having a virtually identical binding site, STP6 can transport fructose and glucose, while STP10 remain highly selective for glucose.
💎💎💎💎 💎💎💎💎
sitting drop membrane protein CRYSTALS 💓
Look at that packing..💖
💎💎💎💎 💎💎💎💎
sitting drop membrane protein CRYSTALS 💓
Look at that packing..💖